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	<channel>
		<title>Conservation news</title>
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		<link>https://news.mongabay.com/list/data/</link>
		<description>Environmental science and conservation news</description>
		<lastBuildDate>Fri, 28 Aug 2026 02:10:53 +0000</lastBuildDate>
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	<title>News on data</title>
	<link>https://news.mongabay.com/list/data/</link>
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				<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>
										<wfw:commentRss>https://news.mongabay.com/2026/08/reconnecting-the-skies-linking-flyways-for-migratory-seabirds-across-continents/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-326785</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>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>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-324873</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>
										<wfw:commentRss>https://news.mongabay.com/2026/07/scientists-use-ai-to-produce-first-high-resolution-map-of-global-seagrass-extent/feed/</wfw:commentRss>
					<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>
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					<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>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-322563</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>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-322254</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>]]>
						</content:encoded>
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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>
						<item>
					<title>To improve its floundering fisheries, Kenya boosts data collection on artisanal fleet</title>
					<link>https://news.mongabay.com/2026/06/to-improve-its-floundering-fisheries-kenya-boosts-data-collection-on-artisanal-fleet/</link>
					<comments>https://news.mongabay.com/2026/06/to-improve-its-floundering-fisheries-kenya-boosts-data-collection-on-artisanal-fleet/#respond</comments>
					<pubDate>12 Jun 2026 14:46:41 +0000</pubDate>
											<dc:creator>
							<![CDATA[Anthony Langat]]>
						</dc:creator>
										<author>
						<![CDATA[Rebecca Kessler]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/06/12114636/needlefish-hang-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=321034</guid>

					
											<locations>
							<![CDATA[Africa, East Africa, and Kenya]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Conservation, data, Environment, Environmental Law, Fish, Fishing, Governance, Marine, Marine Animals, Monitoring, Oceans, Overfishing, Solutions, Technology, Tracking, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[MTWAPA, Kenya — On a mid-morning in March, Mohamed Mwazigona, 58, had just landed a measly catch on the town beach in Mtwapa on Kenya’s north coast. His crew was preparing the boat for a second trip into the sea with hopes of better luck. As traders started trickling in to buy fish, Mwazigona sat [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[MTWAPA, Kenya — On a mid-morning in March, Mohamed Mwazigona, 58, had just landed a measly catch on the town beach in Mtwapa on Kenya’s north coast. His crew was preparing the boat for a second trip into the sea with hopes of better luck. As traders started trickling in to buy fish, Mwazigona sat on a broken upturned boat staring at the horizon beyond the sea. His morning trip had netted only 2 kilograms (4.4 pounds) of fish. He worried that his catches had decreased a lot in recent years. “The number of fishermen has gone up; we have become too many,” he said. That’s the reason he left his village of Shariani, 40 kilometers (25 miles) to the north, to base his fishing in Mtwapa, which he felt had fewer fishers and better access to markets. In Kenya, local beach management units (BMUs), like the Mtwapa BMU that Mwazigona belongs to, have a legal mandate to support collection of fisheries data for submission to the government: mainly the type of fish its members catch and the weight. These data are meant to inform government decision-making about small-scale fisheries so it can help reverse the competition for dwindling fish stocks that Mwazigona and his colleagues are experiencing. They are also meant to help fishers themselves make decisions on where and when to fish. However, the BMUs’ small-scale fisheries data have been inaccurate and inaccessible to stakeholders. To address this problem and improve the sustainability of Kenya’s small-scale fisheries, WorldFish,&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/06/to-improve-its-floundering-fisheries-kenya-boosts-data-collection-on-artisanal-fleet/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-321034</doi>				</item>
						<item>
					<title>Why conservation urgently needs acoustic baselines</title>
					<link>https://news.mongabay.com/2026/06/how-sound-can-reveal-what-satellite-images-miss/</link>
					<comments>https://news.mongabay.com/2026/06/how-sound-can-reveal-what-satellite-images-miss/#respond</comments>
					<pubDate>09 Jun 2026 00:32:45 +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/20/2026/05/29222541/SBP-photos-header-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=320333</guid>

											<reporting-project>
							<![CDATA[Founder's briefs]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Bioacoustics, Conservation, Conservation Solutions, Conservation Technology, Ecology, Environment, Green, Monitoring, Remote Sensing, Solutions, Technology, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[From above, an intact forest can look reassuringly complete. A satellite image may show an unbroken canopy, a block of green still standing amid plantations, roads or logged land. For many conservation programs, that view has become the starting point for measurement. If the canopy remains, the forest is often treated as if much of [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[From above, an intact forest can look reassuringly complete. A satellite image may show an unbroken canopy, a block of green still standing amid plantations, roads or logged land. For many conservation programs, that view has become the starting point for measurement. If the canopy remains, the forest is often treated as if much of its ecological value remains as well. The forest itself may tell a more complicated story. Birds, insects, frogs and primates divide the day among them. Some call at dawn, others at night. Some occupy narrow frequency bands; others fill the background with a steady rasp. A forest that looks intact can still lose part of this living structure. The canopy may close after logging. Carbon may remain on a balance sheet. The animal community may not return in the same form. Garnet Pitta. Photo by Hanyrol Hanyzan Ahmad Sah A new paper in Global Change Biology, by Zuzana Buřivalová and colleagues, examines that problem through sound. The study describes the Soundscape Baselines Project, an effort to record the acoustic signatures of some of the world’s remaining intact forests before those reference points become harder to find. The idea is straightforward. To know whether a forest has changed, one needs to know what it sounded like before the change. That baseline is not only a technical convenience. It is a guard against a familiar problem in conservation: each generation tends to accept the nature it first encountered as normal. Daniel Pauly called this shifting baseline syndrome&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/06/how-sound-can-reveal-what-satellite-images-miss/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-320333</doi>				</item>
						<item>
					<title>Nature’s feedback loops can drive collapse. Thomas Crowther thinks they can also drive recovery</title>
					<link>https://news.mongabay.com/2026/06/natures-feedback-loops-can-drive-collapse-thomas-crowther-thinks-they-can-also-drive-recovery/</link>
					<comments>https://news.mongabay.com/2026/06/natures-feedback-loops-can-drive-collapse-thomas-crowther-thinks-they-can-also-drive-recovery/#respond</comments>
					<pubDate>01 Jun 2026 00:55:10 +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/20/2026/05/12020804/thomas-crowther-13-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=319071</guid>

