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		<title>Conservation news</title>
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		<link>https://news.mongabay.com/list/technology/</link>
		<description>Environmental science and conservation news</description>
		<lastBuildDate>Sat, 12 Sep 2026 14:31:28 +0000</lastBuildDate>
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	<title>News on Technology</title>
	<link>https://news.mongabay.com/list/technology/</link>
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				<item>
					<title>Indigenous knowledge x tech in the search for a tiny Amazon monkey</title>
					<link>https://news.mongabay.com/2026/09/indigenous-knowledge-x-tech-in-the-search-for-a-tiny-amazon-monkey/</link>
					<comments>https://news.mongabay.com/2026/09/indigenous-knowledge-x-tech-in-the-search-for-a-tiny-amazon-monkey/#respond</comments>
					<pubDate>11 Sep 2026 10:40:18 +0000</pubDate>
											<dc:creator>
							<![CDATA[Abhishyant Kidangoor]]>
						</dc:creator>
										<author>
						<![CDATA[Abhishyantkidangoor]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/09/11083700/Pygmy_marmoset_Peter_Kerrawn_B-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=329438</guid>

					
											<locations>
							<![CDATA[Amazon, Ecuador, Global, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Acoustic, Animals, Bioacoustics, Biodiversity, Business, Camera Trapping, Charismatic Animals, Conservation, Conservation Technology, Culture, Deforestation, Ecosystems, Education, Environment, forest degradation, Forests, Global Environmental Crisis, Habitat, Habitat Degradation, Habitat Loss, Indigenous Peoples, Mammals, Monitoring, Monkeys, Pet Trade, Pets, Primates, Technology, Trade, Traditional Knowledge, Wildlife, and Wildlife Trade]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[How do you search for the world&#8217;s smallest monkey? Earlier this year, Nicolás Schuldt Durán took on this task after he was approached by members of an Indigenous community in Ecuador. Ever since, he’s been tapping into the knowledge of the Siekopai people and combining it with passive acoustic monitoring technology to look for pygmy [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[How do you search for the world&#8217;s smallest monkey? Earlier this year, Nicolás Schuldt Durán took on this task after he was approached by members of an Indigenous community in Ecuador. Ever since, he’s been tapping into the knowledge of the Siekopai people and combining it with passive acoustic monitoring technology to look for pygmy marmosets. Spoiler alert: They’re still looking for this elusive species. Working in the Siekoya Remolino community in Ecuador, Durán is collaborating with Indigenous community members to track pygmy marmosets (Cebuella pygmaea), locally called leoncillo, and gather data on where they live and how they’re faring. “The community has already been setting up camera traps and running a territorial monitoring program to catch hunters and loggers,” Durán, founder of conservation technology organization Neblina Labs, told Mongabay in a video interview. “This is just adding one more tool to their toolkit to monitor biodiversity.” Pygmy marmosets are threatened by the illegal pet trade as well as deforestation in the Amazon Rainforest. Image by David Reece via Flickr (CC BY-SA 2.0). Pygmy marmosets, native to the western Amazon Basin, are so small that an adult weighs only 140-150 grams (about 5 ounces), or the weight of a small apple. They live high up in trees and are known for their high-pitched calls, including whistles that are often in the ultrasonic range and which they use to communicate with one another. Classified as vulnerable to extinction, these primates are threatened by the illegal pet trade as well as deforestation&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/09/indigenous-knowledge-x-tech-in-the-search-for-a-tiny-amazon-monkey/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/09/indigenous-knowledge-x-tech-in-the-search-for-a-tiny-amazon-monkey/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-329438</doi>				</item>
						<item>
					<title>Huge AI data center project blindsides water-stressed town in Brazil</title>
					<link>https://news.mongabay.com/2026/09/huge-ai-data-center-project-blindsides-water-stressed-town-in-brazil/</link>
					<comments>https://news.mongabay.com/2026/09/huge-ai-data-center-project-blindsides-water-stressed-town-in-brazil/#respond</comments>
					<pubDate>10 Sep 2026 12:00:35 +0000</pubDate>
											<dc:creator>
							<![CDATA[Naira Hofmeister]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandre de Santi]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/09/08190834/Headerfeat-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=328289</guid>

					
											<locations>
							<![CDATA[Brazil, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Business, Conflict, Data centers, Development, Environment, Governance, Industry, Land Conflict, Land Rights, Land Use Change, Mining, Natural Resources, Resource Conflict, Technology, Water, and Water Scarcity]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[As water wells turn to dust, local leaders learn of the massive facility firsthand from reporters.]]>
						</description>
																					<content:encoded>
							<![CDATA[PARACATU, Brazil — As the president of Paracatu’s city council, Manoel Alves is used to being courted by companies and executives that want his blessing for new business. But on a Thursday afternoon in May 2026, he was upset talking on the phone about a data center planned for his city, about which he was informed by reporters. “I just heard the data center construction will start in two months. Don’t you guys know about this either?” Alves asked someone at the mayor&#8217;s office. The answer from the other side of the call was “no”, the same received from all interviewees: Local authorities, business owners, farmers, and citizens. “It is some new hotel concept?” a major restaurant owner in the city asked. “A dentist?” a citizen in Paracatu’s main square questioned. “Data center? What is this?” queried the guardian of an 18th-century church. Read it in Portuguese. The data center in Paracatu, a municipality located a three-hour drive from Brazil’s capital, Brasília, is not just any data center, but a 1-gigawatt data center, which will be larger than the combined total of all data centers currently installed in the country, which use around 800 megawatts. Or similar to one of the gigantic projects that are part of the Stargate initiative, one of the world&#8217;s largest artificial intelligence infrastructure networks, strongly supported by the U.S. President Donald Trump’s administration. Paracatu’s data center is being planned by Atlas Renewable Energy, owned by an arm of the global asset manager BlackRock, which already&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/09/huge-ai-data-center-project-blindsides-water-stressed-town-in-brazil/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/09/huge-ai-data-center-project-blindsides-water-stressed-town-in-brazil/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-328289</doi>				</item>
						<item>
					<title>New Zealand put fishing boats under camera surveillance. Will it stay the course?</title>
					<link>https://news.mongabay.com/2026/09/new-zealand-put-fishing-boats-under-camera-surveillance-will-it-stay-the-course/</link>
					<comments>https://news.mongabay.com/2026/09/new-zealand-put-fishing-boats-under-camera-surveillance-will-it-stay-the-course/#respond</comments>
					<pubDate>09 Sep 2026 14:59:58 +0000</pubDate>
											<dc:creator>
							<![CDATA[Edward Carver]]>
						</dc:creator>
										<author>
						<![CDATA[Morgan Erickson-Davis]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/09/09073936/6-Fishing-vessels-in-Dunedin-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=329241</guid>

					
											<locations>
							<![CDATA[New Zealand, Oceania, Pacific Islands, and Polynesia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[cameras, Conservation, Environment, Fisheries, Fishing, Marine, Marine Conservation, Monitoring, Oceans, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[NAPIER/DUNEDIN, Aotearoa New Zealand — In 2016, a scandal engulfed Aotearoa New Zealand’s fisheries regulator. Leaked documents showed that the Ministry of Primary Industries (MPI) had found, during investigative operations conducted in prior years, systematic illegal discarding of low-value fish as well as other violations, such as failing to report the catch of an endangered [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[NAPIER/DUNEDIN, Aotearoa New Zealand — In 2016, a scandal engulfed Aotearoa New Zealand’s fisheries regulator. Leaked documents showed that the Ministry of Primary Industries (MPI) had found, during investigative operations conducted in prior years, systematic illegal discarding of low-value fish as well as other violations, such as failing to report the catch of an endangered Hector’s dolphin (Cephalorhynchus hectori), on commercial vessels off the South Island — and elected not to prosecute or inform the public of the findings. The controversy raised a question that conservationists the world over have long asked about commercial fishing: what’s happening on vessels when no one is watching? In the years since, the MPI has mandated onboard cameras across most of the country’s inshore fleet, which operates close to the coast, alongside other forms of electronic monitoring. The rollout, aimed at monitoring catch, discards, protected species interactions, and the use of mitigation devices, has put New Zealand near the leading edge internationally in the use of onboard cameras. This comes as fisheries managers across the world are discussing the use of electronic monitoring as a complement to, or even an imperfect substitute for, the onboard work of fisheries observers, who collect scientific data and report on compliance with rules. Yet electronic monitoring has its detractors, including even Shane Jones, the politician who oversees Fisheries New Zealand (FNZ), a branch of the MPI. He took office following a 2023 general election, after the camera system rollout was already underway, as a member of the conservative&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/09/new-zealand-put-fishing-boats-under-camera-surveillance-will-it-stay-the-course/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/09/new-zealand-put-fishing-boats-under-camera-surveillance-will-it-stay-the-course/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-329241</doi>				</item>
						<item>
					<title>Key tree species boost Amazon forest restoration, new study shows</title>
					<link>https://news.mongabay.com/2026/09/key-tree-species-boost-amazon-forest-restoration-new-study-shows/</link>
					<comments>https://news.mongabay.com/2026/09/key-tree-species-boost-amazon-forest-restoration-new-study-shows/#respond</comments>
					<pubDate>03 Sep 2026 18:55:08 +0000</pubDate>
											<dc:creator>
							<![CDATA[Fernanda Wenzel]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandre de Santi]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/09/03074352/1.-LEAF-MPEG_Centro-Capoeira-cortado-1-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=328521</guid>

					
											<locations>
							<![CDATA[Amazon, Brazil, Global, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[agribusiness, Biodiversity, Biology, Business, Carbon Credits, Carbon Market, Carbon Sequestration, Climate, Climate Change, climate finance, Climate Science, Conflict, Conservation, Conservation Solutions, Culture, Drones, Earth Science, Ecology, Ecosystems, Environment, Finance, Forest Regeneration, Forestry, Forests, Global Environmental Crisis, Land Grabbing, Mitigation, Plants, Research, Resource Conflict, Restoration, Science, Secondary Forests, Solutions, Species, Sustainability, Sustainable Forest Management, Technology, Trees, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Regrowing Amazon forests face a quiet collapse if fast pioneer trees die without stronger successors.]]>
						</description>
																					<content:encoded>
							<![CDATA[A few tree species are key to restoring biodiversity and carbon storage in deforested areas of the Brazilian Amazon, suggests an article published in June in Global Change Biology. Researchers examined 102 plots under natural regeneration in four municipalities in Pará state — Bragantina, Marabá, Paragominas and Santarém — and concluded that a range of 15 to 25 species accounted for nearly half of the trees present and half of the plots’ carbon stocks. ​Among these species are the embaúba (Cecropia palmata), the tatapiririca (Tapirira guianensis), the ingá-vermelho (Inga alba), and the araticum-bravo (Annona exsucca). ​This relatively short list of hyperdominant species could “guide assisted restoration and enrichment strategies” in the Amazon, the researchers said, and help Brazil meet the goal of restoring 12 million hectares (30 million acres) of forests by 2030, an area roughly the size of North Korea. ​“These areas are already restoring [ecological] services and biodiversity,” Fernando Elias, a researcher in Pará&#8217;s Emílio Goeldi Museum and the coordinator of the study, told Mongabay. “That is why it is so important to understand how these forests behave.” According to Elias, the Brazilian Amazon has more than 140,000 square kilometers (around 57,000 square miles) of regrowing forests in areas previously deforested, known as secondary forests. In many cases, these lands have been abandoned after being used for cattle ranching. ​Most of it has the potential to recover naturally, without the need to plant a single seed. Close monitoring, however, is necessary to control fires, cattle ranching and land&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/09/key-tree-species-boost-amazon-forest-restoration-new-study-shows/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/09/key-tree-species-boost-amazon-forest-restoration-new-study-shows/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-328521</doi>				</item>
						<item>
					<title>A ‘lost’ Philippine pigeon reappears after 20 years — but its forest is disappearing</title>
					<link>https://news.mongabay.com/2026/09/a-lost-philippine-pigeon-reappears-after-20-years-but-its-forest-is-disappearing/</link>
					<comments>https://news.mongabay.com/2026/09/a-lost-philippine-pigeon-reappears-after-20-years-but-its-forest-is-disappearing/#respond</comments>
					<pubDate>03 Sep 2026 17:28:35 +0000</pubDate>
											<dc:creator>
							<![CDATA[Keith Anthony Fabro]]>
						</dc:creator>
										<author>
						<![CDATA[Isabel Esterman]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/09/03173737/MBH-Camera-Trap-01_cover-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=328564</guid>

