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		<title>Mongabay India</title>
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		<link>https://india.mongabay.com/by/john-cannon/</link>
		<description>India&#039;s environmental science and conservation news</description>
		<lastBuildDate>Fri, 07 Aug 2026 11:16:05 +0000</lastBuildDate>
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					<title>Supreme court upholds centre&#8217;s power to notify post-facto clearance</title>
					<link>https://india.mongabay.com/2026/08/supreme-court-upholds-centres-power-to-notify-post-facto-clearance/</link>
					<comments>https://india.mongabay.com/2026/08/supreme-court-upholds-centres-power-to-notify-post-facto-clearance/?noamp=mobile#respond</comments>
					<pubDate>07 Aug 2026 16:28:40 +0000</pubDate>
											<dc:creator>
							<![CDATA[Kundan Pandey]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[construction]]></category>
		<category><![CDATA[development]]></category>
		<category><![CDATA[environment clearance]]></category>
		<category><![CDATA[Environmental Clearance]]></category>
		<category><![CDATA[forest clearance]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/07135307/AP22207426732440-768x512.jpg" type="image/jpeg" />
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											<reporting-project>
							<![CDATA[Environomy]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Cities and Towns, Conservation, Deforestation, Environment, Environmental Crime, Environmental Law, Environmental Politics, Forests, Industry, Land Rights, Law Enforcement, National Parks, Natural Resources, Protected Areas, Sustainability, and Wildlife Protection Act]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The Supreme Court has struck down the centre&#8217;s 2021 Office Memorandum (OM) that created a mechanism for granting post facto environmental clearances to projects that violated prior environmental clearance norms. At the same time, it stated that the central government has the power to frame statutory amnesty schemes for specified categories of such violations under [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The Supreme Court has struck down the centre&#8217;s 2021 Office Memorandum (OM) that created a mechanism for granting post facto environmental clearances to projects that violated prior environmental clearance norms. At the same time, it stated that the central government has the power to frame statutory amnesty schemes for specified categories of such violations under the Environment (Protection) Act, 1986. On July 29, the Supreme Court decided three connected writ petitions questioning the centre&#8217;s two amnesty schemes introduced in 2017 and 2021 to regularise projects that had started construction or operations without obtaining prior environmental clearance. The first scheme came through a notification issued in 2017, which gave projects that had violated prior environmental clearance requirements a one-time six-month window to seek clearance. In 2021, the Ministry of Environment, Forest and Climate Change issued an OM prescribing a Standard Operating Procedure (SOP) for granting post facto environmental clearances to such projects. Delivering the judgment, the three-judge Bench comprising Chief Justice of India Surya Kant, Justices Joymalya Bagchi and Vipul M. Pancholi said, “…the OM does not satisfy the test of proportionality and reasonableness and is violative of Articles 14 and 21 of the Constitution”. The Court quashed the OM, although the ruling will operate only prospectively, the judgement said. However, the bench also stated that the central government could exercise its powers under Section 3 of the Environment (Protection) Act, 1986, to issue statutory notifications framing amnesty schemes for specified categories of non-compliant projects. Environmental experts said this leaves open&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/supreme-court-upholds-centres-power-to-notify-post-facto-clearance/" data-wpel-link="internal">Mongabay</a>]]>
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					<title>Heatwaves and lightning notified as national disasters, government says</title>
					<link>https://india.mongabay.com/short-article/2026/08/heatwaves-and-lightning-notified-as-national-disasters-government-says/</link>
					<comments>https://india.mongabay.com/short-article/2026/08/heatwaves-and-lightning-notified-as-national-disasters-government-says/?noamp=mobile#respond</comments>
					<pubDate>07 Aug 2026 16:16:18 +0000</pubDate>
											<dc:creator>
							<![CDATA[Simrin Sirur]]>
						</dc:creator>
										<author>
						<![CDATA[Kundan Pandey]]>
					</author>
							<category><![CDATA[Climate disaster]]></category>
		<category><![CDATA[disaster]]></category>
		<category><![CDATA[Disaster management]]></category>
		<category><![CDATA[extreme heat]]></category>
		<category><![CDATA[heat]]></category>
		<category><![CDATA[heat stroke]]></category>
		<category><![CDATA[Heat wave]]></category>
		<category><![CDATA[heatwave]]></category>
		<category><![CDATA[natural disaster]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/07152230/AP26196538423127-768x512.jpg" type="image/jpeg" />
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											<reporting-project>