											<reporting-project>
							<![CDATA[Nature conservation Influencers]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Bioacoustics, Biodiversity, Conservation, Conservation Technology, Environment, Forests, Interviews, Interviews with conservation players, Rainforests, Remote Sensing, Technology, Tropical Forests, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Thomas Crowther’s career has been shaped by large claims about small things. A seed, a patch of soil, a soundscape, a moment of fear, a local restoration project: each, in his telling, can become part of a larger system of cause and effect. His new book, Nature’s Echo, is built around that idea. Feedback loops, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Thomas Crowther’s career has been shaped by large claims about small things. A seed, a patch of soil, a soundscape, a moment of fear, a local restoration project: each, in his telling, can become part of a larger system of cause and effect. His new book, Nature’s Echo, is built around that idea. Feedback loops, he argues, are not just a feature of ecology. They are among the forces that formed stars, spread life across Earth, drive climate change, and may yet help repair damaged ecosystems. Crowther, a British ecologist, became one of the best-known figures in global ecology while at ETH Zurich, where he founded the Crowther Lab and built a large interdisciplinary research group. His work helped popularize the idea that ecosystem restoration could play a major role in addressing climate change, especially after a 2019 Science paper on the potential for additional tree cover drew worldwide attention, as well as criticism from scientists who warned against simplistic tree-planting narratives. His work also helped give rise to the World Economic Forum’s Trillion Trees initiative, and he has served as co-chair of the advisory board to the U.N. Decade on Ecosystem Restoration. He is also the founder of Restor, an open-data platform that connects conservation and restoration initiatives around the world. Screenshot of the Restor interface. That public profile has made Crowther both influential and contested. In 2024 he was also at the center of a dispute over his departure from ETH Zurich. The university said its decision followed&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/06/natures-feedback-loops-can-drive-collapse-thomas-crowther-thinks-they-can-also-drive-recovery/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-319071</doi>				</item>
						<item>
					<title>The Amazon’s path from crisis to durability</title>
					<link>https://news.mongabay.com/2026/05/the-amazons-path-from-crisis-to-durability/</link>
					<comments>https://news.mongabay.com/2026/05/the-amazons-path-from-crisis-to-durability/#respond</comments>
					<pubDate>28 May 2026 23:05:41 +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/20/2026/05/28225126/amazon_201628_26-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=320267</guid>

											<reporting-project>
							<![CDATA[Founder's briefs]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Amazon, Brazil, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Bioeconomy, Conservation Finance, Environment, Environmental Law, Forests, Governance, Indigenous Rights, Land Use Change, Law Enforcement, Protected Areas, Rainforests, Remote Sensing, Saving Rainforests, Solutions, and Tropical Forests]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[In the Amazon, a forest can remain on the map while losing much of what makes it function. The Amazon rainforest is often discussed through a few familiar measures: deforestation, carbon, protected areas, and tipping points. Each is useful. But they do not fully explain why biodiversity continues to decline even where maps still show [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[In the Amazon, a forest can remain on the map while losing much of what makes it function. The Amazon rainforest is often discussed through a few familiar measures: deforestation, carbon, protected areas, and tipping points. Each is useful. But they do not fully explain why biodiversity continues to decline even where maps still show forest, laws exist, and international pledges sound ambitious. A territory can be recognized and still be invaded. A satellite can detect illegal clearing and still fail to trigger a penalty. A story can describe crisis and still leave readers unsure what can be done. Six gaps help explain the problem: finance and forest economy, governance, enforcement, forest function, Indigenous rights, and narrative. They overlap in ways that make each harder to close. The finance and forest-economy gap Protecting forests costs money every year. It requires staff, transport, monitoring, community work, legal support, fire control, restoration, and the ability to respond when illegal actors arrive. Yet the money available for those tasks remains far below the scale of the problem. Globally, UNEP estimates that forest investments need to reach about $300 billion a year by 2030 to meet climate, biodiversity, and land-degradation targets. The report also notes that this figure excludes some enabling conditions, including governance and law enforcement, which means the true need is probably higher. The Brazilian Amazon shows the imbalance more clearly. WWF and Conservation Strategy Fund estimate that Brazil needs about $12.8 billion a year to meet forest policy goals. Current positive&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/05/the-amazons-path-from-crisis-to-durability/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://news.mongabay.com/2026/05/the-amazons-path-from-crisis-to-durability/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-320267</doi>				</item>
						<item>
					<title>Most wildlife AI focuses on the ground. This model looks up in the trees</title>
					<link>https://news.mongabay.com/2026/05/most-wildlife-ai-focuses-on-the-ground-this-model-looks-up-in-the-trees/</link>
					<comments>https://news.mongabay.com/2026/05/most-wildlife-ai-focuses-on-the-ground-this-model-looks-up-in-the-trees/#respond</comments>
					<pubDate>28 May 2026 06:46:16 +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/20/2026/05/28053452/Saimiri_sciureus-1_Luc_Viatour-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=320225</guid>

					
											<locations>
							<![CDATA[Brazil, Central America, Costa Rica, French Guiana, Latin America, Peru, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Artificial Intelligence, Birds, Camera Trapping, Conservation, data, Deforestation, Ecosystems, Environment, Forests, Mammals, Primates, Research, Seed Dispersal, Species, Technology, Trees, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[When it comes to decoding camera-trap images, artificial intelligence has become all the rage, especially for terrestrial animals, or those that dwell on the ground. But for more evasive species living high up in trees, the technology is still lacking. A newly developed AI model aims to fill that gap. TropiCam-AI was developed to detect [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[When it comes to decoding camera-trap images, artificial intelligence has become all the rage, especially for terrestrial animals, or those that dwell on the ground. But for more evasive species living high up in trees, the technology is still lacking. A newly developed AI model aims to fill that gap. TropiCam-AI was developed to detect and identify arboreal, or tree-dwelling, species in a part of the world where they abound: the tropical forests of the Americas. Scientists built the model to address the voids that exist in identifying arboreal mammals and birds. “We set up TropiCam-AI with the objective of developing a tool that is specifically meant for neotropical camera-trapping surveys targeting the canopy,” Andrea Zampetti, lead author of the study and Ph.D. candidate in animal biology at the Sapienza University of Rome, told Mongabay in a video interview. Zampetti’s work was done in collaboration with the TROPECOLNET project at the National Museum of Natural Sciences in Madrid, led by Ana Benítez-López. Arboreal species play a key role in ecosystems. They serve as important seed dispersers, with studies finding that primates, small mammals and birds consume up to 90% of plant species in tropical rainforests. However, these are tree-dependent species that, by their very nature, are especially threatened by deforestation, underscoring the need to study, track and monitor them for conservation purposes. A study published earlier this year by Zampetti and colleagues notes that “arboreal camera trapping remains severely underrepresented compared to AI trained on terrestrial images.” AI models for&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/05/most-wildlife-ai-focuses-on-the-ground-this-model-looks-up-in-the-trees/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-320225</doi>				</item>
						<item>
					<title>Loopholes undermine palm oil industry’s antideforestation pledges</title>
					<link>https://news.mongabay.com/2026/05/loopholes-undermine-palm-oil-industrys-antideforestation-pledges/</link>
					<comments>https://news.mongabay.com/2026/05/loopholes-undermine-palm-oil-industrys-antideforestation-pledges/#respond</comments>
					<pubDate>27 May 2026 21:51:57 +0000</pubDate>
											<dc:creator>
							<![CDATA[Hans Nicholas Jong]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandra Popescu]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2025/11/02173520/sabah_1209-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=320195</guid>