					
											<locations>
							<![CDATA[Asia, Global, Philippines, and Southeast Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Biodiversity, Birds, Camera Trapping, cameras, Conservation, Forests, Protected Areas, Rainforests, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A camera trap on the Philippine island of Mindoro has photographed one of the country’s rarest birds, confirming that the critically endangered Mindoro bleeding-heart pigeon still survives in the wild. Captured in August in the Puerto Galera rainforest, the image is the first confirmed photograph of the species Gallicolumba platenae in two decades, according to [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A camera trap on the Philippine island of Mindoro has photographed one of the country’s rarest birds, confirming that the critically endangered Mindoro bleeding-heart pigeon still survives in the wild. Captured in August in the Puerto Galera rainforest, the image is the first confirmed photograph of the species Gallicolumba platenae in two decades, according to the nonprofit organization Center for Conservation Innovation Ph Inc. (CCIPH). “For an extremely rare and secretive species, a single image can carry enormous weight,” CCIPH researchers wrote in a Sept. 3 announcement. “It confirms that the bird continues to survive within the landscape.” Juan Carlos Gonzalez, an ornithologist and curator for birds at the Museum of Natural History at the University of the Philippines Los Baños, independently confirmed that the image shows a Mindoro bleeding-heart. “This record not only proves that this very rare species continues to persist in these steep rainforests, but solidifies the importance of Puerto Galera as a UNESCO biosphere reserve and an important sanctuary for this critically endangered species,” Gonzalez told Mongabay by email. Mindoro Bleeding-heart captured via camera trap. Image courtesy of CCIPH. Alex Berryman, who oversees species conservation assessments for Asia at the NGO BirdLife International, also separately confirmed the identification. “There is no doubt that this refers to a Mindoro bleeding-heart,” Berryman told Mongabay by email. Berryman said the orange-red spot on the bird’s otherwise white chest, together with the iridescent green plumage on its head and neck, make it readily identifiable. Gonzalez also pointed to its blue-green&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/09/a-lost-philippine-pigeon-reappears-after-20-years-but-its-forest-is-disappearing/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-328564</doi>				</item>
						<item>
					<title>UN fund for sharing biodiversity benefits struggles for attention — and money</title>
					<link>https://news.mongabay.com/2026/09/un-fund-for-sharing-biodiversity-benefits-struggles-for-attention-and-money/</link>
					<comments>https://news.mongabay.com/2026/09/un-fund-for-sharing-biodiversity-benefits-struggles-for-attention-and-money/#respond</comments>
					<pubDate>01 Sep 2026 07:17:33 +0000</pubDate>
											<dc:creator>
							<![CDATA[Mactilda Mbenywe]]>
						</dc:creator>
										<author>
						<![CDATA[Malavikavyawahare]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/09/01021940/31248760644_5d0887d57d_k-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=328108</guid>

					
											<locations>
							<![CDATA[Africa, East Africa, and Kenya]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, climate finance, Conservation Finance, data, Economics, Genetics, Governance, Research, Science, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[NAIROBI — On Nov. 19, 2025, a small U.K.-based artificial intelligence startup called TierraViva AI transferred $1,000 to a United Nations trust account. It was the first payment ever received by the Cali Fund, a mechanism created at the U.N. biodiversity summit a year earlier in Cali, Colombia. The fund’s objective appears straightforward: to get [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[NAIROBI — On Nov. 19, 2025, a small U.K.-based artificial intelligence startup called TierraViva AI transferred $1,000 to a United Nations trust account. It was the first payment ever received by the Cali Fund, a mechanism created at the U.N. biodiversity summit a year earlier in Cali, Colombia. The fund’s objective appears straightforward: to get companies that benefit from “digital sequence information” — the policy term for digitized genetic information from biodiversity from around the world — to share some of those benefits with the countries that host that biodiversity and the Indigenous peoples and local communities who protect it. The Cali Fund formally opened for contributions on Feb. 25, 2025. As of August, this year, it had two confirmed contributions totaling $6,000. That’s far short of the $1 billion a year that the fund was expected to mobilize. TierraViva’s chief executive told Carbon Brief that the payment was an “ice-breaker,” intended to encourage other companies “who may be hesitating.” A second company, U.S. biotech firm Ginkgo Bioworks, had announced its intention to contribute earlier in the year but had not yet transferred any money. In July, another U,K-based company, biotech firm Prozomix, contributed $5,000 to the fund (though per current rules, it did not have to). “Nobody knows about the fund,” Astrid Schomaker, executive secretary of the U.N. Convention on Biological Diversity (CBD), told Mongabay in an interview at the U.N. Environment Programme headquarters in Nairobi, where negotiators gathered in late July and August for preparatory meetings ahead of&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/09/un-fund-for-sharing-biodiversity-benefits-struggles-for-attention-and-money/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-328108</doi>				</item>
						<item>
					<title>Scientists use satellites to track whale strandings in remote places from space</title>
					<link>https://news.mongabay.com/2026/08/scientists-use-satellites-to-track-whale-strandings-in-remote-places-from-space/</link>
					<comments>https://news.mongabay.com/2026/08/scientists-use-satellites-to-track-whale-strandings-in-remote-places-from-space/#respond</comments>
					<pubDate>31 Aug 2026 13:33:25 +0000</pubDate>
											<dc:creator>
							<![CDATA[Manuel Fonseca]]>
						</dc:creator>
										<author>
						<![CDATA[Autumn Spanne]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/31114533/1-Dead-sei-whales-Balaenoptera-borealis-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=327897</guid>

					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animal Behavior, Animals, Biodiversity, Cetaceans, Conservation Technology, data, Marine Animals, Marine Mammals, Remote Sensing, Satellite Imagery, Technology, Whales, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[In 2015, the remote coastal fjords of southern Patagonia turned into a whale graveyard. That June, scientists found 337 dead and decomposing sei whales, a species of baleen whale, on the beaches between the Gulf of Penas and Puerto Natales in Chile. Researchers flew over the area, then took samples from the rotting bodies, trying [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[In 2015, the remote coastal fjords of southern Patagonia turned into a whale graveyard. That June, scientists found 337 dead and decomposing sei whales, a species of baleen whale, on the beaches between the Gulf of Penas and Puerto Natales in Chile. Researchers flew over the area, then took samples from the rotting bodies, trying to find clues as to why this happened. It was later reported to be the largest mass baleen whale mortality event on record. Data collected to determine the cause proved inconclusive, however. Scientists thought the most likely explanation was a toxic red tide provoked by pollution, a strong El Niño event and climate change. What researchers now know for certain, after using very high-resolution satellite images, is that the stranding occurred at least two months before the whales were found. “It’s quite shocking, really,” Penny Clarke, a whale scientist at the British Antarctic Survey (BAS), told Mongabay in a video call. “Think that these whales are about the size of a bus, and there&#8217;s 300 … of them, and nobody knew about it for about two months.” The massive stranding in Chile had one bright spot: It offered an important opportunity to test the use of satellite technology to monitor strandings and support data collection on whale mortality. More than 10 years later, Clarke and her BAS colleagues not only use satellite imagery to identify different whale species by observing flippers and flukes in the water, but can spot whale strandings almost anywhere in the&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/scientists-use-satellites-to-track-whale-strandings-in-remote-places-from-space/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/08/scientists-use-satellites-to-track-whale-strandings-in-remote-places-from-space/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-327897</doi>				</item>
						<item>
					<title>Blast fishing destroys reefs. Underwater microphones can help detect it</title>
					<link>https://news.mongabay.com/2026/08/blast-fishing-destroys-reefs-underwater-microphones-can-help-detect-it/</link>
					<comments>https://news.mongabay.com/2026/08/blast-fishing-destroys-reefs-underwater-microphones-can-help-detect-it/#respond</comments>
					<pubDate>26 Aug 2026 14:22:37 +0000</pubDate>
											<dc:creator>
							<![CDATA[Syris Valentine]]>
						</dc:creator>
										<author>
						<![CDATA[Autumn Spanne]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/26122700/Ben-deploys-a-hydrophone-credit-Tim-Lamont-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=327367</guid>