							<![CDATA[Climate Connections]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Cities and Towns, Climate Change, Climate Change Adaptation, Environment, Extreme Weather Events, Floods, Health impacts, Human Rights, and Impacts of Climate Change]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Heatwaves and lightning have officially been recognised as natural calamities eligible for relief under the State and National Disaster Response Funds, Union Minister of State in the Ministry of Home Affairs, Nityanand Rai, told Parliament on August 4. The decision to notify heatwaves and lightning as disasters follows the recommendations of the 16th Finance Commission, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Heatwaves and lightning have officially been recognised as natural calamities eligible for relief under the State and National Disaster Response Funds, Union Minister of State in the Ministry of Home Affairs, Nityanand Rai, told Parliament on August 4. The decision to notify heatwaves and lightning as disasters follows the recommendations of the 16th Finance Commission, which had recommended their inclusion “considering the increasing frequency and intensity of extreme weather events arising from climate change,” Rai said. Rai also revealed that the total number of heatstroke cases since March 1, 2026 had reached 4,853, based on data from 51,000 National Heat-Related Illness and Death Surveillance reporting units. Telangana recorded the most number of cases (915), followed by West Bengal (733), Chhattisgarh (660), and Andhra Pradesh (540). Only 20 deaths were recorded over the same period, with the highest number – 11 deaths – reported from Maharashtra. The SDRF and NDRF funds can be used for response, relief, recovery, and reconstruction purposes linked to the notified natural disasters. Long-term preparedness and capacity building activities, however, will have to be paid for from state and national disaster mitigation funds. Experts have long called for the inclusion of heatwaves in the list of notified disasters so relief is systematically provided to vulnerable and exposed populations. Before the nationwide notification, only a handful of states had notified heatwaves as disasters within their own jurisdictions, such as Haryana, Odisha, Kerala, Telangana, and Tamil Nadu. Lightning, on the other hand, is responsible for the largest number of&hellip;This article was originally published on <a href="https://india.mongabay.com/short-article/2026/08/heatwaves-and-lightning-notified-as-national-disasters-government-says/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<title>New clues into how animals evolved an internal compass to navigate Earth</title>
					<link>https://india.mongabay.com/2026/08/new-clues-into-how-animals-evolved-an-internal-compass-to-navigate-earth/</link>
					<comments>https://india.mongabay.com/2026/08/new-clues-into-how-animals-evolved-an-internal-compass-to-navigate-earth/?noamp=mobile#respond</comments>
					<pubDate>07 Aug 2026 14:44:33 +0000</pubDate>
											<dc:creator>
							<![CDATA[Nupur Fangaria]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[animal]]></category>
		<category><![CDATA[bacteria]]></category>
		<category><![CDATA[migration]]></category>
		<category><![CDATA[migratory birds]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/07121707/A_Pair_of_Bar-Headed_Geese_in_Flight_50900564713-scaled-e1786085253791-768x512.jpg" type="image/jpeg" />
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											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Global]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animal Behaviour, Animals, Biodiversity, Birds, Ecology, Environment, Evolution, Migration, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Magnetoreception is like an internal compass that animals use in their journeys, using the Earth’s magnetic field. It helps migratory birds navigate across the central Asian flyway, for example, or turtles, fish and other animals travel across vast distances. Recent research raises new questions about the evolutionary origins of magnetoreception and suggests that it may [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Magnetoreception is like an internal compass that animals use in their journeys, using the Earth’s magnetic field. It helps migratory birds navigate across the central Asian flyway, for example, or turtles, fish and other animals travel across vast distances. Recent research raises new questions about the evolutionary origins of magnetoreception and suggests that it may have evolved independently in complex animals. About three billion years ago, the Earth was still anoxic (oxygen made up less than 0.001% of the atmosphere), and the oceans had an abundance of metal ions, including iron. Eukaryotic cells, which make up  complex life forms, including animals, didn’t exist yet; life was dominated by archaea, the microorganisms that inhabit all kinds of extremes. In this scenario, iron ions found widely in the surrounding waters, could easily pass through a cell membrane and cause toxicity by stimulating free radicals in the cell. But the archaea were highly adaptable. These tiny microorganisms evolved the ability to protect themselves from the toxicity of iron by simply forming crystals out of iron oxide inside cell structures, a process called magnetite biomineralisation. The chiton, a marine mollusc, uses a unique protein to process iron and form magnetite teeth that it uses to graze on algae growing on rocks. Image by Michiko Nemoto. The magnetic abilities of bacteria Like most other abilities, bacteria is assumed to have adapted magnetite biomineralisation, a process where living organisms create iron oxide crystals inside cell structures, from their archaean ancestors. Over time, some bacteria repurposed magnetosomes&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/new-clues-into-how-animals-evolved-an-internal-compass-to-navigate-earth/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<title>Assam activist’s detention draws widespread condemnation</title>
					<link>https://india.mongabay.com/short-article/2026/08/assam-activists-detention-draws-widespread-condemnation/</link>
					<comments>https://india.mongabay.com/short-article/2026/08/assam-activists-detention-draws-widespread-condemnation/?noamp=mobile#respond</comments>
					<pubDate>06 Aug 2026 16:10:15 +0000</pubDate>
											<dc:creator>
							<![CDATA[Simrin Sirur]]>
						</dc:creator>
										<author>
						<![CDATA[Kundan Pandey]]>
					</author>
															<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/06154221/AP25065252615419-768x512.jpg" type="image/jpeg" />
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											<locations>
							<![CDATA[Assam]]>
						</locations>
					
					
					
											<description>