					
											<locations>
							<![CDATA[Indonesia, Malaysia, and Southeast Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Certification, Commodity agriculture, Corporate Social Responsibility, Deforestation, Drivers Of Deforestation, EUDR, Forest Destruction, Forest Loss, Governance, International Trade, Monitoring, Palm Oil, Plantations, Rainforests, Satellite Imagery, and Supply Chain]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[JAKARTA — More than a decade after the palm oil industry embraced a pledge to not deforest, clear tropical peatlands, or use exploitative practices, policies to that end now cover most of the global palm oil trade, as major traders, refiners and consumer brands have pledged to keep deforestation-linked palm oil out of their supply [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[JAKARTA — More than a decade after the palm oil industry embraced a pledge to not deforest, clear tropical peatlands, or use exploitative practices, policies to that end now cover most of the global palm oil trade, as major traders, refiners and consumer brands have pledged to keep deforestation-linked palm oil out of their supply chains. However, deforestation linked to palm oil continues, particularly in Indonesia, the world’s largest producer of the commodity. Satellite analysis by forest-mapping initiative TheTreeMap shows 31,073 hectares (76,783 acres) of forest were cleared for palm oil in Indonesia in 2025, slightly higher than the 30,956 hectares (76,494 acres) recorded in 2024 — highlighting persistent gaps in how the industry enforces its zero-deforestation pledges. In some cases, palm oil from newly cleared land still enters supply chains that companies describe as deforestation-free. “No Deforestation, No Peat, No Exploitation” (NDPE) policies aim to eliminate three major sources of harm in palm oil production: clearing natural forests, developing plantations on carbon-rich peatlands, and exploiting workers or local communities. By 2020, these commitments covered roughly 83% of palm oil refinery capacity in Indonesia and Malaysia, the world’s main producing region. In recent years, companies have also built systems to enforce these pledges. Many now publish grievance mechanisms where violations can be reported, while third-party monitoring groups use satellite imagery to track forest loss and flag suspicious activity. Large-scale corporate deforestation in Indonesia has fallen compared to the mid-2010s, when some plantation companies were clearing vast areas of rainforest. Deforestation for&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/05/loopholes-undermine-palm-oil-industrys-antideforestation-pledges/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-320195</doi>				</item>
						<item>
					<title>From caws to code: AI helps decrypt animal communication</title>
					<link>https://news.mongabay.com/2026/05/from-caws-to-code-ai-helps-decrypt-animal-communication/</link>
					<comments>https://news.mongabay.com/2026/05/from-caws-to-code-ai-helps-decrypt-animal-communication/#respond</comments>
					<pubDate>14 May 2026 03:59:35 +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/20/2026/05/14030403/Banner-Image-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=319392</guid>

					
											<locations>
							<![CDATA[Europe and Spain]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animal Behavior, Animals, Artificial Intelligence, Birds, Conservation, data, Environment, Marine, Marine Animals, Research, Technology, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[What are carrion crows saying to each other? Answering that question has been Vittorio Baglione and Daniela Canestrari’s mission for decades. Carrion crows (Corvus corone) are especially interesting because they engage in cooperative breeding, where entire families, not just the mother and father, are involved in raising chicks and protecting nests. That requires intricate and [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[What are carrion crows saying to each other? Answering that question has been Vittorio Baglione and Daniela Canestrari’s mission for decades. Carrion crows (Corvus corone) are especially interesting because they engage in cooperative breeding, where entire families, not just the mother and father, are involved in raising chicks and protecting nests. That requires intricate and nuanced communication between individuals. “They have a very complex society, and they do very complex things together,” Baglione, a professor at the University of León in Spain, told Mongabay in a video interview. “It’s really coordinated behavior and we have answered why they do it, but we want to know how they coordinate and exchange information.” The duo have deployed audio recorders and biologgers in northern Spain to decode crow calls and monitor corresponding behavioral patterns. But as the data piled up, they came across a massive hurdle. “Each microphone lasted for six to seven days,” Canestrari, also a professor at the same university, told Mongabay in a video interview. “We realized we actually have too much data to analyze.” Since 2024, the scientists have collaborated with the Earth Species Project (ESP). A team at the U.S.-based nonprofit has helped them develop artificial intelligence models to categorize crow calls and start building a data set of different call types. Scientists in Spain have collaborated with Earth Species Project to categorize a vast dataset of crow calls that they gathered over the years. Image courtesy of Vittorio Baglione and Daniela Canestrari. How different animals communicate with&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/05/from-caws-to-code-ai-helps-decrypt-animal-communication/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-319392</doi>				</item>
						<item>
					<title>New data platform aims to reduce conflicts between First Nations and businesses in Canada</title>
					<link>https://news.mongabay.com/2026/05/new-data-platform-aims-to-reduce-conflicts-between-first-nations-and-businesses-in-canada/</link>
					<comments>https://news.mongabay.com/2026/05/new-data-platform-aims-to-reduce-conflicts-between-first-nations-and-businesses-in-canada/#respond</comments>
					<pubDate>12 May 2026 22:28:03 +0000</pubDate>
											<dc:creator>
							<![CDATA[Olivia Ferrari]]>
						</dc:creator>
										<author>
						<![CDATA[Latoya Abulu]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/05/12182459/First-Nations-elders-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=319228</guid>

					
											<locations>
							<![CDATA[Canada and North America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Business, Conflict, Conservation, data, Environment, Environmental Law, Happy-upbeat Environmental, Indigenous Peoples, Indigenous Reserves, Indigenous Rights, Land Conflict, Land Rights, Technology, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[When Robert Jago’s brother-in-law, a local politician in Montreal, Canada, shared a photo on Facebook greeting Indigenous leaders, Jago said he immediately knew the leaders as frauds. “They were kind of a fake meetup band,” said Jago, whose podcast explores the phenomenon of groups pretending to be Indigenous. “People know so little, they get suckered [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[When Robert Jago’s brother-in-law, a local politician in Montreal, Canada, shared a photo on Facebook greeting Indigenous leaders, Jago said he immediately knew the leaders as frauds. “They were kind of a fake meetup band,” said Jago, whose podcast explores the phenomenon of groups pretending to be Indigenous. “People know so little, they get suckered in by fake bands.” Working in government relations for his own Kwantlen First Nation, Jago himself has encountered a fake band trying to convince local towns they were the only official First Nation in Kwantlen territory — even casting doubt on the authenticity of the Kwantlen themselves. “People in [the federal] government… didn’t know where to turn, or what information was authoritative,” Jago said. “They didn’t know [much] about First Nations.” He observed the same trend between businesses seeking to launch extractive projects ­— despite having consultants — and Indigenous communities. It’s one of the reasons why Jago founded KnowledgeKeepr, an Indigenous-led comprehensive data platform on every First Nation in Canada. The platform holds profiles on 638 First Nations across the country, including information on governance structure, chiefs’ contact information, legal records, financial statements, reserve and traditional land boundaries, and other public records. A goal of the platform, according to its creators, is to reduce conflicts between extractive industries and Indigenous peoples. In Canada, there are plans underway to expand extractive projects across the country — including with a series of critical mineral mining, clean energy and trade corridors in the Arctic region — which&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/05/new-data-platform-aims-to-reduce-conflicts-between-first-nations-and-businesses-in-canada/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-319228</doi>				</item>
						<item>
					<title>Despite restrictions, forest loss continued on Ituna land, home to isolated people</title>
					<link>https://news.mongabay.com/2026/05/despite-restrictions-forest-loss-continues-on-ituna-land-home-to-isolated-people/</link>
					<comments>https://news.mongabay.com/2026/05/despite-restrictions-forest-loss-continues-on-ituna-land-home-to-isolated-people/#respond</comments>
					<pubDate>05 May 2026 19:46:15 +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/20/2026/05/04162414/Ituna_Itata-2-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=318685</guid>