					
											<locations>
							<![CDATA[Asia, Global, Indonesia, and Southeast Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Biodiversity, Conservation, Conservation Technology, Coral Reefs, Ecosystems, Environment, Fish, Fisheries, Fishing, Illegal Fishing, Marine, Marine Animals, Marine Conservation, Oceans, Saltwater Fish, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[When he went for a dive between the tiny islands off the coast of South Sulawesi, Indonesia, marine biologist and AI researcher Ben Williams could often hear as many as three fish bombs detonate. “But the thing is, because sounds travel so far underwater, the bombing is often happening quite far away,” he said. “So [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[When he went for a dive between the tiny islands off the coast of South Sulawesi, Indonesia, marine biologist and AI researcher Ben Williams could often hear as many as three fish bombs detonate. “But the thing is, because sounds travel so far underwater, the bombing is often happening quite far away,” he said. “So you could hear one that feels like a kick in the chest, then you look up [above the water], and you can’t even see a boat on the horizon.” Those islands, the Spermonde Archipelago, were once home to a pristine and vibrant network of coral reefs. But from 1990 to 2022, some three-quarters of this coral was killed, primarily by the illegal practice of blast fishing. In it, fishers toss improvised explosives into the sea to kill and stun fish en masse and scoop up the mostly intact ones, leaving underwater wreckage behind. “If you look at the rubble after a city&#8217;s been blown up in a war zone,” Williams told Mongabay in a video call, “it&#8217;s not too dissimilar.” Since 2013, local communities, conservation organizations and scientists have collaborated on the Mars Coral Reef Restoration Project, an effort to restore those damaged reefs. Williams joined researchers studying the effectiveness of those efforts in 2019. His particular contribution focused on using recent advances in data science to investigate Spermonde’s marine soundscape: Where a healthy reef sings like an alien jungle come to life at night, a dead one crackles like a forest smoldering after a&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/blast-fishing-destroys-reefs-underwater-microphones-can-help-detect-it/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/08/blast-fishing-destroys-reefs-underwater-microphones-can-help-detect-it/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
					<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/26123332/Hydrophone-on-reef-2-credit-M.mp4" length="0" type="video/mp4" />
					<doi>https://doi.org/10.66709/news-327367</doi>				</item>
						<item>
					<title>Indonesia integrates Indigenous data in bid to put customary lands on map</title>
					<link>https://news.mongabay.com/2026/08/indonesia-integrates-indigenous-data-in-bid-to-put-customary-lands-on-map/</link>
					<comments>https://news.mongabay.com/2026/08/indonesia-integrates-indigenous-data-in-bid-to-put-customary-lands-on-map/#respond</comments>
					<pubDate>24 Aug 2026 11:27:46 +0000</pubDate>
											<dc:creator>
							<![CDATA[Hans Nicholas Jong]]>
						</dc:creator>
										<author>
						<![CDATA[Hans Nicholas Jong]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2024/01/25122554/dayak-women-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=327062</guid>

					
											<locations>
							<![CDATA[Asia, Indonesia, and Southeast Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Conflict, Culture, Human Rights, Indigenous Peoples, Indigenous Rights, Land Conflict, Mapping, Nature-based climate solutions, Social Conflict, and Solutions]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[JAKARTA — Indigenous peoples in Indonesia have long faced a basic problem: Data on their communities, cultures and customary territories are scattered across government agencies and civil society organizations, making them less visible in spatial planning and permitting. The Indonesian government is trying to address that gap by integrating data from the Ministry of Culture, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[JAKARTA — Indigenous peoples in Indonesia have long faced a basic problem: Data on their communities, cultures and customary territories are scattered across government agencies and civil society organizations, making them less visible in spatial planning and permitting. The Indonesian government is trying to address that gap by integrating data from the Ministry of Culture, the Ancestral Domain Registration Agency (BRWA) and the country’s largest Indigenous peoples’ alliance, AMAN, in a dataset covering 3,857 Indigenous communities. The government says the integrated data will strengthen policymaking and protection of Indigenous peoples. BRWA says the bigger significance could be spatial: Customary territory maps, which can show the ancestral lands, traditional territories, languages and more of Indigenous peoples, could eventually become part of the government’s geospatial data and potentially be visible in spatial planning and permitting. BRWA was established in 2010 by Indigenous and civil society organizations, including AMAN, to document and register customary territories amid the government’s slow progress in recognizing Indigenous peoples and their lands. The new integrated dataset was launched on Aug. 19 in Jakarta. Before the launch, data on Indigenous peoples had been scattered across various ministries, institutions and civil society organizations, according to Restu Gunawan, the Ministry of Culture’s director general of cultural and traditional protection. The differences matter, he said during the launch: Even a difference of one community in the datasets could translate into thousands of hectares of difference when it comes to customary territories. Didik Darmanto, director of religion, culture, youth and sports at the&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/indonesia-integrates-indigenous-data-in-bid-to-put-customary-lands-on-map/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-327062</doi>				</item>
						<item>
					<title>Brazil’s unique data center boom rides on clean power despite social burden</title>
					<link>https://news.mongabay.com/2026/08/brazils-unique-data-center-boom-rides-on-clean-power-despite-social-burden/</link>
					<comments>https://news.mongabay.com/2026/08/brazils-unique-data-center-boom-rides-on-clean-power-despite-social-burden/#respond</comments>
					<pubDate>24 Aug 2026 09:00:26 +0000</pubDate>
											<dc:creator>
							<![CDATA[Francisco AmorimLaís MartinsNaira Hofmeister]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandre de Santi]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/21192238/Headerfeat-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=326903</guid>

					
											<locations>
							<![CDATA[Brazil, Caatinga, Cerrado, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Alternative Energy, Artificial Intelligence, Data centers, Energy, Natural Resources, Renewable Energy, Solar Power, Technology, and Wind Power]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Corporations benefit from wasted energy, while locals pay for grid upgrades and endure noise and water threats.]]>
						</description>
																					<content:encoded>
							<![CDATA[The global appetite for artificial intelligence is pushing Brazil to lead an unprecedented move in the world regarding data centers. While around the globe, big tech struggles to find energy to power the infrastructures that store and process data, in Brazil the story is just the opposite: Data center proposers come from the power industry itself — more precisely, renewable energy. An exclusive analysis conducted by The Intercept Brasil and Mongabay (read it in Portuguese) revealed that 65% of the requests to connect data centers to the main power grid originated from renewable energy companies — considering only plans presented to the Ministry of Mines and Energy through December 2025. By that date, 68 connection requests had been reported across 37 Brazilian municipalities. A combination of factors explains this phenomenon, starting with the extraordinary amount of electricity required to power data centers. The International Energy Agency projects that global data center energy consumption will double in the coming years, potentially reaching 945 TWh by 2030 — equivalent to Japan&#8217;s total consumption — with artificial intelligence accounting for 40% of that figure. With a predominantly renewable energy mix, Brazil has become an attractive destination for data centers. “We are a vast source of opportunities for those looking to invest in the decarbonization of energy mixes,” proclaimed Brazil’s Minister of Mines and Energy, Alexandre Silveira, in January 2025 during the World Economic Forum in Davos, Switzerland — a trip undertaken with the mission of promoting Brazil to global investors, particularly those in&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/brazils-unique-data-center-boom-rides-on-clean-power-despite-social-burden/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-326903</doi>				</item>
						<item>
					<title>Wind energy surplus fuels unregulated data centers in Brazil&#8217;s dry land</title>
					<link>https://news.mongabay.com/2026/08/wind-energy-surplus-fuels-unregulated-data-centers-in-brazils-dry-land/</link>
					<comments>https://news.mongabay.com/2026/08/wind-energy-surplus-fuels-unregulated-data-centers-in-brazils-dry-land/#respond</comments>
					<pubDate>24 Aug 2026 09:00:13 +0000</pubDate>
											<dc:creator>
							<![CDATA[Laís Martins]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandre de Santi]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/21204526/Headerfeat-1-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=326800</guid>

					
											<locations>
							<![CDATA[Brazil, Caatinga, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Conflict, Conservation, Data centers, Energy, Environment, Environmental Law, Governance, Human Rights, Law, Natural Resources, Protected Areas, Regulations, Renewable Energy, Resource Conflict, Technology, and Wind Power]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A renewable boom brought high rents and noise, and now, a shadowy tech expansion is arriving unannounced.]]>
						</description>
																					<content:encoded>
							<![CDATA[GENTIO DO OURO, Brazil — From the main square in Gentio do Ouro, in northern Bahia state, you&#8217;ll see what appears in almost every small Brazilian town: The city hall, a bank branch, a bandstand and a sign with the town’s name. What distinguishes this landscape is on the horizon: Regardless of which direction you look, you&#8217;ll see giant windmills used to generate energy. The town was put on the wind turbine map more than 15 years ago, and now has 28 active wind farms, according to data from the Energy Transition Observatory. The turbines, however, don&#8217;t make Gentio do Ouro, on the outskirts of the beautiful landscapes of the Chapada Diamantina mountains, a sustainable hub. In the main square, a sculpture of a gold nugget is a nod to mining, an activity that runs strong in the region. And yet another outside influence is gaining traction: A plan to make this peaceful town a data center backyard. Similar to factories, these facilities process everything that is done on the internet — using lots of energy, benefiting few people, hiring even less and bringing about a new wave of environmental impacts. Although it has only 11,000 citizens, Gentio do Ouro is targeted by 12 requests to connect data centers to the energy grid. At the front of this race are the same companies that filled the region with wind turbines, impacting threatened biomes and even disturbing the sleep of the wind farms’ neighbors. One of the main streets in Gentio&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/wind-energy-surplus-fuels-unregulated-data-centers-in-brazils-dry-land/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-326800</doi>				</item>
						<item>
					<title>Reconnecting the skies: Linking flyways for migratory seabirds across continents</title>
					<link>https://news.mongabay.com/2026/08/reconnecting-the-skies-linking-flyways-for-migratory-seabirds-across-continents/</link>
					<comments>https://news.mongabay.com/2026/08/reconnecting-the-skies-linking-flyways-for-migratory-seabirds-across-continents/#respond</comments>
					<pubDate>21 Aug 2026 13:22:21 +0000</pubDate>
											<dc:creator>
							<![CDATA[Ruth Kamnitzer]]>
						</dc:creator>
										<author>
						<![CDATA[Sharon Guynup]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/20133036/banner-in-the-sea-and-in-the-skies-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=326785</guid>

					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Biodiversity, Biodiversity Hotspots, Birds, Bycatch, Conservation, data, Environment, Fishing, Habitat, Marine Conservation, Marine Protected Areas, Migration, Monitoring, Oceans, Research, Seabirds, Technology, Tracking, Wildlife, and Wildlife Corridors]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Arctic terns make the longest migration of any creature on Earth, with some Sterna paradisaea clocking more than 80,000 kilometers (49,709 miles) a year, flying from the Southern Ocean to their breeding grounds in the Arctic — and back. For a tiny bird, weighing less than an iPhone, it&#8217;s an astounding feat. South polar skuas [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Arctic terns make the longest migration of any creature on Earth, with some Sterna paradisaea clocking more than 80,000 kilometers (49,709 miles) a year, flying from the Southern Ocean to their breeding grounds in the Arctic — and back. For a tiny bird, weighing less than an iPhone, it&#8217;s an astounding feat. South polar skuas (Stercorarius maccormicki) trace a similar figure eight around the Atlantic Ocean as they move between breeding colonies on Antarctic islands and the Arctic. In the Southern Ocean, grey-headed albatross (Thalassarche chrysostoma) breed on South Georgia Island. During the rest of the year, they fly a circle around Antarctica, covering roughly 22,000 km (13,670 mi) in as little as 46 days. The journeys of these and other migratory pelagic seabirds are almost beyond comprehension, and largely unseen. But with advances in tracking, researchers have realized seabirds fly broadly predictable paths over the open ocean. Last year, researchers used tracking data to identify six marine flyways that cross the Atlantic, Pacific, Indian and Southern oceans and touch the waters of 56 countries. A team of nearly a hundred were involved, led by researchers from the nonprofit BirdLife International, and their findings were published in the journal Global Ecology and Biogeography. Seabirds are the most at-risk birds, with more than 30% globally threatened. For migrants, life on the wing is especially perilous. They face myriad threats across multiple jurisdictions in national waters and on the high seas, at their breeding colonies, at stopovers during migration and on the open&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/reconnecting-the-skies-linking-flyways-for-migratory-seabirds-across-continents/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-326785</doi>				</item>
						<item>
					<title>How AI helps gather remote biodiversity data: Interview with Microsoft’s Juan Lavista Ferres</title>
					<link>https://news.mongabay.com/2026/08/how-ai-helps-gather-remote-biodiversity-data-interview-with-microsofts-juan-lavista-ferres/</link>
					<comments>https://news.mongabay.com/2026/08/how-ai-helps-gather-remote-biodiversity-data-interview-with-microsofts-juan-lavista-ferres/#respond</comments>
					<pubDate>14 Aug 2026 13:06:01 +0000</pubDate>
											<dc:creator>
							<![CDATA[Abhishyant Kidangoor]]>
						</dc:creator>
										<author>
						<![CDATA[Abhishyantkidangoor]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/14125321/pierre-perraut-vfK_PwXZO6w-unsplash-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=326232</guid>