							<![CDATA[Over 60 civil rights groups have condemned the detention of Assam-based environmental and Indigenous rights activist Pranab Doley under the National Security Act, calling it a clear “attempt to punish and vilify activists for exercising their constitutional right to protest.” Doley led protests against a five-star luxury resort proposed to be built within the Kaziranga [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Over 60 civil rights groups have condemned the detention of Assam-based environmental and Indigenous rights activist Pranab Doley under the National Security Act, calling it a clear “attempt to punish and vilify activists for exercising their constitutional right to protest.” Doley led protests against a five-star luxury resort proposed to be built within the Kaziranga National Park and Tiger Reserve, a UNESCO World Heritage site housing the world’s largest population of one-horned rhinoceros. Doley was detained under the National Security Act (NSA) on July 30, one day after securing bail from a sessions court. The NSA provides for preventive detention to maintain public order. Rights groups have called it a way to “to continue his unjust incarceration.” Apart from the revocation of the NSA, the groups have demanded an independent investigation into police excesses against protesters, the release of all activists associated with land struggles in Assam, and a full, transparent disclosure of land allotments and tourism projects proposed in the National Park. The luxury hotel is being developed by a Hyatt-linked company, Juniper Hotels, on land leased to them by the Assam Tourism Development Corporation. The Hyatt Group has since distanced itself from the project. Indigenous tea tribes facing eviction have petitioned the Gauhati High Court alleging the land for the project was forcibly acquired from them. “Governments cannot be permitted to convert dissent and disagreement over development policy into questions of national security. Adivasi and Indigenous communities asserting their rights over land and for protection of the environment&hellip;This article was originally published on <a href="https://india.mongabay.com/short-article/2026/08/assam-activists-detention-draws-widespread-condemnation/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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						<item>
					<title>After decades of drought-proofing, farms still depend on rain</title>
					<link>https://india.mongabay.com/2026/08/after-decades-of-drought-proofing-farms-still-depend-on-rain/</link>
					<comments>https://india.mongabay.com/2026/08/after-decades-of-drought-proofing-farms-still-depend-on-rain/?noamp=mobile#respond</comments>
					<pubDate>06 Aug 2026 13:55:07 +0000</pubDate>
											<dc:creator>
							<![CDATA[Ashwini Kumar Shukla]]>
						</dc:creator>
										<author>
						<![CDATA[Kundan Pandey]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[agricultural drought]]></category>
		<category><![CDATA[El Niño]]></category>
		<category><![CDATA[irrigation]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/06123710/IMG_2166-768x512.jpg" type="image/jpeg" />
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											<reporting-project>
							<![CDATA[Climate Connections]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Jharkhand]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Climate Change, Climate Change Adaptation, Dams, Drought, Extreme Weather Events, and Monsoons]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[“This is all barren land now, but here we used to farm,” says Koushal Kishore Vishvakarma, a resident of Darudih village in Palamu district, Jharkhand, pointing to a long stretch of dry land spreading across the region. “It’s covered in grass because of the fresh monsoon rain, but it’s nothing more than grazing land now,” [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[“This is all barren land now, but here we used to farm,” says Koushal Kishore Vishvakarma, a resident of Darudih village in Palamu district, Jharkhand, pointing to a long stretch of dry land spreading across the region. “It’s covered in grass because of the fresh monsoon rain, but it’s nothing more than grazing land now,” adds the 52-year-old farmer. Twenty years ago, this was not the case in his village or the villages around it. “Can you see that river there?” he says, standing at least a kilometre and a half away from a small perennial tributary. “From there, water used to come all the way here.” Lift irrigation, once a lifeline His village is one of many where a lift irrigation system once watered upland fields that gravity alone could not reach. These systems use pumps to draw water from rivers or reservoirs and carry it uphill. “Ten surrounding villages benefited from it. Even in summer, people used to grow crops and vegetables,” he recalls. On his own 10 acres, he says, one year of farming used to produce enough food for two years, with more than 50 quintals left over to sell every year. The system ran for just five years. Then a pipe was damaged, villagers say, and it was never repaired. An abandoned lift irrigation system in Palamu that once irrigated nearby fields, now remains dry. Image by Ashwini Kumar Shukla. “Now we grow crops only in the rainy season, and only in the lowland paddy&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/after-decades-of-drought-proofing-farms-still-depend-on-rain/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<title>Sloth bears are unlikely seed dispersers shaping forests</title>
					<link>https://india.mongabay.com/2026/08/sloth-bears-shape-forests-as-unlikely-seed-dispersers/</link>
					<comments>https://india.mongabay.com/2026/08/sloth-bears-shape-forests-as-unlikely-seed-dispersers/?noamp=mobile#respond</comments>
					<pubDate>06 Aug 2026 13:14:49 +0000</pubDate>
											<dc:creator>
							<![CDATA[Sneha Mahale]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[Aravallis]]></category>
		<category><![CDATA[invasive plants]]></category>
		<category><![CDATA[Lantana]]></category>