					
											<locations>
							<![CDATA[Brazil, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Cattle, Conservation, data, Deforestation, Drivers Of Deforestation, Environment, Environmental Law, Forests, Governance, Illegal Logging, Indigenous Peoples, Indigenous Rights, Land Rights, Livestock, Ranching, Remote Sensing, and Uncontacted Tribes]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Illegal invasions in the Ituna/Itatá Indigenous territory in Brazil’s Pará state, home to isolated Igarapé Ipiaçava Indigenous people, has continued since 2022, during one of the latest land use restriction orders meant to protect the territory, according to satellite analysis by Mongabay. Between 2022 and 2025, data from Global Forest Watch show the area lost [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Illegal invasions in the Ituna/Itatá Indigenous territory in Brazil’s Pará state, home to isolated Igarapé Ipiaçava Indigenous people, has continued since 2022, during one of the latest land use restriction orders meant to protect the territory, according to satellite analysis by Mongabay. Between 2022 and 2025, data from Global Forest Watch show the area lost 2,211 hectares (5,463 acres) of tree cover. But, in the last few years, forest loss has plummeted significantly in what was one of the most deforested Indigenous lands following operations by the country’s Indigenous affairs agency, Funai. Cleiton Gabriel, the coordinator of the Middle Xingu Ethno-Environmental Protection Front, a specialized Funai unit, told Mongabay via WhatsApp that the forest loss in Ituna/Itatá is caused by land-grabbers who clear the forest without authorization for cattle ranching and other agricultural activities. “The deforestation in the Ituna/Itatá region historically stems from the illegal occupation of the territory,” Gabriel explained. “This is driven by land grabbing, the establishment of agricultural activities, especially intensive livestock farming, and also smaller-scale laboratory operations, mainly cocoa processing.” The land use restriction order, which prohibits unauthorized individuals from entering Ituna/Itatá, has been in place since 2011 to protect the isolated people. The precautionary measure has been renewed six times, the most recent being in 2025. Global Forest Watch data show that Ituna/Itatá was the third-most deforested area in Brazil between 2011, the year of the first land restriction order, and 2021. It was the most deforested Indigenous land in 2019. This has affected Funai’s&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/05/despite-restrictions-forest-loss-continues-on-ituna-land-home-to-isolated-people/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-318685</doi>				</item>
						<item>
					<title>A 10-year whale shark satellite study helps create new protected area in Indonesia</title>
					<link>https://news.mongabay.com/2026/05/a-10-year-whale-shark-satellite-study-helps-create-new-protected-area-in-indonesia/</link>
					<comments>https://news.mongabay.com/2026/05/a-10-year-whale-shark-satellite-study-helps-create-new-protected-area-in-indonesia/#respond</comments>
					<pubDate>05 May 2026 14:56:57 +0000</pubDate>
											<dc:creator>
							<![CDATA[Claire Turrell]]>
						</dc:creator>
										<author>
						<![CDATA[Isabel Esterman]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/05/05093127/Konservasi-Indonesia_Whale-Shark_Photo-By-Abdi-Hasan-4-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=318672</guid>

					
											<locations>
							<![CDATA[Asia, Indian Ocean, Indonesia, and Southeast Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Biodiversity, Conservation, data, Endangered Species, Environment, Fish, Fishing, Marine, Marine Animals, Marine Conservation, Oceans, Remote Sensing, Research, Saltwater Fish, Sharks, Whale Sharks, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[“The whale sharks are a good omen for the fishers because they know when the whale sharks come, that means that lots of small fish or anchovies are around,” says Edy Setyawan, the lead conservation scientist of the Elasmobranch Institute Indonesia. It is the relationship between whale sharks (Rhincodon typus) and fishers in Indonesia that [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[“The whale sharks are a good omen for the fishers because they know when the whale sharks come, that means that lots of small fish or anchovies are around,” says Edy Setyawan, the lead conservation scientist of the Elasmobranch Institute Indonesia. It is the relationship between whale sharks (Rhincodon typus) and fishers in Indonesia that has enabled marine biologists from Konservasi International and Elasmobranch Institute Indonesia to satellite tag more than 70 whale sharks for a decade-long study that has revealed previously unknown migration routes, feeding grounds and a whale shark nursery. It is one of the biggest tracking data sets across the globe on whale sharks and is the first time such a detailed survey has been conducted in the Indo-Pacific. While 60% of the global population of whale sharks can be found in the Indo-Pacific, it can be difficult for researchers to study them because the species travel such long distances. But the researchers experienced a breakthrough when they when found out about the relationship between bagan fishers and whale sharks. A satellite-tagged whale shark. Whale sharks are filter feeders and the world&#8217;s largest fish, typically growing to about 12 meters (39 feet), but occasionally reaching 20 meters (66 feet) in length. Image by Abdi-Hasan. Bagan fishers work on floating wooden platforms from which they lower an oversized net into the water to catch fish. Working at night with lights, the fishers attract shoals of ikan bilis (anchovies) into their nets. The whale sharks, which follow the small&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/05/a-10-year-whale-shark-satellite-study-helps-create-new-protected-area-in-indonesia/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-318672</doi>				</item>
						<item>
					<title>Brazil bill aims to ban satellite tool used to slow Amazon deforestation</title>
					<link>https://news.mongabay.com/2026/04/brazil-bill-aims-to-ban-satellite-tool-used-to-slow-amazon-deforestation/</link>
					<comments>https://news.mongabay.com/2026/04/brazil-bill-aims-to-ban-satellite-tool-used-to-slow-amazon-deforestation/#respond</comments>
					<pubDate>30 Apr 2026 18:06:32 +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/20/2026/04/30115532/airbus_earthrise-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=318472</guid>

					
											<locations>
							<![CDATA[Amazon, Brazil, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[agribusiness, Conservation, Crime, data, Deforestation, Environment, Forests, Illegal Mining, Law, Rainforest Destruction, Rainforests, Regulations, Remote Sensing, and Satellite Imagery]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The agribusiness caucus is pushing restrictions on the technology that has helped halve deforestation since 2023.]]>
						</description>
																					<content:encoded>
							<![CDATA[​In May 2025, a delegation of angry politicians and agribusinessmen from the Brazilian state of Pará traveled to the national capital to protest against the actions of the federal environmental agency, IBAMA. Their frustration stemmed from embargoes imposed by IBAMA on 544 rural properties in the municipality of Altamira, one of the Amazon’s deforestation hotspots. In each case, satellite imagery had detected illegal forest clearing, prompting authorities to block the areas from further production activities. ​“Everyone came here to present their concerns and ask for solutions regarding productive areas in the state of Pará,” Pará Governor Helder Barbalho said at the time. ​Almost a year later, their resentment has been distilled into a new bill proposing a ban on the so-called remote embargoes. Today, IBAMA uses satellite imagery to identify where illegal deforestation is occurring. Once they detect a recently deforested area, environmental agents verify whether there’s an environmental license authorizing that clearance — in the Amazon, around 90% of forest felling is illegal. If there’s no authorization, the agency issues an embargo as a preventive measure from behind its computers. The system is one of the tools that helped the administration of President Luiz Inácio Lula da Silva halve deforestation numbers in the Amazon since taking office at the start of 2023. “Today we have a wealth of ultra-high-resolution satellite imagery, and we can cross-reference information from various databases,” Wallace Lopes, a representative of the federal environmental agents association, ASCEMA, told Mongabay. ​Jair Schmitt, director of environmental protection and&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/brazil-bill-aims-to-ban-satellite-tool-used-to-slow-amazon-deforestation/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-318472</doi>				</item>
						<item>
					<title>A “good year” for forests changes less than it seems</title>
					<link>https://news.mongabay.com/2026/04/a-good-year-for-forests-changes-less-than-it-seems/</link>
					<comments>https://news.mongabay.com/2026/04/a-good-year-for-forests-changes-less-than-it-seems/#respond</comments>
					<pubDate>29 Apr 2026 17:55:31 +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/20/2026/04/29175125/drc_2606697x-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=318421</guid>