					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Bioacoustics, Biodiversity, Camera Trapping, Conservation, Conservation Technology, Environment, Interviews, Media, Monitoring, Software, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[At a meeting with conservationists a couple of years back, Juan Lavista Ferres had a eureka moment. As the director of Microsoft’s AI for Good Lab, Lavista Ferres has extensively worked on projects that use artificial intelligence technology to process and analyze biodiversity data. At that particular meeting, however, he realized that a glaring gap [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[At a meeting with conservationists a couple of years back, Juan Lavista Ferres had a eureka moment. As the director of Microsoft’s AI for Good Lab, Lavista Ferres has extensively worked on projects that use artificial intelligence technology to process and analyze biodiversity data. At that particular meeting, however, he realized that a glaring gap persisted. “It takes a huge amount of effort to collect data,” Lavista Ferres, who is also Microsoft&#8217;s chief data scientist, told Mongabay in a video interview. “We never realized how bad it was until we worked closely with them [the conservationists] to see the whole workflow.” On returning to his lab, Lavista Ferres put together a team to find a solution. The result was Project SPARROW. Short for solar-powered acoustic and remote recording observation watch, SPARROW combines edge computing and AI to monitor biodiversity in real time and continuously. Powered by solar energy, the tool has been developed to function autonomously in remote forests to gather and process visual and audio data. “The whole idea of SPARROW is to make it trivial for conservationists to be able to collect data,” Lavista Ferres said. SPARROW has been deployed in 11 countries across five continents and has demonstrated that it can function continuously without human intervention for more than a year. Deployments in remote forests come with their own set of challenges, however, as devices are difficult to access. Conservación Amazónica’s Los Amigos biological station. Courtesy of ACCA.  “Our most important challenge is to make sure that&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/how-ai-helps-gather-remote-biodiversity-data-interview-with-microsofts-juan-lavista-ferres/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-326232</doi>				</item>
						<item>
					<title>Amazon deforestation alerts fall to lowest level since 2013, Brazilian data show</title>
					<link>https://news.mongabay.com/2026/08/amazon-deforestation-alerts-fall-to-lowest-level-since-2013-brazilian-data-show/</link>
					<comments>https://news.mongabay.com/2026/08/amazon-deforestation-alerts-fall-to-lowest-level-since-2013-brazilian-data-show/#respond</comments>
					<pubDate>09 Aug 2026 00:08:49 +0000</pubDate>
											<dc:creator>
							<![CDATA[Rhett Ayers Butler]]>
						</dc:creator>
										<author>
						<![CDATA[Rhett Butler]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/08/09000336/colombia_260721054538_0462z-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=325718</guid>

					
											<locations>
							<![CDATA[Amazon, Brazil, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Deforestation, Environment, Forests, Happy-upbeat Environmental, Rainforests, Remote Sensing, Satellite Imagery, Tropical Deforestation, and Tropical Forests]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Deforestation in the Brazilian Amazon has fallen to its lowest level in 13 years, according to new satellite data from Brazil’s National Institute for Space Research (INPE), continuing a decline that began after President Luiz Inácio Lula da Silva returned to office in 2023. INPE’s DETER alert system detected 2,874 square kilometers (1,110 square miles) [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Deforestation in the Brazilian Amazon has fallen to its lowest level in 13 years, according to new satellite data from Brazil’s National Institute for Space Research (INPE), continuing a decline that began after President Luiz Inácio Lula da Silva returned to office in 2023. INPE’s DETER alert system detected 2,874 square kilometers (1,110 square miles) of deforestation in the Amazon between August 1, 2025, and July 31, 2026. That was 36% below the previous 12-month period and 55.6% below the average of the preceding decade. The total is the lowest since INPE introduced the current DETER system in 2015. Including data from its predecessor system, the last time alerts were lower was the 2012/13 deforestation year, when 2,766 sq km were recorded. Accumulated deforestation for Aug 1-Jul 31 in recent years according to INPE&#8217;s DETER alert system. Image by Mongabay DETER is designed as a rapid-response system for enforcement agencies. It uses satellite imagery to identify new forest clearing quickly enough for authorities to investigate and intervene. It differs from PRODES, INPE’s higher-resolution annual monitoring system, which provides Brazil’s official deforestation rate. Preliminary PRODES figures for the year ending July 31 are expected in October or November. PRODES data for the year ending July 2025 had already put Amazon forest loss at its lowest level in 11 years. The latest DETER figures indicate that clearing fell further during the following year. If PRODES shows a decline similar to that recorded by DETER, Brazil could register its lowest official Amazon deforestation&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/amazon-deforestation-alerts-fall-to-lowest-level-since-2013-brazilian-data-show/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/08/amazon-deforestation-alerts-fall-to-lowest-level-since-2013-brazilian-data-show/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-325718</doi>				</item>
						<item>
					<title>From radar blobs to bird species, AI helps transform migration tracking</title>
					<link>https://news.mongabay.com/2026/08/from-radar-blobs-to-bird-species-ai-helps-transform-migration-tracking/</link>
					<comments>https://news.mongabay.com/2026/08/from-radar-blobs-to-bird-species-ai-helps-transform-migration-tracking/#respond</comments>
					<pubDate>06 Aug 2026 16:56:14 +0000</pubDate>
											<dc:creator>
							<![CDATA[Abhishyant Kidangoor]]>
						</dc:creator>
										<author>
						<![CDATA[Abhishyantkidangoor]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2023/04/20150449/geese-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=325488</guid>

					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Biodiversity, Birds, Conservation, Conservation Technology, Environment, Migration, Monitoring, Research, Software, Species, Technology, Tracking, Wildlife, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[How can we identify specific bird species as they undertake their annual migrations? In the U.S., scientists have long relied on weather radar data to track flocks of birds migrating across the country. But that came with a caveat: the birds appeared as blobs on the radar, much like dark clouds. They couldn’t tell what [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[How can we identify specific bird species as they undertake their annual migrations? In the U.S., scientists have long relied on weather radar data to track flocks of birds migrating across the country. But that came with a caveat: the birds appeared as blobs on the radar, much like dark clouds. They couldn’t tell what species of birds they were looking at. A new tool is helping scientists and conservationists bridge this gap. BirdFlow combines citizen science observations with weather data and artificial intelligence technology to help scientists detect specific species and predict their migration routes. Two studies published in the journals Global Ecology and Biogeography and Movement Ecology describe how BirdFlow can distinguish between species that are migrating across North America. The tool was developed as a collaboration between Cornell University, the University of Massachusetts, and the University of Illinois Urbana-Champaign. “Let’s say we want to track Wilson’s warbler that winters in Alaska,” Yuting Deng, a co-author on both studies and postdoctoral researcher at the Cornell Lab of Ornithology, told Mongabay in a video interview. “Where exactly do they go? Do the eastern and western populations have similar migration timing? What routes are they taking? That’s where BirdFlow comes in.” Knowing which bird species are migrating where is critical for several reasons. For one, without being able to distinguish individual species, scientists can’t tell when and where a threatened species might be moving. The data are also useful for aviation managers, who would want to track larger birds that&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/08/from-radar-blobs-to-bird-species-ai-helps-transform-migration-tracking/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/08/from-radar-blobs-to-bird-species-ai-helps-transform-migration-tracking/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-325488</doi>				</item>
						<item>
					<title>New fire satellites offer hope for Amazon and other biomes, but local barriers remain</title>
					<link>https://news.mongabay.com/2026/07/new-fire-satellites-offer-hope-for-amazon-and-other-biomes-but-local-barriers-remain/</link>
					<comments>https://news.mongabay.com/2026/07/new-fire-satellites-offer-hope-for-amazon-and-other-biomes-but-local-barriers-remain/#respond</comments>
					<pubDate>30 Jul 2026 07:44:45 +0000</pubDate>
											<dc:creator>
							<![CDATA[Benjamin Swift]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandra Popescu]]>
					</author>
							<category><![CDATA[Amazon]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/29232759/Benjamin-Swift_APC_0045-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=324873</guid>

					
					
											<topic-tags>
							<![CDATA[Climate, Disasters, Drought, El Nino, Extreme Weather, Fires, Global Environmental Crisis, Impact Of Climate Change, Satellite Imagery, Solutions, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Record wildfires devastated South America in 2024, raging out of control in biomes where fire is a natural part of the ecosystem, but also entering rainforests that had never burned before. Driven by expanding industrial agriculture, an El Niño episode, and droughts worsened by global climate change, the thick smoke from the wildfires grounded flights, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Record wildfires devastated South America in 2024, raging out of control in biomes where fire is a natural part of the ecosystem, but also entering rainforests that had never burned before. Driven by expanding industrial agriculture, an El Niño episode, and droughts worsened by global climate change, the thick smoke from the wildfires grounded flights, shuttered schools, and caused lasting health problems. After favorable weather led to a reprieve from the most destructive fires worldwide last year, fire experts expect major wildfires to return to South America in 2026 and 2027. With fire season beginning in the continent, park rangers and firefighters hope that a trio of satellites launched in early July will provide more precise, rapidly updated data to wildland firefighters worldwide. The first three operational satellites from Earth Fire Alliance are meant to help improve global fire detection by providing frequent high-resolution wildfire data. These are part of the nonprofit’s FireSat program, which aims to deploy about 50 low-orbit satellites by 2030. The satellites are still being tested and calibrated, but in a few months, a first cohort of early adopters will gain access to the data. Once fully operational, the system could help fire agencies reduce emissions from wildfires worldwide by 5-10% yearly, according to Paul Bodnar, director of clean industry and special projects at the Bezos Earth Fund, which provided a $26 million grant to the program. The new satellites launch as the world enters an El Niño climate pattern that will likely mean drought and&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/new-fire-satellites-offer-hope-for-amazon-and-other-biomes-but-local-barriers-remain/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/new-fire-satellites-offer-hope-for-amazon-and-other-biomes-but-local-barriers-remain/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-324873</doi>				</item>
						<item>
					<title>Thai MP calls for new committee to scrutinize AI data centers’ environmental impact</title>
					<link>https://news.mongabay.com/2026/07/thai-mp-calls-for-new-committee-to-scrutinize-ai-data-centers-environmental-impact/</link>
					<comments>https://news.mongabay.com/2026/07/thai-mp-calls-for-new-committee-to-scrutinize-ai-data-centers-environmental-impact/#respond</comments>
					<pubDate>27 Jul 2026 02:48:48 +0000</pubDate>
											<dc:creator>
							<![CDATA[Gerald Flynn]]>
						</dc:creator>
										<author>
						<![CDATA[Philip Jacobson]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/03/10061600/20251222__DATA-CENTER_THAILAND_ANDY-BALL-RESIZED-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=324542</guid>