		<category><![CDATA[sloth bear]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/06102357/Sloth-bears-may-contribute-to-the-spread-of-the-invasive-shrub-by-dispersing-its-seeds-over-long-distances.-Photo-Credit-Utkarsh-Prajapati-768x512.jpeg" type="image/jpeg" />
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											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Rajasthan]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Conservation, Ecology, Ecosystem services, Endangered species, Food, Forests, Mammals, Mountains, Positive Environmental, Research, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Sloth bears may be doing much more than foraging across Rajasthan&#8217;s semi-arid deciduous forests. A new study from the Aravalli hills suggests they may also help shape the forests by dispersing viable seeds. “A relatively small number of careful studies have been conducted on sloth bear diet ecology, and an even smaller number on their [&#8230;]]]>
						</description>
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							<![CDATA[Sloth bears may be doing much more than foraging across Rajasthan&#8217;s semi-arid deciduous forests. A new study from the Aravalli hills suggests they may also help shape the forests by dispersing viable seeds. “A relatively small number of careful studies have been conducted on sloth bear diet ecology, and an even smaller number on their role in enabling seed dispersal,” says K.S. Gopi Sundar, independent scientist and co-author of the study. “Since we studied both of these aspects, we are able to show that bears are influencing a number of plant species in germinating more and faster than if they were left to germinate naturally. Clearly, dry deciduous forests’ plant compositions are a function of sloth bear presence, movement, and dietary habits,” he says. Studying bears in the Aravallis The research was conducted in the Kumbhalgarh and Todgarh-Raoli wildlife sanctuaries in Rajasthan&#8217;s south-central Aravalli range. Together, the protected areas cover about 1,100 square kilometres of dry deciduous forest, scrubland and grassland. “The two sanctuaries formed a unique ecotone between the drier western Aravalli slopes and the much greener eastern slopes,” says co-author Utkarsh Prajapati, a senior project associate at the Wildlife Institute of India. “This zone of transition, we thought, likely holds a greater diversity of resources for omnivores such as the sloth bear.” Prajapati conducted the research while at the Wildlife Research Laboratory at the Department of Zoology, University College of Science, Mohanlal Sukhadia University (MLSU), Udaipur. The Kumbhalgarh and Todgarh-Raoli wildlife sanctuaries in Rajasthan’s south-central Aravalli range. These&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/sloth-bears-shape-forests-as-unlikely-seed-dispersers/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<title>Mumbai&#8217;s informal settlements struggle to power their homes</title>
					<link>https://india.mongabay.com/2026/08/mumbais-informal-settlements-struggle-to-power-their-homes/</link>
					<comments>https://india.mongabay.com/2026/08/mumbais-informal-settlements-struggle-to-power-their-homes/?noamp=mobile#respond</comments>
					<pubDate>05 Aug 2026 15:52:50 +0000</pubDate>
											<dc:creator>
							<![CDATA[Rhea Arora]]>
						</dc:creator>
										<author>
						<![CDATA[Divya Kilikar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[extreme heat]]></category>
		<category><![CDATA[heat]]></category>
		<category><![CDATA[heat stroke]]></category>
		<category><![CDATA[Heat wave]]></category>
		<category><![CDATA[heatwave]]></category>
		<category><![CDATA[Urban Heat Island]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/05001731/AP24180699138683-768x512.jpg" type="image/jpeg" />
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											<reporting-project>
							<![CDATA[Climate Connections]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Maharashtra]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Cities and Towns, Climate Change, Climate Change Adaptation, Energy, Environment, Global Warming, Governance, Health impacts, and Human Rights]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[“We pay ₹600 every month whether we get electricity or not. We used to pay more but there are now two electricity mafias competing in this area,” says Ajuma Sheikh, a 63-year-old social worker who stays in Patra chawl in Mumbai’s Mankhurd suburb. For the past 25 years, she has been caught between the powerful [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[“We pay ₹600 every month whether we get electricity or not. We used to pay more but there are now two electricity mafias competing in this area,” says Ajuma Sheikh, a 63-year-old social worker who stays in Patra chawl in Mumbai’s Mankhurd suburb. For the past 25 years, she has been caught between the powerful stakeholders of Mumbai’s electricity sector: the government, Adani Electricity and local unauthorised operators. In and around the Mumbai Port Trust, reserve forest areas and on land owned by the Railways and Defence departments, thousands of people live like the residents of Patra chawl — in densely-packed, make-shift homes made of tin sheets and plastic tarp with poor ventilation and no reliable electricity. “We sit outside all day because it’s too hot to go in,” Sheikh says, pointing to clusters of plastic chairs, cardboard sheets, cement bags, wooden planks, and ripped mattresses arranged haphazardly along the Mankhurd railway track. “We go indoors at 2 a.m. but get bit by mosquitoes all night. We can’t put up a net or light a coil because there’s no ventilation. We’ll suffocate.” Homes in Patra chawl, built with tin sheets that trap heat, can reach indoor temperatures of around 40°C, posing serious health risks. Image by Prachi Adesara/Mongabay. A survey from several South Asian cities including Yavatmal and Jalna in Maharashtra found that temperatures inside tin-roofed homes often exceeded those inside concrete-roofed homes and even outdoor temperatures. Sheikh lists the myriad heat-related conditions her community faces daily: suffocation, dehydration, fainting&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/mumbais-informal-settlements-struggle-to-power-their-homes/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>Whiskered swimmers with webbed feet</title>