					
											<locations>
							<![CDATA[Africa, Amazon, Asia, Congo Basin, Global, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Analysis, Climate Change, Conservation, data, Deforestation, Drivers Of Deforestation, El Nino, Environment, Fires, Forests, Green, Impact Of Climate Change, Rainforests, Remote Sensing, Satellite Imagery, Threats To Rainforests, and Tropical Forests]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The rate of tropical primary forest loss fell sharply in 2025, reversing the record highs of the year before. On paper, it looks like progress. In reality, the dip is likely only a temporary reprieve. The decline followed an exceptional year for wildfires. In 2024, drought helped drive some of the largest fire-related losses on [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The rate of tropical primary forest loss fell sharply in 2025, reversing the record highs of the year before. On paper, it looks like progress. In reality, the dip is likely only a temporary reprieve. The decline followed an exceptional year for wildfires. In 2024, drought helped drive some of the largest fire-related losses on record. In 2025, those climatic pressures eased, and the area lost to fire dropped with them. But the root causes—commodity-driven agricultural expansion, patchy enforcement, and growing climate stress—remain stubbornly in place. A single year’s improvement does not shift that fundamental footing. Tropical primary forest loss by year since 2002 What stands out is the pattern of loss. Forest loss is becoming less predictable, moving in sharper swings tied to weather as much as policy. Fire now accounts for a large share of global tree cover loss, and its behavior tracks temperature and rainfall extremes. When conditions align, losses surge. When they do not, they fall back. But the needle barely moves on the long-term trend: forest loss remains persistently high. Fire does not simply clear land; it hollows out forests in ways that make further loss more likely. Repeated burns thin canopies and dry the forest floor, eroding the processes that allow forests to recover. In parts of the Amazon, clearing has given way to a self-reinforcing cycle of decay, where degradation serves as a precursor to total forest loss. Climate is an increasingly active factor. Forecasts point to a likely El Niño in 2026,&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/a-good-year-for-forests-changes-less-than-it-seems/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-318421</doi>				</item>
						<item>
					<title>AI is a double-edged sword for Indigenous stewardship, say U.N. experts</title>
					<link>https://news.mongabay.com/2026/04/ai-is-a-double-edged-sword-for-indigenous-stewardship-say-u-n-experts/</link>
					<comments>https://news.mongabay.com/2026/04/ai-is-a-double-edged-sword-for-indigenous-stewardship-say-u-n-experts/#respond</comments>
					<pubDate>24 Apr 2026 15:05:57 +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/20/2026/04/24150037/Capture-decran-le-2026-04-24-a-11.00.09-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=318127</guid>

											<reporting-project>
							<![CDATA[Indigenous Peoples and Conservation]]>
						</reporting-project>
					
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, data, Indigenous Peoples, Indigenous Rights, Technology, Water, Water Scarcity, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[This story is republished through the Indigenous News Alliance. At the 2026 United Nations Permanent Forum on Indigenous Issues, or UNPFII, in New York, experts warned of the opportunities and dangers of using artificial intelligence (AI) in conservation and climate adaptation efforts. AI can support the protection and management of Indigenous peoples’ lands and resources, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[This story is republished through the Indigenous News Alliance. At the 2026 United Nations Permanent Forum on Indigenous Issues, or UNPFII, in New York, experts warned of the opportunities and dangers of using artificial intelligence (AI) in conservation and climate adaptation efforts. AI can support the protection and management of Indigenous peoples’ lands and resources, such as by monitoring deforestation, fires and illegal extraction, but it can also contribute to greater environmental harm and infringe on Indigenous rights. A study published by Hindou Oumarou Ibrahim, former chair of the permanent forum from the Mbororo people of Chad, highlighted some of the possibilities and challenges AI presents for environmental protection, as well as the impacts of this technology on Indigenous territories. This includes land-grabbing, water overexploitation and land degradation due to its high energy, water and critical minerals needs. “For generations, Indigenous Peoples have protected the world’s most intact ecosystems without satellites, without algorithms or technologies,” Ibrahim told Mongabay over email. “AI can become a powerful ally to that stewardship, if it is used on our terms in a culturally appropriated way.” AI and conservation Ibrahim explained that AI can help Indigenous communities monitor biodiversity, detect deforestation, illegal mining, wildfires, or water contamination through the use of satellite imagery and sensors. “When combined with Indigenous Peoples’ knowledge, AI can help predict climate impacts, track wildlife movements, and strengthen land-use planning while helping to plan faster resilience strategies,” she added. Setting up a camera trap in the Democratic Republic of Congo. As&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/ai-is-a-double-edged-sword-for-indigenous-stewardship-say-u-n-experts/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-318127</doi>				</item>
						<item>
					<title>AI tool tracks spread of illegal gold mining in Amazon protected areas</title>
					<link>https://news.mongabay.com/2026/04/ai-tool-tracks-spread-of-illegal-gold-mining-in-amazon-protected-areas/</link>
					<comments>https://news.mongabay.com/2026/04/ai-tool-tracks-spread-of-illegal-gold-mining-in-amazon-protected-areas/#respond</comments>
					<pubDate>24 Apr 2026 09:56:11 +0000</pubDate>
											<dc:creator>
							<![CDATA[Constance Malleret]]>
						</dc:creator>
										<author>
						<![CDATA[Alexandra Popescu]]>
					</author>
							<category><![CDATA[Amazon]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2021/06/11143403/foto_58-edit-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=317945</guid>