					
											<locations>
							<![CDATA[Asia, Global, Mekong Basin, Southeast Asia, and Thailand]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Development, Ecosystems, Energy, Environment, Fish, Fossil Fuels, Freshwater, Freshwater Fish, Governance, Health, Natural Resources, Pollution, Renewable Energy, Saltwater Fish, Software, Technology, Water, Water Pollution, and Water Scarcity]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[BANGKOK — An opposition member of Thailand’s parliament has called for the creation of a parliamentary committee on the regulation of data centers. The call comes amid a raft of new project approvals linked to the sector, which requires large amounts of water and electricity. “I believe Thailand needs to rethink its overall approach to [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[BANGKOK — An opposition member of Thailand’s parliament has called for the creation of a parliamentary committee on the regulation of data centers. The call comes amid a raft of new project approvals linked to the sector, which requires large amounts of water and electricity. “I believe Thailand needs to rethink its overall approach to data center development,” Sahassawat Kumkong, a member of the reformist People’s Party, told Mongabay in an interview. “The objective should not simply be to attract investment as quickly as possible. We also need to ensure that development is environmentally sustainable, that local communities are protected, and that the economic benefits are shared more fairly.” Sahassawat represents Constituency 7 in Chonburi, a coastal province in eastern Thailand where at least 13 data centers are in the construction or planning phases, with four more already operational, according to public records, news coverage and, in some cases, on-the-ground reporting by Mongabay. Part of his responsibility in this role, he said, was to safeguard the interests of his constituents, who largely depend on natural resources that data centers may put under strain. The MP said he intends to do this by forming a parliamentary committee to scrutinize the government’s approval and regulation of data centers. This will involve a comprehensive review of Thailand’s current policy framework, including long-term planning for water and energy resources, stronger environmental safeguards, greater transparency, meaningful public participation and mechanisms to ensure that communities sharing the costs of these projects also share in their benefits,&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/thai-mp-calls-for-new-committee-to-scrutinize-ai-data-centers-environmental-impact/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/thai-mp-calls-for-new-committee-to-scrutinize-ai-data-centers-environmental-impact/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-324542</doi>				</item>
						<item>
					<title>As Australia expands seismic testing, experts warn of profound effects on sealife</title>
					<link>https://news.mongabay.com/2026/07/as-australia-expands-seismic-testing-experts-warn-of-profound-effects-on-sealife/</link>
					<comments>https://news.mongabay.com/2026/07/as-australia-expands-seismic-testing-experts-warn-of-profound-effects-on-sealife/#respond</comments>
					<pubDate>22 Jul 2026 18:38:39 +0000</pubDate>
											<dc:creator>
							<![CDATA[Theoné van der Merwe]]>
						</dc:creator>
										<author>
						<![CDATA[Rebecca Kessler]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/22140035/b.-%C2%A9Wayne-and-Pam-Osborn-original-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=324311</guid>

					
											<locations>
							<![CDATA[Australia and Oceania]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Alternative Energy, Biodiversity, carbon, Conservation, Ecosystems, Energy, Energy Transition, Environment, Marine, Marine Animals, Marine Conservation, Oceans, Research, Science, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[It was spring, 20 years ago now, but he remembers it clearly. On the deck of the Geco Resolution, wind tearing spray from the waves, Robert McCauley stood gazing out onto an ocean blackened by night. The ship had been firing seismic airguns all day, thunderous blasts punching through the water and into the seabed. [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[It was spring, 20 years ago now, but he remembers it clearly. On the deck of the Geco Resolution, wind tearing spray from the waves, Robert McCauley stood gazing out onto an ocean blackened by night. The ship had been firing seismic airguns all day, thunderous blasts punching through the water and into the seabed. Over time, the rhythmic boom reverberating through the hull had almost faded into the background. But then night fell, and the sound revealed itself. “Every time the airgun went off, the sea would light up,” McCauley told Mongabay. Each blast was triggering a burst of bioluminescence — dinoflagellates and other microscopic life igniting in unison. “A sheet of light would shoot out, like a wave traveling at the speed of sound. It went out for about a kilometer at least,” he said. As Australia’s leading expert in marine bioacoustics, McCauley, a research scientist at the Centre for Marine Science and Technology at Curtin University, was there to study how whales responded to the noise. But watching the bioluminescent glow pulse outward and fade, then pulse again, he found himself wondering less about whales and more about the tiny organisms that sustain them. “It made me think, what’s happening to all those little animals? How are they being stimulated? And what happens if they’re being stimulated every five or 10 seconds, repeatedly?” McCauley wondered. For decades, marine seismic surveys have echoed through the world’s oceans, largely in search of oil and gas. Research has shown the&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/as-australia-expands-seismic-testing-experts-warn-of-profound-effects-on-sealife/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/as-australia-expands-seismic-testing-experts-warn-of-profound-effects-on-sealife/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-324311</doi>				</item>
						<item>
					<title>Tiny trackers reveal where migratory shorebirds need protection across Africa</title>
					<link>https://news.mongabay.com/2026/07/tiny-trackers-reveal-where-migratory-shorebirds-need-protection-across-africa/</link>
					<comments>https://news.mongabay.com/2026/07/tiny-trackers-reveal-where-migratory-shorebirds-need-protection-across-africa/#respond</comments>
					<pubDate>20 Jul 2026 18:23:23 +0000</pubDate>
											<dc:creator>
							<![CDATA[Ryan Truscott]]>
						</dc:creator>
										<author>
						<![CDATA[Victoriaschneider]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/20073354/Shorebirds_3-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=323989</guid>

					
											<locations>
							<![CDATA[Africa, South Africa, and Southern Africa]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Biodiversity, Birds, Conservation Technology, Environment, Governance, Natural Resources, Research, Science, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[They have names like Victoria, Makgadikgadi, Wembere and Dwarskersbos — but unlike their namesakes, they’re not landmarks in Africa. Instead, they’re small birds flying halfway across the world, showing conservationists the places that should be protected to sustain them on their journeys. Earlier this year, an international team of scientists and conservationists trapped 20 curlew [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[They have names like Victoria, Makgadikgadi, Wembere and Dwarskersbos — but unlike their namesakes, they’re not landmarks in Africa. Instead, they’re small birds flying halfway across the world, showing conservationists the places that should be protected to sustain them on their journeys. Earlier this year, an international team of scientists and conservationists trapped 20 curlew sandpipers (Calidris ferruginea), small to medium-sized shorebirds characterized by their distinct downward curving bill, and fitted them with tiny, lightweight satellite transmitters. The researchers also captured and fitted GPS tags on three gray plovers (Pluvialis squatarola), birds thought to have similar migratory patterns to the curlew sandpipers. With these trackers, the researchers are recording the birds’ migratory routes, or flyways, from South Africa to their Arctic breeding grounds. “Historically we had supported a large percentage of the global population for both species, but we have seen a marked decline over the last few years,” Jessica Wilmot, BirdLife South Africa’s flyways and migrants project manager, told Mongabay in a video interview. She added the findings provide novel insights into these birds’ migration patterns. Team members attach a micro-telemetry device — a satellite transmitter weighing less than 2 grams — to the back of a curlew sandpiper. Image courtesy of Cassie Carstens. While the threats the birds face at both ends of their migration routes are well-documented, less is known about what they have to deal with at the stopover sites along their 13,000-kilometer (about 8,100-mile) journey. Identifying such sites and determining whether they can be protected,&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/tiny-trackers-reveal-where-migratory-shorebirds-need-protection-across-africa/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/tiny-trackers-reveal-where-migratory-shorebirds-need-protection-across-africa/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-323989</doi>				</item>
						<item>
					<title>Can ‘fog harvesting’ help solve water scarcity in Chile’s Atacama Desert?</title>
					<link>https://news.mongabay.com/2026/07/can-fog-harvesting-help-solve-water-scarcity-in-chiles-atacama-desert/</link>
					<comments>https://news.mongabay.com/2026/07/can-fog-harvesting-help-solve-water-scarcity-in-chiles-atacama-desert/#respond</comments>
					<pubDate>17 Jul 2026 20:09:16 +0000</pubDate>
											<dc:creator>
							<![CDATA[Maxwell Radwin]]>
						</dc:creator>
										<author>
						<![CDATA[Latoya Abulu]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/17195707/AP275353435726-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=323860</guid>

					
											<locations>
							<![CDATA[Chile, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Conservation Technology, Deserts, Environment, Natural Resources, Technology, Water, and Water Scarcity]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Chile’s Atacama Desert is one of the driest places in the world. Some areas only see rainfall a few times in a century, while others have never recorded rainfall at all. In many rural communities there, local governments have to truck in water from other parts of the country or extract it from deep underground [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Chile’s Atacama Desert is one of the driest places in the world. Some areas only see rainfall a few times in a century, while others have never recorded rainfall at all. In many rural communities there, local governments have to truck in water from other parts of the country or extract it from deep underground wells. But in harder-to-reach settlements, these solutions still aren’t cost-effective or reliable. To address the problem, residents and researchers have looked for more innovative methods of getting water out of the environment. Some have begun using the fog that often blankets northern Chile. Off the Pacific coast, cold air currents cool into low cloud cover that blows inland, getting stopped by coastal mountains and settling at ground level. With the right approach, groups have found ways to “capture,” or “harvest,” the fog, turning it into useable freshwater. “In a very simple way, we have to understand that clouds are made up of water droplets,” Camilo del Río, director of the Catholic University’s Atacama Desert Center in Chile, told Mongabay. “They’re already formed, they’re already condensed. So whenever a cloud is transported by wind and comes into contact with the Earth’s surface, what is touching the surface is thousands and thousands of liters [of water].” Local groups have found ways to harvest enough fog to supplement drinking water and bolster agricultural projects. But many challenges with the strategy still remain. Researchers want to harvest the fog more efficiently and at scale, one day convincing local officials&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/can-fog-harvesting-help-solve-water-scarcity-in-chiles-atacama-desert/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-323860</doi>				</item>
						<item>
					<title>Indigenous advocates push for rights protections around AI data centers</title>
					<link>https://news.mongabay.com/2026/07/indigenous-advocates-push-for-rights-protections-around-ai-data-centers/</link>
					<comments>https://news.mongabay.com/2026/07/indigenous-advocates-push-for-rights-protections-around-ai-data-centers/#respond</comments>
					<pubDate>16 Jul 2026 13:59:35 +0000</pubDate>
											<dc:creator>
							<![CDATA[Aimee Gabay]]>
						</dc:creator>
										<author>
						<![CDATA[Latoya Abulu]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/16134609/emrip-4-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=323706</guid>