					<link>https://india.mongabay.com/short-article/2026/08/whiskered-swimmers-with-webbed-feet/</link>
					<comments>https://india.mongabay.com/short-article/2026/08/whiskered-swimmers-with-webbed-feet/?noamp=mobile#respond</comments>
					<pubDate>05 Aug 2026 14:27:08 +0000</pubDate>
											<dc:creator>
							<![CDATA[Team Mongabay-India]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Biodiversity]]></category>
		<category><![CDATA[conservation]]></category>
		<category><![CDATA[Otters]]></category>
		<category><![CDATA[rivers]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/05133829/otter-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?post_type=short-article&#038;p=39683</guid>

											<reporting-project>
							<![CDATA[Species File]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Biodiversity, Conservation, Ecology, Mammals, Mangroves, and Rivers]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Species File: Exploring India&#8217;s biodiversity, one species at a time. A recent survey has found evidence of a significant smooth coated-otter population in Mettur dam and Kaveri river stretches of Salem district in Tamil Nadu. Local fishers and residents reported the presence of more than 1,000 otters in the region. Otters are semi-aqautic mammals found [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Species File: Exploring India&#8217;s biodiversity, one species at a time. A recent survey has found evidence of a significant smooth coated-otter population in Mettur dam and Kaveri river stretches of Salem district in Tamil Nadu. Local fishers and residents reported the presence of more than 1,000 otters in the region. Otters are semi-aqautic mammals found in rivers, wetlands, and mangroves. Their sleek bodies and webbed feet make them expert swimmers and efficient predators of fish and other aquatic animals, helping regulate prey populations and maintain ecosystem health. They also have whiskers that are sensitive. Of the 13 global otter species, three are found in India. The smooth-coated otter (Lutrogale perspicillata) is the most widely distributed, found in all major river systems south of the Himalayas. The Asian small-clawed otter (Aonyx cinereus), the world&#8217;s smallest otter species, lives in high-elevation streams of the Western Ghats, the Himalayan foothills, and parts of Northeast India. The Eurasian otter (Lutra lutra) is more elusive and solitary than the other two, and is found in the Himalayas through to the northeast, as well as parts of the Western Ghats and central India. Population estimates for otters in India are difficult to determine, given how little the species has been studied. According to the International Union for Conservation of Nature (IUCN), the smooth-coated otter is listed as vulnerable, based on ongoing population declines driven by habitat loss and hunting pressure. The Asian small-clawed otter is also listed as vulnerable, while the Eurasian otter is classified as&hellip;This article was originally published on <a href="https://india.mongabay.com/short-article/2026/08/whiskered-swimmers-with-webbed-feet/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>Rare lynx photo puts spotlight on high-altitude rangelands</title>
					<link>https://india.mongabay.com/2026/08/rare-lynx-photo-puts-spotlight-on-high-altitude-rangelands/</link>
					<comments>https://india.mongabay.com/2026/08/rare-lynx-photo-puts-spotlight-on-high-altitude-rangelands/?noamp=mobile#respond</comments>
					<pubDate>04 Aug 2026 15:20:02 +0000</pubDate>
											<dc:creator>
							<![CDATA[Manish Chandra Mishra]]>
						</dc:creator>
										<author>
						<![CDATA[Shailesh Shrivastava]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[carnivores]]></category>
		<category><![CDATA[eastern himalayas]]></category>
		<category><![CDATA[Eurasian lynx]]></category>
		<category><![CDATA[Sikkim Himalayas]]></category>
		<category><![CDATA[snow leopard]]></category>
		<category><![CDATA[snow leopards]]></category>
		<category><![CDATA[Tibetan plateau]]></category>
		<category><![CDATA[wolf]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/04131014/Eurasian-lynx-1-Sikkim-Forest-Dept-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39845</guid>

											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Sikkim]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Big Cats, Biodiversity, Camera traps, Cats, Conservation, Ecology, Endangered species, Himalayas, In-situ conservation, Mountains, Photos, Positive Environmental, Technology and Conservation, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A Eurasian lynx has been recorded in a camera-trap image from the Tso Lhamo plateau in Sikkim. This encounter marks the first confirmed photographic evidence of the species in the state. It is also the second such record from the Eastern Himalayas. The image, captured in January 2026 at an altitude of 5,250 metres in [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A Eurasian lynx has been recorded in a camera-trap image from the Tso Lhamo plateau in Sikkim. This encounter marks the first confirmed photographic evidence of the species in the state. It is also the second such record from the Eastern Himalayas. The image, captured in January 2026 at an altitude of 5,250 metres in Mangan district, shows the animal moving across a rocky, sparsely vegetated high-altitude slope. The sighting comes from a long-term snow leopard and rangeland monitoring programme led by the Sikkim forest department and WWF-India. The initiative tracks snow leopards and associated wildlife while studying the ecological condition of the trans-Himalayan rangelands. The Sikkim record follows a 2025 photographic documentation of a Eurasian lynx in Arunachal Pradesh during a joint survey by WWF-India