					
											<locations>
							<![CDATA[Amazon, Bolivia, Brazil, Colombia, Ecuador, Guyana, Latin America, Peru, South America, Suriname, and Venezuela]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Biodiversity, Deforestation, Drivers Of Deforestation, Forest Destruction, Forest Loss, Gold Mining, Illegal Mining, Indigenous Peoples, Indigenous Rights, Land Rights, Mining, Protected Areas, and Satellite Imagery]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[In July 2025, the Indigenous Shuar people celebrated the end of a decade-long struggle when they received official titles for three communities — the Shuar Tunants, Kampan and Tsuntsuim –- within the Kutukú Shaimi Protected Forest, in the south of the Ecuadorean Amazon. But in one of those communities, satellite imagery shows that between August [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[In July 2025, the Indigenous Shuar people celebrated the end of a decade-long struggle when they received official titles for three communities — the Shuar Tunants, Kampan and Tsuntsuim –- within the Kutukú Shaimi Protected Forest, in the south of the Ecuadorean Amazon. But in one of those communities, satellite imagery shows that between August and December 2025, a gaping hole appeared in the forest around a riverbend — a mining scar. Despite the Tunants territory’s newly formalized status, deforestation due to gold mining nearly tripled, reaching 2 hectares (5 acres) in size in the last three months of 2025, according to Amazon Mining Watch Panorama, a new quarterly report. The report shows that deforestation due to illegal gold mining continues to grow across the Amazon, threatening protected parts of the rainforest. In total, 6,000 hectares (more than 14,800 acres) — about seven times the size of Central Park in New York City — of new mining scars appeared across protected areas and Indigenous territories over the last three months of 2025. This mining is presumed to be illegal, as most Amazonian countries have legislation prohibiting mining in Indigenous territories and protected areas, with experts warning that greater law enforcement is needed. Most of the deforestation caused by mining during that period took place in Brazil, with roughly 2,000 hectares (about 5,000 acres) of forest being cleared. This was followed by Peru with 1,700 hectares (4,200 acres), and Guyana with 900 hectares (about 2,200 acres). New mining scars were also&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/ai-tool-tracks-spread-of-illegal-gold-mining-in-amazon-protected-areas/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-317945</doi>				</item>
						<item>
					<title>Conservation collects more data than ever. What is it for?</title>
					<link>https://news.mongabay.com/2026/04/conservation-collects-more-data-than-ever-what-is-it-for/</link>
					<comments>https://news.mongabay.com/2026/04/conservation-collects-more-data-than-ever-what-is-it-for/#respond</comments>
					<pubDate>20 Apr 2026 16:35:44 +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/20/2026/04/18141901/cr_20260408_173738634-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=317734</guid>

											<reporting-project>
							<![CDATA[Founder's briefs]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Conservation, data, Environment, and Monitoring]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[&#160; Before launching a monitoring program, conservationists are often asked how data will be collected, which indicators will be used, and how results will be analyzed. Less often, they are asked a simpler question: what is the monitoring for? A recent paper in Proceedings of the Royal Society B, led by Kate J. Helmstedt, argues [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[&nbsp; Before launching a monitoring program, conservationists are often asked how data will be collected, which indicators will be used, and how results will be analyzed. Less often, they are asked a simpler question: what is the monitoring for? A recent paper in Proceedings of the Royal Society B, led by Kate J. Helmstedt, argues that this question should come first. Monitoring, the authors suggest, delivers impact when it is tied to a clear explanation of how the information collected will influence decisions, policy, or outcomes for biodiversity. This may sound self-evident, yet conservation has long treated data collection as a default activity. Over the past decade, that tendency has been reinforced by rapid advances in technology. Satellites track forest loss in near real time. Camera traps document passing animals. Acoustic sensors record entire ecosystems. Environmental DNA can detect species from traces in water or soil. The result is a steady expansion in what can be measured, often accompanied by an assumption that more information will improve outcomes. Topher White of Rainforest Connection installing a bioacoustic device in the forest canopy. Image by Ben Von Wong. Work on conservation effectiveness has complicated that assumption. Monitoring trends—like forest cover, species abundance, compliance rates, and habitat condition—can describe what is happening without explaining why. Establishing impact requires a counterfactual: an estimate of what would have happened without the intervention. Even where methods improve, the link to outcomes is not guaranteed. Time and funding directed toward data collection can reduce what is available&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/conservation-collects-more-data-than-ever-what-is-it-for/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-317734</doi>				</item>
						<item>
					<title>Americas flyways atlas maps the routes of 89 at-risk migratory bird species</title>
					<link>https://news.mongabay.com/2026/04/americas-flyways-atlas-maps-the-routes-of-89-at-risk-migratory-bird-species/</link>
					<comments>https://news.mongabay.com/2026/04/americas-flyways-atlas-maps-the-routes-of-89-at-risk-migratory-bird-species/#respond</comments>
					<pubDate>16 Apr 2026 16:51:52 +0000</pubDate>
											<dc:creator>
							<![CDATA[Adam Litchkofski]]>
						</dc:creator>
										<author>
						<![CDATA[Glenn Scherer]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/20/2026/04/16153833/4-cerulean-warbler-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=317648</guid>

					
											<locations>
							<![CDATA[Central America, Global, North America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Birds, Cities, Conservation, Conservation Technology, data, Environment, Environmental Policy, Global Environmental Crisis, Habitat Loss, Mapping, Migration, Research, Saving Species From Extinction, Solutions, Wildlife, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Announced at the end of March, the “Atlas for the Americas Flyways” website tracks high concentrations of migratory bird species at risk of major population declines along their routes throughout the Americas. This new United Nations-backed tool identifies heavily trafficked breeding grounds, migratory stopover locations and wintering areas, with the aim of providing policymakers and [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Announced at the end of March, the “Atlas for the Americas Flyways” website tracks high concentrations of migratory bird species at risk of major population declines along their routes throughout the Americas. This new United Nations-backed tool identifies heavily trafficked breeding grounds, migratory stopover locations and wintering areas, with the aim of providing policymakers and conservationists with actionable, location-based guidance on where and how to protect and conserve these species. It closely tracks 89 at-risk migratory bird species out of the 622 that traverse North, Central and South America. Available for everyone to explore, the atlas presents a useful, fascinating and fun opportunity to explore the annual journeys of these birds. The atlas was developed by researchers at the Cornell Lab of Ornithology and the Convention on the Conservation of Migratory Species of Wild Animals (CMS). Its mapping spans the 56 countries that make up the Americas, explains CMS executive secretary Amy Fraenkel, and focuses on the Atlantic, Pacific and mid-continent flyways. The buff-breasted sandpiper, highlighted in the new atlas, is a migratory bird species with an elevated risk of extinction due to rapid population declines driven by habitat loss in its South American wintering grounds and at migratory stopover sites. Image courtesy of Luke Seitz via Cornell Lab of Ornithology. The mapping tool was created using 20 years of data gathered on the Cornell Lab’s eBird website, an online database and citizen-science project that tracks bird distribution and abundance. Compiling the atlas wouldn’t have been possible, say researchers, without&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/americas-flyways-atlas-maps-the-routes-of-89-at-risk-migratory-bird-species/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-317648</doi>				</item>
						<item>
					<title>Listening to forests reveals signs of recovery beyond tree cover</title>
					<link>https://news.mongabay.com/2026/04/listening-to-forests-reveals-signs-of-recovery-beyond-tree-cover/</link>
					<comments>https://news.mongabay.com/2026/04/listening-to-forests-reveals-signs-of-recovery-beyond-tree-cover/#respond</comments>
					<pubDate>16 Apr 2026 14:12:52 +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/20/2026/04/16140215/Banner-Image-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=317628</guid>