					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Air Pollution, Artificial Intelligence, Data centers, Development, Economics, Energy, Environment, Human Rights, Infrastructure, Technology, Water, and Water Scarcity]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Artificial intelligence is said to be the transformative technology of our time, with the potential to reshape our world on a global scale, according to research. Yet AI&#8217;s potential is underpinned by the need for hyperscale data centers, the large, energy-intensive sites that house servers and IT equipment. As tech companies and governments continue to [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Artificial intelligence is said to be the transformative technology of our time, with the potential to reshape our world on a global scale, according to research. Yet AI&#8217;s potential is underpinned by the need for hyperscale data centers, the large, energy-intensive sites that house servers and IT equipment. As tech companies and governments continue to develop this infrastructure at scale, Indigenous peoples from Brazil to Canada affected by the projects have responded in different ways. Some have raised concerns about pressure on water resources and inadequate consultation, while others have embraced the projects for their economic benefits. In July 2026, at a meeting of the U.N. Expert Mechanism on the Rights of Indigenous Peoples (EMRIP), Indigenous leaders, government representatives and experts called for data center projects to comply with the principles of free, prior and informed consent, or FPIC. They also explored whether growing AI infrastructure can be developed in ways that advance Indigenous priorities and rights. During a panel discussion on the second day of the EMRIP meeting, Indigenous delegates said that policies to ensure that AI does not harvest Indigenous knowledge without consent are of equal importance to protections for Indigenous lands and waters. “AI is resource-intensive and requires vast amounts of energy,” said Maren Storslett, a member of the Sámi Parliament in Norway at the meeting. “In Sápmi, we already see how large data centers put [immense] pressure on our territories. This forces a conversation about priorities and limits and we need to be at the table&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/indigenous-advocates-push-for-rights-protections-around-ai-data-centers/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/indigenous-advocates-push-for-rights-protections-around-ai-data-centers/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-323706</doi>				</item>
						<item>
					<title>‘Bear-dar’ aims to give Arctic communities a heads-up on nearby polar bears</title>
					<link>https://news.mongabay.com/2026/07/bear-dar-aims-to-give-arctic-communities-a-heads-up-on-nearby-polar-bears/</link>
					<comments>https://news.mongabay.com/2026/07/bear-dar-aims-to-give-arctic-communities-a-heads-up-on-nearby-polar-bears/#respond</comments>
					<pubDate>15 Jul 2026 09:02:35 +0000</pubDate>
											<dc:creator>
							<![CDATA[Abhishyant Kidangoor]]>
						</dc:creator>
										<author>
						<![CDATA[Abhishyantkidangoor]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2025/03/21131850/polar-bears-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=323458</guid>

					
											<locations>
							<![CDATA[Arctic, Canada, Global, and North America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Bears, Biodiversity, Climate, Climate Change, Climate Science, Conflict, Conservation, Conservation Technology, Culture, Earth Science, Environment, Global Environmental Crisis, Global Warming, Human-wildlife Conflict, Mammals, Polar Bears, Research, Science, Sea Ice, Technology, Wildlife, and Zoos]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[How do you spot polar bears in the vast, and often dark, wilderness of the Arctic? Enter Bear-dar. This AI-driven radar system scans the landscape to spot approaching polar bears. The technology was developed by the nonprofit Polar Bears International in collaboration with U.S.-based security firm Spotter Global in a bid to mitigate encounters between [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[How do you spot polar bears in the vast, and often dark, wilderness of the Arctic? Enter Bear-dar. This AI-driven radar system scans the landscape to spot approaching polar bears. The technology was developed by the nonprofit Polar Bears International in collaboration with U.S.-based security firm Spotter Global in a bid to mitigate encounters between the animals and people. “We wanted to add another tool to the polar bear safety toolbox,” Alysa McCall, director of science at Polar Bears International, told Mongabay in a video interview. “With an early-warning detection system, there’s less chance of a bear getting killed because it surprised somebody.” Climate change is the biggest threat to the survival and existence of polar bears (Ursus maritimus). As sea ice melts in the Arctic, these threatened species are rapidly losing their habitats. As a result, they move on to land in search of food, where they risk coming into close contact with humans. With Bear-dar, scientists and conservationists say they hope to help manage such encounters and conflicts. The early-warning system uses radars and cameras that keep a watch on the landscape, looking out for motion in its field of vision. The radar panels, each about the size of an iPad, look at a distance ranging from a few hundred meters to 1.2 kilometers (0.75 miles). The AI algorithm in the radars was trained to detect polar bears from zoo-held animals at Assiniboine Conservancy Park in the Canadian city of Winnipeg. “There’s not a ton of polar bear&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/bear-dar-aims-to-give-arctic-communities-a-heads-up-on-nearby-polar-bears/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/bear-dar-aims-to-give-arctic-communities-a-heads-up-on-nearby-polar-bears/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-323458</doi>				</item>
						<item>
					<title>Monkey vs machine: Nepal tests AI to fight crop-raiding macaques</title>
					<link>https://news.mongabay.com/2026/07/monkey-vs-machine-nepal-tests-ai-to-fight-crop-raiding-macaques/</link>
					<comments>https://news.mongabay.com/2026/07/monkey-vs-machine-nepal-tests-ai-to-fight-crop-raiding-macaques/#respond</comments>
					<pubDate>13 Jul 2026 13:19:01 +0000</pubDate>
											<dc:creator>
							<![CDATA[Praveen Kumar Yadav]]>
						</dc:creator>
										<author>
						<![CDATA[Abhaya Raj Joshi]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/13115519/rhesus-macaque-in-nepal-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=323193</guid>

					
											<locations>
							<![CDATA[Asia, Nepal, and South Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Animals, Artificial Intelligence, Biodiversity, Conflict, Conservation, Conservation Technology, Crops, Environment, Human-wildlife Conflict, Mammals, Monkeys, Primates, Software, Solutions, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[KATHMANDU — At dawn in Birta Deurali village of Kavrepalanchok in central Nepal, maize fields aren&#8217;t quiet. Farmers stand guard, scanning the trees for movement, but they aren&#8217;t the only ones there. &#8220;If you leave even for a short time, the monkeys do considerable damage,&#8221; said 46-year-old Sagar Tamang, a resident of Birta Deurali. Villagers [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[KATHMANDU — At dawn in Birta Deurali village of Kavrepalanchok in central Nepal, maize fields aren&#8217;t quiet. Farmers stand guard, scanning the trees for movement, but they aren&#8217;t the only ones there. &#8220;If you leave even for a short time, the monkeys do considerable damage,&#8221; said 46-year-old Sagar Tamang, a resident of Birta Deurali. Villagers take turns guarding fields every two hours, beating drums and sending dogs to chase them away. Nepal&#8217;s macaque crop raids are making national headlines, and the country’s researchers are testing artificial intelligence-based detection and deterrence systems, though even the scientists building them admit the technology isn&#8217;t yet a reliable fix. &#8220;We even hide food indoors, but they still find their way in,&#8221; Tamang said. &#8220;Only fire scares them now,&#8221; he added, referring to the burning sticks villagers’ wave to keep the monkeys at bay. For farmers such as Sunmaya Lama, 32, of the same village, the losses are adding up. &#8220;We lost maize worth 30,000 rupees (about $230) this year,&#8221; she said. &#8220;Over the past three years, it has reached around 90,000 rupees (about $670).&#8221; When she approached the local government, she said she was told there was no provision for compensation. &#8220;So we just bear the loss ourselves,&#8221; she said. A troop of rhesus macaques forage for food in Nepal. Image by Sunuwargr via Wikimedia Commons (CC BY 4.0). A brewing crisis across the country The scale of the problem extends beyond the village. A 2022 nationwide analysis published in the Journal of Environmental&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/monkey-vs-machine-nepal-tests-ai-to-fight-crop-raiding-macaques/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/monkey-vs-machine-nepal-tests-ai-to-fight-crop-raiding-macaques/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-323193</doi>				</item>
						<item>
					<title>Scientists use AI to produce first high-resolution map of global seagrass extent</title>
					<link>https://news.mongabay.com/2026/07/scientists-use-ai-to-produce-first-high-resolution-map-of-global-seagrass-extent/</link>
					<comments>https://news.mongabay.com/2026/07/scientists-use-ai-to-produce-first-high-resolution-map-of-global-seagrass-extent/#respond</comments>
					<pubDate>10 Jul 2026 12:51:59 +0000</pubDate>
											<dc:creator>
							<![CDATA[Abhishyant Kidangoor]]>
						</dc:creator>
										<author>
						<![CDATA[Abhishyantkidangoor]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/10103637/IMG_2026-07-10-031214-768x512.jpeg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=323038</guid>

					
											<locations>
							<![CDATA[Asia, Australia, Bahamas, Caribbean, Cuba, Global, Indonesia, North America, Oceania, Southeast Asia, and United States]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Biodiversity, Carbon Sequestration, Climate Change, Coastal Ecosystems, Conservation, data, Ecosystems, Environment, Environmental Policy, Global Environmental Crisis, Governance, Mapping, Marine, Marine Conservation, Marine Protected Areas, Mitigation, Oceans, Plants, Politics, Protected Areas, Remote Sensing, Research, Satellite Imagery, Science, Seagrass, Software, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Almost 70% of the global extent of seagrass meadows is found off the coasts of just five countries. However, only 21% of this fall within marine protected areas. These are some of the key findings from the first high-resolution map of seagrasses around the world. Scientists at Arizona State University in the U.S. used satellite [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Almost 70% of the global extent of seagrass meadows is found off the coasts of just five countries. However, only 21% of this fall within marine protected areas. These are some of the key findings from the first high-resolution map of seagrasses around the world. Scientists at Arizona State University in the U.S. used satellite imagery and artificial intelligence to map seagrass cover over two periods, 2019-2020 and 2023-2024. According to a study, recently published in the journal Nature, the team identified “148,506 km2 of seagrass globally,” or about 57,340 square miles, a combined area larger than England, with the majority lying in subtidal areas. “We wanted to map seagrass in a very accurate manner,” Jiwei Li, an assistant professor at ASU’s School of Ocean Futures, who led the study, told Mongabay in a video interview. “And tell people where the seagrass is and where there is potential to protect it.” Scientists mapped seagrass ecosystems using satellite data and AI technology. Pictured above is a satellite image from a coast off of Richmond, Canada, along with the seagrass ecosystems highlighted in green to the right. Image courtesy of Jiwei Li, Arizona State University. Seagrasses are the only flowering plant species in the ocean, and form vast meadows in shallow waters. Apart from being habitats for many marine species, these meadows are also crucial carbon sinks that can absorb CO2 35 times faster than terrestrial forests. They also protect coastlines and filter pollutants in the water. However, seagrass ecosystems face threats from&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/scientists-use-ai-to-produce-first-high-resolution-map-of-global-seagrass-extent/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-323038</doi>				</item>
						<item>
					<title>‘A targeted, data-driven approach’: Interview with Vietnam’s antipoaching unit</title>
					<link>https://news.mongabay.com/2026/07/a-targeted-data-driven-approach-interview-with-vietnams-antipoaching-unit/</link>
					<comments>https://news.mongabay.com/2026/07/a-targeted-data-driven-approach-interview-with-vietnams-antipoaching-unit/#respond</comments>
					<pubDate>07 Jul 2026 22:21:39 +0000</pubDate>
											<dc:creator>
							<![CDATA[Campbell Rusden]]>
						</dc:creator>
										<author>
						<![CDATA[Isabel Esterman]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/06134130/Anti-poaching-officers-and-Forest-rangers-in-Pu-Mat_15-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=322576</guid>