and the Arunachal Pradesh forest department. “It highlights the ecological significance of our high-altitude rangelands and reinforces our commitment to protecting these fragile ecosystems. The cooperation of the Lachen Dzumsa (traditional local self-governance body) in facilitating access to these remote areas has been important to this work,” Sikkim’s Chief Conservator of Forests (Wildlife), Udai Gurung, said in a press note. At the Tso Lhamo plateau in Sikkim, researchers captured camera-trap images of a Eurasian lynx, along with several other elusive species. High-altitude rangelands like this region have wrongly been dismissed as barren deserts of little ecological value. Image courtesy of Forest &amp; Environment Department, Sikkim, and WWF-India. The images are part of a long-term snow leopard and trans-Himalayan rangeland monitoring programme. Image courtesy of&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/rare-lynx-photo-puts-spotlight-on-high-altitude-rangelands/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
														</item>
						<item>
					<title>Scientists identify new deep-sea shark species from India’s southwest coast</title>
					<link>https://india.mongabay.com/2026/08/scientists-identify-new-deep-sea-shark-species-from-indias-southwest-coast/</link>
					<comments>https://india.mongabay.com/2026/08/scientists-identify-new-deep-sea-shark-species-from-indias-southwest-coast/?noamp=mobile#respond</comments>
					<pubDate>04 Aug 2026 12:15:07 +0000</pubDate>
											<dc:creator>
							<![CDATA[Ananya Singh]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[bycatch]]></category>
		<category><![CDATA[deep seas]]></category>
		<category><![CDATA[fisheries]]></category>
		<category><![CDATA[shark]]></category>
		<category><![CDATA[trawling]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/04130134/A_drona_holotype_image_male-1-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39826</guid>

											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Kerala]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Coast, Conservation, Ecology, Fish, Fishing, New species, Oceans, Overfishing, Positive Environmental, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A deep-sea catshark caught off Kerala’s coast has now been identified as a new species, highlighting the need for better understanding of deep-sea biodiversity. In 2022, a team of scientists sifting through the bycatch of deep-sea shrimp trawlers came across a black, slender-bodied fish with an angular, pointed snout and striking white eyes. This fish [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A deep-sea catshark caught off Kerala’s coast has now been identified as a new species, highlighting the need for better understanding of deep-sea biodiversity. In 2022, a team of scientists sifting through the bycatch of deep-sea shrimp trawlers came across a black, slender-bodied fish with an angular, pointed snout and striking white eyes. This fish had been caught at a depth of 400-650 metres at Kollam slope, a continental slope in the southeastern Arabian Sea off Kerala’s coast, designated as an Important Shark and Ray Area. The team confirmed that it belonged to the genus Apristurus — a group of deepwater catsharks — and brought it back to the lab for further examination. Two years later, the researchers collected three additional specimens at Sakthikulangara Fisheries Harbour, Kollam, during monitoring surveys. Through morphological and molecular analyses of the four specimens, the team found that this species was distinct from others within the genus and described it as a new species of deepwater catshark (Apristurus drona) in their paper published earlier this year in Zootaxa. The objective of the study, part of a larger project under the Ministry of Earth Sciences’ Deep Ocean Mission, was to explore the diversity of deep-sea chondrichthyans which are cartilaginous fish such as sharks (Selachimorpha), rays and skates (Batoidea) and chimaeras (Holocephali) and resolve some of the taxonomic confusion around them. “From biodiversity inventory surveys, we have realised that our understanding of deep-sea biodiversity is limited,” said Bineesh K.K., the study’s corresponding author and a scientist at&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/scientists-identify-new-deep-sea-shark-species-from-indias-southwest-coast/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>A fertile landscape at the crossroads of ecology and development [Commentary]</title>
					<link>https://india.mongabay.com/2026/08/a-fertile-landscape-at-the-crossroads-of-ecology-and-development-commentary/</link>
					<comments>https://india.mongabay.com/2026/08/a-fertile-landscape-at-the-crossroads-of-ecology-and-development-commentary/?noamp=mobile#respond</comments>
					<pubDate>03 Aug 2026 15:47:18 +0000</pubDate>
											<dc:creator>
							<![CDATA[C.P. Rajendran]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[farming]]></category>
		<category><![CDATA[fisheries]]></category>
		<category><![CDATA[invasive plants]]></category>
		<category><![CDATA[solution]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/03125249/4670487709_c95df8f47d_4k-scaled-e1785742237892-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39805</guid>

											<reporting-project>