					
											<locations>
							<![CDATA[Central America, Costa Rica, and North America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Bioacoustics, Biodiversity, Conservation, Conservation Technology, data, Ecosystem Services, Ecosystems, Environment, Forests, Payments For Ecosystem Services, Research, Technology, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Can listening to forests help us understand if the life inside them is thriving? Apparently, yes. Giacomo Delgado likens it to a doctor examining heart health. “A doctor has listened to many people&#8217;s hearts, and knows what healthy hearts sound like,” Delgado, a doctoral researcher in the Department of Environmental Systems Science at ETH Zürich, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Can listening to forests help us understand if the life inside them is thriving? Apparently, yes. Giacomo Delgado likens it to a doctor examining heart health. “A doctor has listened to many people&#8217;s hearts, and knows what healthy hearts sound like,” Delgado, a doctoral researcher in the Department of Environmental Systems Science at ETH Zürich, told Mongabay in a video interview. “She then starts to compare your heart to other heart sounds to see if you have a healthy heart.” A team of researchers, led by Delgado, has used the same logic to assess the success of a forest protection and restoration mechanism in Costa Rica. Using more than 16,000 hours of audio recordings of the forest, they found that biodiversity was restored in naturally regenerated forests. These forests were also found to sound similar to forests that have been protected for years. In 1950, half of Costa Rica was forested; by 1995, forest cover had been reduced to 25%, driven in part by cattle ranching and agriculture expansion in the 1970s and 1980s. Since then, however, Costa Rica became something of a pioneer in the payment for ecosystem services (PES) system, a mechanism where landowners and local communities are financially compensated for protecting and preserving forests. The country’s PES initiative, launched in 1997, is one of the first national-level programs of its kind in the world, and to date has covered more than 1.3 million hectares (3.2 million acres). “Costa Rica’s PES program is notable not only for its&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/listening-to-forests-reveals-signs-of-recovery-beyond-tree-cover/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-317628</doi>				</item>
						<item>
					<title>10 forces that could reshape the future of the world’s forests</title>
					<link>https://news.mongabay.com/2026/04/10-forces-that-could-reshape-the-future-of-the-worlds-forests/</link>
					<comments>https://news.mongabay.com/2026/04/10-forces-that-could-reshape-the-future-of-the-worlds-forests/#respond</comments>
					<pubDate>16 Apr 2026 00:59:21 +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/20/2025/12/18201846/brunei_251114145219_0263z-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=316981</guid>

											<reporting-project>
							<![CDATA[Founder's briefs]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Amazon, Global, Latin America, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Artificial Intelligence, Biodiversity, Carbon Market, climate finance, Conservation, Drivers Of Deforestation, Environment, extractives, Forest Carbon, Forestry, Governance, Illegal Logging, International Trade, Mining, Monitoring, Rainforests, Remote Sensing, Saving Rainforests, Solutions, Technology, Threats To Rainforests, Tropical Forests, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The forces shaping forests in the coming decade extend beyond any single driver. Shifts in politics, finance and technology are unfolding at once, often in ways that reinforce each other. The result is greater uncertainty for ecosystems and for those who depend on them. A new horizon scan, published in Forest Policy and Economics and [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The forces shaping forests in the coming decade extend beyond any single driver. Shifts in politics, finance and technology are unfolding at once, often in ways that reinforce each other. The result is greater uncertainty for ecosystems and for those who depend on them. A new horizon scan, published in Forest Policy and Economics and led by Matilda Kabutey-Ongor, sets out to map these changes. The paper draws on structured consultation with researchers and practitioners and identifies ten emerging issues likely to matter between now and the early 2030s. They include the retreat of traditional aid, the spread of artificial intelligence, and a renewed push for mineral extraction. What stands out is how quickly these developments are unfolding. Institutions are not keeping up. Some of the most immediate changes are financial. For decades, conservation and forest governance have relied on public funding from wealthier countries. That support is weakening. Cuts to development assistance and research budgets threaten not only field projects but also the monitoring systems that underpin them. Philanthropy may offset part of the loss, though likely at a smaller scale and with less predictability. New forms of finance are emerging alongside this. Forest carbon markets continue to evolve, driven by regulation and corporate commitments, even as concerns remain over how credits are calculated and who benefits. At the same time, funds intended to channel money directly to Indigenous peoples and local communities are beginning to take shape. In some cases, they bypass governments and traditional intermediaries. Emerging issues&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/10-forces-that-could-reshape-the-future-of-the-worlds-forests/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-316981</doi>				</item>
						<item>
					<title>Tracking environmental crime in the Amazon: A conversation with Alexa Vélez</title>
					<link>https://news.mongabay.com/2026/04/tracking-environmental-crime-in-the-amazon-a-conversation-with-alexa-velez/</link>
					<comments>https://news.mongabay.com/2026/04/tracking-environmental-crime-in-the-amazon-a-conversation-with-alexa-velez/#respond</comments>
					<pubDate>09 Apr 2026 01:37:36 +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/20/2026/04/06223007/amazon_241208_123215013-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=315312</guid>

											<reporting-project>
							<![CDATA[Conversations with Mongabay leaders]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Latin America, Peru, and South America]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Crime, Environment, Interviews, Interviews With Environmental Journalists, Journalism, and Satellite Imagery]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Environmental crimes rarely occur in isolation. A road cut into a forest may appear first as a faint line in satellite imagery. Months later it becomes a corridor for timber, wildlife, and sometimes cocaine. The early stages often unfold far from capitals and rarely attract immediate scrutiny. When the evidence does emerge, it tends to [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Environmental crimes rarely occur in isolation. A road cut into a forest may appear first as a faint line in satellite imagery. Months later it becomes a corridor for timber, wildlife, and sometimes cocaine. The early stages often unfold far from capitals and rarely attract immediate scrutiny. When the evidence does emerge, it tends to arrive through a patchwork of sources: scientists sharing coordinates, local communities describing unfamiliar aircraft, or reporters willing to spend months tracing how a clearing became a network. Environmental journalism in Latin America has grown around precisely these kinds of fragments. The region contains some of the world’s most biodiverse landscapes and some of its most persistent environmental activities. Illegal mining, wildlife trafficking, and forest clearing often intersect with organized crime and political interests. Yet sustained reporting on these issues has historically been limited. Many large news organizations treat the environment as an occasional beat rather than a structural concern. Investigative work requires time, technical expertise, and sometimes the willingness to operate in difficult or dangerous conditions. In recent years the practice has begun to change. Satellite imagery, open databases, and new mapping tools allow reporters to track environmental change with greater precision than was possible even a decade ago. A clearing detected in a remote basin can be compared against historical imagery, connected to land concessions, and matched with field reporting. What once depended largely on eyewitness accounts now involves a blend of remote sensing, traditional reporting, and collaboration across borders. Those collaborations have become&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/tracking-environmental-crime-in-the-amazon-a-conversation-with-alexa-velez/" data-wpel-link="internal">Mongabay</a>]]>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-315312</doi>				</item>
						<item>
					<title>Indonesia’s deforestation surges 66% in 2025, reversing years of decline</title>
					<link>https://news.mongabay.com/2026/04/indonesias-deforestation-surges-66-in-2025-reversing-years-of-decline/</link>
					<comments>https://news.mongabay.com/2026/04/indonesias-deforestation-surges-66-in-2025-reversing-years-of-decline/#respond</comments>
					<pubDate>03 Apr 2026 03:50:22 +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/20/2025/10/10103728/Nickel-Mining-on-Manuran-Island-Auriga-768x512.png" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=316903</guid>