					
											<locations>
							<![CDATA[Asia, Southeast Asia, and Vietnam]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Conservation, Crime, data, Governance, Happy-upbeat Environmental, Hope and optimism, Interviews, Interviews with conservation players, Poaching, Software, Technology, Wildlife, Wildlife Trade, and Wildlife Trafficking]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Southeast Asia’s middle class has grown exponentially in recent decades, driving demand for exotic pets, meats and animal parts used for luxury goods and traditional medicines. In Vietnam, long a destination country for trafficked animal products, rising demand has motivated wildlife trafficking rings to expand their activities domestically as well as internationally, putting the country’s [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Southeast Asia’s middle class has grown exponentially in recent decades, driving demand for exotic pets, meats and animal parts used for luxury goods and traditional medicines. In Vietnam, long a destination country for trafficked animal products, rising demand has motivated wildlife trafficking rings to expand their activities domestically as well as internationally, putting the country’s rich biodiversity under pressure from indiscriminate and widespread trap use. As trafficking rings become more sophisticated and entrenched, conservation groups have also had to adapt, embracing new technologies and deepening their own networks to combat wildlife crime. One group working to stay ahead of traffickers is Save Vietnam’s Wildlife (SVW), which has partnered with several national parks to implement antipoaching practices in Vietnam’s richest and most targeted ecosystems. Pu Mat National Park traces the border of Vietnam and Laos, where its rich biodiversity and many endemic species suffer growing pressure from poaching activity. Since 2018, SVW has worked in partnership with the park and its rangers to support the recruitment, equipping and training of a dedicated antipoaching unit, or APU. Since its inception, the APU has removed tens of thousands of snares, dismantled poaching camps, confiscated firearms, and detained more than 1,000 alleged violators. Its approach integrates tools such as the SMART data aggregation software and remotely monitored “PoacherCams” to identify trafficking hotspots and guide patrols more strategically. At the same time, outreach efforts with local communities aim to reduce both the supply of and demand for illegally sourced wildlife. APU coordinator Huu Trung Nguyen, team head&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/a-targeted-data-driven-approach-interview-with-vietnams-antipoaching-unit/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/a-targeted-data-driven-approach-interview-with-vietnams-antipoaching-unit/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-322576</doi>				</item>
						<item>
					<title>In AI race, Indigenous values could guide environmental issues, researchers suggest</title>
					<link>https://news.mongabay.com/2026/07/in-ai-race-indigenous-values-could-guide-environmental-issues-researchers-suggest/</link>
					<comments>https://news.mongabay.com/2026/07/in-ai-race-indigenous-values-could-guide-environmental-issues-researchers-suggest/#respond</comments>
					<pubDate>07 Jul 2026 17:33:14 +0000</pubDate>
											<dc:creator>
							<![CDATA[Shradha Triveni]]>
						</dc:creator>
										<author>
						<![CDATA[Latoya Abulu]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2025/02/27193706/2.-Mapping-areas-using-applications-during-the-course-Courtesy-Evilene-Paixao-HAY-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=322777</guid>

											<reporting-project>
							<![CDATA[Indigenous Peoples and Conservation]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Conservation Technology, data, Data centers, Indigenous Peoples, Indigenous Rights, Technology, and Traditional Knowledge]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Nicole Horseherder has seen the impacts of unsustainable development on Indigenous communities. A Navajo environmental activist and co-founder of Tó Nizhóní Ání (Sacred Water Speaks), a Diné-led nonprofit organization based in Arizona in the U.S., she has spent years protecting water that sustains communities from industrial use. She sees parallels with today’s artificial intelligence development, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Nicole Horseherder has seen the impacts of unsustainable development on Indigenous communities. A Navajo environmental activist and co-founder of Tó Nizhóní Ání (Sacred Water Speaks), a Diné-led nonprofit organization based in Arizona in the U.S., she has spent years protecting water that sustains communities from industrial use. She sees parallels with today’s artificial intelligence development, she said. As technology is advancing at an unprecedented rate, a growing body of research is looking at Indigenous knowledge systems for guidance on ethical frameworks for AI. But for someone like Horseherder, Indigenous knowledge is not data to be harvested, she said. “It is built on thousands of years of real-time human observations on the changes in landscapes, the weather and the seasons, the directions of the moon, the sun and everything around us,” she said. Within the Navajo community, people living in different landscapes including the high-deserts, river valleys and dry to arid places have their own local knowledge systems. A recent study published in AI and Ethics journal examines how Indigenous ecological knowledge could reshape AI frameworks through an analysis of Navajo and Māori concepts. The paper drew on Māori value of Kaitiakitanga, or guardianship, and Navajo philosophy of Hózhó, meaning balance and harmony. The study’s authors said that traditional ecological knowledge embodies collective responsibility and could provide an ethical basis for questioning whether the scale of a proposed AI model is justifiable given its environmental cost, prioritizing ecological integrity over unbounded technological expansion. This rainforest in Ituri, DRC, is part of&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/in-ai-race-indigenous-values-could-guide-environmental-issues-researchers-suggest/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/in-ai-race-indigenous-values-could-guide-environmental-issues-researchers-suggest/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-322777</doi>				</item>
						<item>
					<title>Nepal&#8217;s birdwatchers help monitor wildlife and promote tourism</title>
					<link>https://news.mongabay.com/2026/07/nepals-birdwatchers-help-monitor-wildlife-and-promote-tourism/</link>
					<comments>https://news.mongabay.com/2026/07/nepals-birdwatchers-help-monitor-wildlife-and-promote-tourism/#respond</comments>
					<pubDate>06 Jul 2026 15:09:44 +0000</pubDate>
											<dc:creator>
							<![CDATA[Bibek Bhandari]]>
						</dc:creator>
										<author>
						<![CDATA[Abhaya Raj Joshi]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/06123303/Spiny-Babbler-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=322563</guid>

					
											<locations>
							<![CDATA[Asia, Nepal, and South Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Biodiversity, Birding, Birds, Citizen Science, Community-based Conservation, Conservation, data, Ecotourism, Environment, Research, Science, Tourism, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[KATHMANDU — As a child, Shankar Tiwari and his friends killed birds for fun around Chitwan National Park in central Nepal, where they grew up. Years later, a foreign guest at the hotel where Tiwari worked took him birdwatching and turned the hunter into a bird lover. The striking yellow and black plumage and red [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[KATHMANDU — As a child, Shankar Tiwari and his friends killed birds for fun around Chitwan National Park in central Nepal, where they grew up. Years later, a foreign guest at the hotel where Tiwari worked took him birdwatching and turned the hunter into a bird lover. The striking yellow and black plumage and red eyes of the black-hooded oriole (Oriolus xanthornus), which he saw magnified through binoculars for the first time, sparked Tiwari&#8217;s lifelong passion for birds, he said. Today, the 57-year-old is one of Nepal&#8217;s leading birdwatching guides and a prominent member of the country&#8217;s growing birdwatching community that is contributing to bird conservation while promoting it as a tourism attraction. Enthusiasts look for birds in Suryabinayak, Kathmandu. Image courtesy of Prasan Shrestha. &#8220;The birdwatching community has grown significantly today,&#8221; he said. &#8220;This has helped not just in raising awareness of the birds, but the community also helps in keeping tabs on the birds — how their habitat and population have changed over the years.&#8221; A new study suggests that birdwatching is becoming increasingly popular in Nepal, particularly among the young, and that this trend &#8220;contributes to biodiversity conservation through public engagement and ecological data collection.&#8221; In Nepal&#8217;s capital, Kathmandu, nonprofits like Bird Conservation Nepal (BCN) and Friends of Birds organize events on weekends, drawing a diverse group of birdwatchers. Despite the increasing popularity of birdwatching, the study notes, public participation and data sharing remain limited. A black-hooded oriole, the bird that sparked Tiwari’s lifelong passion for birds.&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/nepals-birdwatchers-help-monitor-wildlife-and-promote-tourism/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/07/nepals-birdwatchers-help-monitor-wildlife-and-promote-tourism/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-322563</doi>				</item>
						<item>
					<title>Can selective logging help the Congo Basin store more carbon?</title>
					<link>https://news.mongabay.com/2026/07/can-selective-logging-help-the-congo-basin-store-more-carbon/</link>
					<comments>https://news.mongabay.com/2026/07/can-selective-logging-help-the-congo-basin-store-more-carbon/#respond</comments>
					<pubDate>02 Jul 2026 22:38:09 +0000</pubDate>
											<dc:creator>
							<![CDATA[Claudia Geib]]>
						</dc:creator>
										<author>
						<![CDATA[Morgan Erickson-Davis]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/07/02103623/elephants-in-the-congo-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=322365</guid>

					
											<locations>
							<![CDATA[Africa, Central Africa, and Congo Basin]]>
						</locations>
					
											<topic-tags>
							<![CDATA[carbon, Carbon Sequestration, Climate Change, Conservation, Conservation Technology, Environment, Forest Carbon, Forestry, Forests, Governance, Logging, Rainforests, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The rainforests of the Congo Basin are the planet’s largest forested carbon sink: as these 3.3 million square kilometers (1.3 million square miles) of trees in Central Africa breathe in carbon dioxide from the atmosphere, they turn it into leaves and bark and branches, helping to mitigate the effects of climate change. Yet a recently [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The rainforests of the Congo Basin are the planet’s largest forested carbon sink: as these 3.3 million square kilometers (1.3 million square miles) of trees in Central Africa breathe in carbon dioxide from the atmosphere, they turn it into leaves and bark and branches, helping to mitigate the effects of climate change. Yet a recently published study quantifying this carbon storage presents a surprising suggestion: that the most effective way to trap even more carbon in Congo Basin rainforests may be to cut some of its trees down. The study, published as an advance copy in April in ­­Nature Communications, found that selectively managed logging areas make up about 57% of the net carbon removals in the Congo Basin. The authors suggest this shows these forests could provide benefits to both the planet and local communities if sustainable logging is permitted. “The question is: is logging, or any other sustainable use of those forests, only bad for the environment?” said lead researcher Le Bienfaiteur Sagang, a tropical ecologist at the University of California, Los Angeles. “Can we use these forests, give them more value, provide jobs for the locals, and still provide a good contribution to the climate?” Sagang and his co-authors decided to put this questions to test. They designed a machine-learning program that combined land-cover data, captured between 1990 and 2020 across the Congo Basin’s six forested countries, with aboveground carbon levels estimated from other studies via lidar, which creates complex 3D landscape scans using lasers. This rainforest&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/can-selective-logging-help-the-congo-basin-store-more-carbon/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-322365</doi>				</item>
						<item>
					<title>Crackdown lets rainforest reclaim illegal road in rare win for the Amazon</title>
					<link>https://news.mongabay.com/2026/07/crackdown-lets-rainforest-reclaim-illegal-road-in-rare-win-for-the-amazon/</link>
					<comments>https://news.mongabay.com/2026/07/crackdown-lets-rainforest-reclaim-illegal-road-in-rare-win-for-the-amazon/#respond</comments>
					<pubDate>02 Jul 2026 14:38:40 +0000</pubDate>
											<dc:creator>
							<![CDATA[Rafael Spuldar]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandre de Santi]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2024/04/19153134/dirt-roads-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=322254</guid>