							<![CDATA[Just Transitions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Kerala]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Biodiversity, Climate Change, Climate Change Mitigation, Fish, Fishing, Floods, Lakes, Monsoons, Pollution, Sea Level Rise, Waste management, Water, Water Pollution, and Wetlands]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The Kuttanad region of Kerala, often celebrated as the &#8220;rice bowl&#8221; of the state, is a landscape of profound beauty and immense ecological significance. Yet, its existence is a delicate balancing act, a testament to both the generative power of nature and the often-destructive ambition of human intervention. This intricate wetland system, a mosaic of [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The Kuttanad region of Kerala, often celebrated as the &#8220;rice bowl&#8221; of the state, is a landscape of profound beauty and immense ecological significance. Yet, its existence is a delicate balancing act, a testament to both the generative power of nature and the often-destructive ambition of human intervention. This intricate wetland system, a mosaic of lush green paddy fields, labyrinthine canals, and the vast expanse of Vembanad lake, is a geographical marvel that is simultaneously a victim of its own fertility and the relentless pressures of modernisation. Kuttanad is world-renowned for its below-sea-level paddy cultivation and unique brackish-water ecosystem. Alongside this remarkable agricultural practice, the region&#8217;s brackish-water ecosystem supports a thriving inland fisheries sector, with the Vembanad estuary serving as a critical nursery for numerous fish and prawn species. Together, these intertwined livelihoods — agriculture and fisheries — form the economic and cultural backbone of Kuttanad. So distinctive and globally significant is this integrated farming system that the Food and Agriculture Organization (FAO) of the United Nations has recognised it as a Globally Important Agricultural Heritage System (GIAHS), placing Kuttanad alongside other iconic agricultural landscapes like the terraced rice fields of the Philippines and the saffron fields of Kashmir. Geologically speaking, Kuttanad is a young and dynamic landscape. In the distant past, this region formed part of the shallow coastal shelf of the Arabian Sea. Over millennia, the powerful rivers originating in the Western Ghats, chiefly the Pampa, Achankovil, and Manimala, carried massive loads of silt and alluvium from the&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/a-fertile-landscape-at-the-crossroads-of-ecology-and-development-commentary/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
														</item>
						<item>
					<title>Flies are overlooked pollinators and farmers’ friends</title>
					<link>https://india.mongabay.com/2026/08/flies-are-overlooked-pollinators-and-farmers-friends/</link>
					<comments>https://india.mongabay.com/2026/08/flies-are-overlooked-pollinators-and-farmers-friends/?noamp=mobile#respond</comments>
					<pubDate>03 Aug 2026 13:24:32 +0000</pubDate>
											<dc:creator>
							<![CDATA[Geetha Iyer]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[flies]]></category>
		<category><![CDATA[pollination]]></category>
		<category><![CDATA[pollinators]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/03095032/Syrphid-fly-from-Ladakh-e1785731238147-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39793</guid>

											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Conservation, Ecology, Ecosystem services, and Insects]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Say flies, and one instantly thinks about dirt and disease. But in truth they are among the cleanest of insects. They are a grossly misunderstood order of insects. They are excellent pollinators, aid in criminal investigation, composting, pest control and increasing soil fertility, and of course in scientific research. They are the true flies. Why [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Say flies, and one instantly thinks about dirt and disease. But in truth they are among the cleanest of insects. They are a grossly misunderstood order of insects. They are excellent pollinators, aid in criminal investigation, composting, pest control and increasing soil fertility, and of course in scientific research. They are the true flies. Why are true flies named so? Several insects such as the butterflies, dragonflies, mayflies, or fireflies bear the word ‘flies’ in their names, but they are not flies. To distinguish what we know as the fly from such insects, they are described as true flies. These are insects that have only one pair of wings. In true flies (referred to in this article as fly/flies) the hind wings are reduced to a pair of club-shaped structures called halteres and so fly using only one pair of wings. To stay airborne and move forward, the fly must beat its wings as much as two hundred times a second. That is also why it is difficult to swat flies. The halteres function as gyroscopes, providing fine balances during flight. Flies can therefore perform complex movements in flight to deftly avoid any obstacles or swats. Along with their close relatives, the midges and mosquitoes, flies belong to the order Diptera (Di, meaning two; ptera, meaning wings). Of the 27 orders of insects, Diptera ranks second for abundance. The housefly being the frequently seen one, there is a general impression that all flies are dark and drab like them. Many&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/flies-are-overlooked-pollinators-and-farmers-friends/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
														</item>
						<item>
					<title>India’s carbon market sets weak emissions targets, analysis finds</title>
					<link>https://india.mongabay.com/2026/07/indias-carbon-market-sets-weak-emissions-targets-analysis-finds/</link>
					<comments>https://india.mongabay.com/2026/07/indias-carbon-market-sets-weak-emissions-targets-analysis-finds/?noamp=mobile#respond</comments>
					<pubDate>31 Jul 2026 16:51:38 +0000</pubDate>
											<dc:creator>
							<![CDATA[Simrin Sirur]]>
						</dc:creator>
										<author>
						<![CDATA[Kundan Pandey]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/31160627/pexels-yajna-s-r-55953015-20591230-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39764</guid>

											<reporting-project>