					
											<locations>
							<![CDATA[Asia, Indonesia, Papua, and Southeast Asia]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Biodiversity, Climate Change, Corporate Environmental Transgressors, Corporations, Critical Minerals, data, Deforestation, Drivers Of Deforestation, Endangered Species, Energy, Food, food security, Forest Loss, Palm Oil, Protected Areas, Pulp And Paper, Rainforests, Remote Sensing, and Tropical Deforestation]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[JAKARTA — Indonesia’s deforestation surged in 2025, rising 66% from the previous year, marking a sharp reversal after several years of decline, according to new data from the NGO Auriga Nusantara. Based on satellite analysis, Auriga estimates that 433,751 hectares (1.1 million acres) of forest, an area more than twice the size of London, were [&#8230;]]]>
						</description>
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							<![CDATA[JAKARTA — Indonesia’s deforestation surged in 2025, rising 66% from the previous year, marking a sharp reversal after several years of decline, according to new data from the NGO Auriga Nusantara. Based on satellite analysis, Auriga estimates that 433,751 hectares (1.1 million acres) of forest, an area more than twice the size of London, were lost in 2025, the highest level in eight years. Forest loss had previously fallen to a historic low in 2021, following five consecutive years of decline since 2017, driven in part by a series of forest protection policies under former President Joko Widodo. But since 2022, the trend has reversed, with deforestation rising again before spiking in 2025 across all of Indonesia’s major islands. “The surge in deforestation in 2025 is truly distressing, taking Indonesia back to a time when it was at its highest,” said Auriga executive director Timer Manurung. The trend stands in contrast to developments in the Amazon, where deforestation has declined for three consecutive years following renewed enforcement and federal efforts under Brazil President Luiz Inácio Lula da Silva. In 2025, deforestation in the biome fell 11.1% to 579,600 hectares (1.4 million acres), the lowest level in more than a decade. “Brazil’s deforestation, concentrated in the Amazon, is declining. Meanwhile, Indonesia’s is increasing. So it’s possible Indonesia could become the world’s top deforester among tropical countries in 2025,” Timer said. Auriga’s findings are broadly consistent with early signals from official data. While the government has yet to release full-year figures for&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/04/indonesias-deforestation-surges-66-in-2025-reversing-years-of-decline/" data-wpel-link="internal">Mongabay</a>]]>
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										<doi>https://doi.org/10.66709/news-316903</doi>				</item>
						<item>
					<title>Plenty of biodiversity data, but too few conservation answers</title>
					<link>https://news.mongabay.com/2026/03/plenty-of-biodiversity-data-but-too-few-conservation-answers/</link>
					<comments>https://news.mongabay.com/2026/03/plenty-of-biodiversity-data-but-too-few-conservation-answers/#respond</comments>
					<pubDate>25 Mar 2026 13:52:13 +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/20/2026/03/25112058/car_6969z-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=316240</guid>

					
					
											<topic-tags>
							<![CDATA[Camera Trapping, Conservation, Conservation Technology, DNA, Environment, Monitoring, Remote Sensing, Satellite Imagery, Technology, Wildlife, and Wildtech]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[&#160; For decades, conservation has depended on a deceptively simple act: counting. Scientists tally birds along migration routes, measure forest cover from satellites, or track wildlife populations through camera traps. These numbers underpin the decisions that shape environmental policy, from protected-area planning to international biodiversity targets. Yet the system that produces them is changing quickly, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[&nbsp; For decades, conservation has depended on a deceptively simple act: counting. Scientists tally birds along migration routes, measure forest cover from satellites, or track wildlife populations through camera traps. These numbers underpin the decisions that shape environmental policy, from protected-area planning to international biodiversity targets. Yet the system that produces them is changing quickly, and not always coherently. A recent PNAS perspective led by William Sutherland and dozens of collaborators argues that biodiversity measurement is entering a pivotal moment. The tools used to monitor nature have expanded dramatically, while demand for reliable data has grown across governments, businesses and international agreements. The authors argue that making use of this expanding stream of biodiversity data will require changes not only in technology but also in how evidence is organized, shared, and interpreted. Nine changes needed to deliver a radical transformation in biodiversity measurement. Adapted from Sutherland et al (2026) The scale of data collection alone illustrates the shift. Global biodiversity databases now incorporate millions of observations from citizen scientists, museum collections, environmental DNA sampling and automated sensors. The Global Biodiversity Information Facility (GBIF), for example, adds hundreds of millions of species records each year, drawn from sources as varied as birdwatching apps and environmental impact assessments. In principle, this abundance opens new possibilities. Environmental DNA allows researchers to detect species from traces left in soil or water. Acoustic sensors can record entire soundscapes, with machine-learning systems identifying species calls automatically. Remote sensing tracks deforestation and habitat change in near real&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/03/plenty-of-biodiversity-data-but-too-few-conservation-answers/" data-wpel-link="internal">Mongabay</a>]]>
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					<slash:comments>0</slash:comments>
										<doi>https://doi.org/10.66709/news-316240</doi>				</item>
						<item>
					<title>The ocean’s enforcement gap</title>
					<link>https://news.mongabay.com/2026/03/the-oceans-enforcement-gap/</link>
					<comments>https://news.mongabay.com/2026/03/the-oceans-enforcement-gap/#respond</comments>
					<pubDate>23 Mar 2026 22:33:29 +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/20/2026/03/09225852/greenpeace-GP1SXQFJ-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://news.mongabay.com/?p=315393</guid>

											<reporting-project>
							<![CDATA[Founder's briefs]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Global, Indonesia, Pacific Islands, Pacific Ocean, and Palau]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Analysis, data, Environment, Fisheries, Fishing, Governance, Infrastructure, Marine, Marine Protected Areas, Monitoring, Oceans, Ports, Protected Areas, Remote Sensing, Satellite Imagery, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[On paper, the sea is increasingly protected. Governments have designated vast marine protected areas (MPAs) and pledged to conserve 30% of the ocean by 2030. Maps shaded in reassuring blues now circulate widely. Yet the reality offshore often looks much the same as before. Industrial vessels still trawl through restricted waters, longliners set gear near [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[On paper, the sea is increasingly protected. Governments have designated vast marine protected areas (MPAs) and pledged to conserve 30% of the ocean by 2030. Maps shaded in reassuring blues now circulate widely. Yet the reality offshore often looks much the same as before. Industrial vessels still trawl through restricted waters, longliners set gear near vulnerable habitats, and sanctions for violations are sporadic. The problem is not a shortage of rules. It is the unevenness of enforcement. Creating an MPA is politically attractive. It signals ambition at relatively modest cost, especially when the protected waters lie far offshore. Policing those areas is harder. Patrol vessels are expensive to operate, legal cases can drag on, and fisheries agencies are rarely flush with funds. In many countries, officials face a dilemma: announce new protections and earn international praise, or spend scarce resources enforcing existing ones and risk confrontation with powerful domestic interests. Frozen tuna are transferred from the Hung Hwa 202, a Taiwanese longliner, to the Hsiang Hao, a Panama-flagged reefer operating out of Tokyo, Japan, in the middle of the Atlantic Ocean. The Greenpeace ship Arctic Sunrise and crew are investigating distant water fishing fleet practices in the Mid-Atlantic during September and October 2019. Photo credit: © Tommy Trenchard Evidence presented in a widely-cited 2014 Nature paper suggests that compliance depends less on the size of protected areas than on whether rules are visible and credible. Studies comparing MPAs across regions consistently find that ecological benefits correlate with enforcement capacity. A&hellip;This article was originally published on <a href="https://news.mongabay.com/2026/03/the-oceans-enforcement-gap/" data-wpel-link="internal">Mongabay</a>]]>
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										<doi>https://doi.org/10.66709/news-315393</doi>				</item>
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