					
											<locations>
							<![CDATA[Amazon, Brazil, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Conservation, Crime, Development, Environment, Environmental Law, Environmental Policy, Governance, Indigenous Reserves, Indigenous Rights, Infrastructure, Law, Politics, Protected Areas, Remote Sensing, Roads, and Satellite Imagery]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A vanishing road in the Xingu region exemplifies what is at stake in Brazil’s October election.]]>
						</description>
																					<content:encoded>
							<![CDATA[In 2022, an illegal road cutting the length of a full marathon through two strictly protected areas in the Brazilian Amazon threatened to do what conservationists feared most: Split the Xingu Socioenvironmental Corridor, a mosaic of Indigenous territories and conservation units covering some 26 million hectares (64 million acres), in half. Four years later, satellite images reveal the 42.8-kilometer (26.6-mile) road is gone, swallowed by regrowing forest — something rarely seen in the region. Its disappearance runs counter to everything that typically happens when a road appears in the Amazon. “Here, the road is the beginning of everything, the beginning of the devastation,” Bruno Ferreira, a researcher at the conservation nonprofit Imazon, part of the MapBiomas mapping network, told Mongabay. Usually, roads give birth to a set of new roads (legal or illegal) that spawn from the main one, creating a fishbone pattern in satellite images. Imazon research suggests that 95% of deforestation in the Amazon happens within 5 km (3 mi) of a road, meaning that illegal cattle ranching and logging would have been virtually unstoppable had this one road been consolidated. For the organizations monitoring the region around the Xingu, a key tributary of the Amazon, the now dead road is proof that the alliance between civil society and a willing government can reverse destruction that once seemed irreversible — and a reminder of what is at stake as Brazil heads into a tightly contested presidential election in October. Uncovered in 2022, the 42-kilometer-long illegal road ran along&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/07/crackdown-lets-rainforest-reclaim-illegal-road-in-rare-win-for-the-amazon/" data-wpel-link="internal">Mongabay</a>]]>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-322254</doi>				</item>
						<item>
					<title>Laser scanning forests may boost carbon estimates, but credibility questions linger</title>
					<link>https://news.mongabay.com/2026/06/laser-scanning-forests-may-boost-carbon-estimates-but-credibility-questions-linger/</link>
					<comments>https://news.mongabay.com/2026/06/laser-scanning-forests-may-boost-carbon-estimates-but-credibility-questions-linger/#respond</comments>
					<pubDate>26 Jun 2026 14:55:49 +0000</pubDate>
											<dc:creator>
							<![CDATA[Shradha Triveni]]>
						</dc:creator>
										<author>
						<![CDATA[Morgan Erickson-Davis]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/06/26115840/Overlay1-1-1-768x512.png" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=321918</guid>

					
											<locations>
							<![CDATA[Australia and Oceania]]>
						</locations>
					
											<topic-tags>
							<![CDATA[carbon, Carbon Credits, Carbon Emissions, Carbon Market, Climate Change, Conservation, Conservation Technology, Environment, Forest Carbon, Forests, Geology, Mapping, Research, Science, Soil Carbon, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Forests are natural carbon sinks. But as reforestation of degraded land is becoming a global climate solution, a persistent question lingers: How do we know how much carbon a forest is actually storing? Researchers say ground-based laser scanning, or LiDAR, could improve the efficiency of measuring the outcomes of reforestation. And a recent paper published [&#8230;]]]>
						</description>
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							<![CDATA[Forests are natural carbon sinks. But as reforestation of degraded land is becoming a global climate solution, a persistent question lingers: How do we know how much carbon a forest is actually storing? Researchers say ground-based laser scanning, or LiDAR, could improve the efficiency of measuring the outcomes of reforestation. And a recent paper published in Ecological Solutions and Evidence found that LiDAR scanning in Australia offered an improvement over other methods of carbon estimation. LiDAR instruments emit thousands of tiny laser pulses to create complex and intricate 3D maps of a forest’ structure, allowing researchers to more accurately estimate how much carbon is contained in its trees. Co-author of the paper Alexander W. Cheesman, a senior research fellow at James Cook University, North Queensland, Australia, calls the technology “transformative.” “Traditional field surveys heavily relied on manually measuring the height and diameter of a relatively small number of trees. But laser scanning captures the whole forest in 360 degrees, recording every stem, every branch and the shape of the canopy,” Cheesman told Mongabay during a virtual interview over Google Meet. In Australia, the Full Carbon Accounting Model (FullCAM) is the government’s main tool to track carbon stored in soil and roots (belowground carbon) and vegetation (aboveground carbon). It is used for national greenhouse gas reporting to the United Nations and to assess carbon credit within the country, through the government’s Australian Carbon Credit Unit (ACCU) Scheme. Rather than directly measuring carbon, FullCAM simulates the movement of carbon through ecosystems by&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/06/laser-scanning-forests-may-boost-carbon-estimates-but-credibility-questions-linger/" data-wpel-link="internal">Mongabay</a>]]>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-321918</doi>				</item>
						<item>
					<title>Chewing sounds can help decode an animal’s diet using AI, new study finds</title>
					<link>https://news.mongabay.com/2026/06/chewing-sounds-can-help-decode-an-animals-diet-using-ai-new-study-finds/</link>
					<comments>https://news.mongabay.com/2026/06/chewing-sounds-can-help-decode-an-animals-diet-using-ai-new-study-finds/#respond</comments>
					<pubDate>26 Jun 2026 02:29:05 +0000</pubDate>
											<dc:creator>
							<![CDATA[Abhishyant Kidangoor]]>
						</dc:creator>
										<author>
						<![CDATA[Abhishyantkidangoor]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/06/25202550/Banner-Image-C-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=321853</guid>

					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animal Behavior, Animals, Artificial Intelligence, Biodiversity, Biology, Conservation, Conservation Technology, data, Ecosystems, Environment, Food, Marine, Marine Animals, Molluscs, Oceans, Predators, Rays, Research, Science, Software, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[What does an eagle ray’s menu look like? An artificial intelligence model can now answer that question by listening to sounds of the animal chewing on food. Scientists developed the machine learning algorithm to detect the sound of shells being crushed by predators when they feed on mollusks. According to a study published in the [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[What does an eagle ray’s menu look like? An artificial intelligence model can now answer that question by listening to sounds of the animal chewing on food. Scientists developed the machine learning algorithm to detect the sound of shells being crushed by predators when they feed on mollusks. According to a study published in the journal Ecological Informatics, the model can also identify the prey based on the sounds. “A lot of animals out there, particularly marine animals, have the unique ability to crush shells open,” Matt Ajemian, assistant research professor at the Harbor Branch Oceanographic Institute at Florida Atlantic University in the U.S. who was part of the research, told Mongabay in a video interview. “But we don’t know how much they eat and what they feed on. So we wanted to see if we could remotely detect an animal feeding on a clam versus a gastropod.” Keeping track of predator-prey interactions is crucial, especially in the face of rapidly changing marine habitats. Monitoring what and how much larger predators are eating is important to understand the resources they depend on and subsequently plan effective conservation action. Conversely, it’s also critical to have data on how much pressure there is on shellfish populations that serve as prey. “For example, in a clam bed or seagrass bed, we want to know how much prey is removed by a predator over the course of a year,” Ajemian said. However, gathering this data is not an easy task. Tracking predators underwater is&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/06/chewing-sounds-can-help-decode-an-animals-diet-using-ai-new-study-finds/" data-wpel-link="internal">Mongabay</a>]]>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-321853</doi>				</item>
						<item>
					<title>Can globally essential mangroves bounce back from deforestation? New study gives hope</title>
					<link>https://news.mongabay.com/2026/06/can-globally-essential-mangroves-bounce-back-from-deforestation-new-study-gives-hope/</link>
					<comments>https://news.mongabay.com/2026/06/can-globally-essential-mangroves-bounce-back-from-deforestation-new-study-gives-hope/#respond</comments>
					<pubDate>23 Jun 2026 15:17:00 +0000</pubDate>
											<dc:creator>
							<![CDATA[Elizabeth Schell]]>
						</dc:creator>
										<author>
						<![CDATA[Andy Lehren]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/06/23114608/mangroves-and-corals-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=321654</guid>

					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Coastal Ecosystems, Conservation, Deforestation, Environment, Forests, Mangroves, Marine, Marine Conservation, Research, Satellite Imagery, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The world’s mangrove forests, critical coastal ecosystems feared to be on the brink of collapse, are making an unexpected recovery overall, according to research published in June 2026 by scientists at Tulane University in New Orleans in the U.S. The study found that as deforestation and degradation have slowed down over the past decade around [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The world’s mangrove forests, critical coastal ecosystems feared to be on the brink of collapse, are making an unexpected recovery overall, according to research published in June 2026 by scientists at Tulane University in New Orleans in the U.S. The study found that as deforestation and degradation have slowed down over the past decade around the globe, the woody plants have managed to bounce back in many areas. The study analyzed satellite data from the past four decades. It found that unexpected expansion and regrowth across the world began counterbalancing mangrove forest loss around 2010. The rate of gain has nearly outpaced losses, resulting in about a cumulative 1% global decline since the 1980s. The recovery is predominantly driven by expansion of mangroves into new areas rather than recovery of existing forests. Most previous studies on the issue have used radar, which struggles to distinguish mangroves from other ecosystems. This research created a 30-meter resolution annual data set from Landsat satellite images to more accurately identify mangroves around the world from 1984 to 2023. The study also found that mangroves are becoming less degraded. Within mangroves, a greater proportion are closed-canopy forests, which means they are denser, retain more carbon and help secure shorelines. These closed-canopy sections increased from about 50% of mangroves worldwide in the 1980s, to about 58% by 2023. “Our study shows some new ideas about [mangrove] recovery. We find that deforestation and degradation rates are slowing down,” said lead author of the study Zhen Zhang, a&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/06/can-globally-essential-mangroves-bounce-back-from-deforestation-new-study-gives-hope/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-321654</doi>				</item>
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