							<![CDATA[Climate Finance]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Carbon emissions, Carbon Finance, Climate Change, Climate Change Adaptation, Climate Change Mitigation, Green Business, Greenhouse Gas Emissions, Pollution, and Technology]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A critical evaluation of emissions reduction targets set under the country’s carbon market framework has deemed the targets “modest and unambitious” — unlikely to drive changes in operations that would reduce emissions substantially. Between October 2025 and January 2026 India notified greenhouse gas reduction targets for nine industries. Under the framework, industries can earn carbon [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A critical evaluation of emissions reduction targets set under the country’s carbon market framework has deemed the targets “modest and unambitious” — unlikely to drive changes in operations that would reduce emissions substantially. Between October 2025 and January 2026 India notified greenhouse gas reduction targets for nine industries. Under the framework, industries can earn carbon credits if they surpass these reduction targets, with each credit signifying an additional tonne of carbon dioxide equivalent reduced per unit of production (emissions intensity). The industries covered include cement, aluminium, iron and steel, paper and pulp, chlor-alkali, petroleum refinery, petrochemical units, fertilisers, and textiles. The evaluation of the targets by Climate Risk Horizons (CRH), a research organisation, finds that in addition to the targets being “readily achievable,” over the two-year compliance period, the cost of non-compliance is too low to incentivise the kind of systematic operational changes needed to drastically reduce greenhouse gas emissions. India is the world’s third largest greenhouse gas emitter, with emissions from industrial processes and product use accounting for approximately 8% of greenhouse gas emissions. In August 2022, the Indian government pledged to reduce its greenhouse gas emissions intensity by 45% by 2030, compared to 2005 levels. It also pledged to reach net-zero emissions by 2070. According to the CRH analysis, the cost of purchasing credits for major companies in the steel, aluminium, and cement sectors is between 0.6% and 7% of profits, assuming credit prices are $10 per tonne of carbon dioxide equivalent, as indicated by S&amp;P Global, which tracks&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/indias-carbon-market-sets-weak-emissions-targets-analysis-finds/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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														</item>
						<item>
					<title>Bihar&#8217;s green budget expands, but environmental indicators show little progress</title>
					<link>https://india.mongabay.com/2026/07/bihars-green-budget-expands-but-environmental-indicators-show-little-progress/</link>
					<comments>https://india.mongabay.com/2026/07/bihars-green-budget-expands-but-environmental-indicators-show-little-progress/?noamp=mobile#respond</comments>
					<pubDate>31 Jul 2026 14:22:25 +0000</pubDate>
											<dc:creator>
							<![CDATA[Umesh Kumar Ray]]>
						</dc:creator>
										<author>
						<![CDATA[Kundan Pandey]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[Climate Finance]]></category>
		<category><![CDATA[finance]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/31125413/NTPC_Kantin_Muzaffarpur-1-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39756</guid>

											<reporting-project>
							<![CDATA[Climate Finance]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Bihar]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Air Pollution, Biodiversity, Cities and Towns, Climate Change Adaptation, Climate Change Mitigation, Environmental Politics, Green Business, Green Energy, and Greenhouse Gas Emissions]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[It has been seven years since Bihar introduced a green budget. However, even now, data from various sources suggests little to no improvement in key environmental indicators such as renewable energy, air pollution, biodiversity and waste management, among others. The Bihar government presented its first green budget in 2020-21; this year, 2026, it presented its [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[It has been seven years since Bihar introduced a green budget. However, even now, data from various sources suggests little to no improvement in key environmental indicators such as renewable energy, air pollution, biodiversity and waste management, among others. The Bihar government presented its first green budget in 2020-21; this year, 2026, it presented its seventh, amounting to approximately ₹158 billion which is roughly three times the amount of the initial ₹56 billion budget. However, on key environmental indicators, the state&#8217;s performance remains poor. For example, the energy sector accounts for roughly 65% of Bihar&#8217;s total greenhouse gas emissions, driven by coal-based power plants. The shift to renewable energy has been low, with renewable energy capacity for 2025-26 standing at 651 MW, up from 376 MW in 2020. The amount is significantly behind the Bihar State Pollution Control Board (BSPCB) call for increasing renewable capacity to 10,000 MW (10 GW) by 2030 and 28,000 MW (28 GW) by 2050 to achieve a &#8216;net zero&#8217; pathway, as stated in its 2024 report. At the current pace, Bihar will reach around 900 MW, just about a tenth of that 2030 target. Biodiversity data shows a similar trend. In 2019, Bihar had 4,550 wetlands spread across 389,713 hectares. By 2025, the number of wetlands reduced by 24 to 4,526 wetlands. As per the latest green budget data, in this period, the total area of natural water bodies has shrunk by 16,843 hectares, that&#8217;s about 70% the size of Patna, Bihar&#8217;s capital. In waste&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/bihars-green-budget-expands-but-environmental-indicators-show-little-progress/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>A newly-described fish sheds light on a biodiversity blind spot</title>
					<link>https://india.mongabay.com/2026/07/a-newly-described-fish-sheds-light-on-a-biodiversity-blind-spot/</link>
					<comments>https://india.mongabay.com/2026/07/a-newly-described-fish-sheds-light-on-a-biodiversity-blind-spot/?noamp=mobile#respond</comments>
					<pubDate>31 Jul 2026 10:42:59 +0000</pubDate>
											<dc:creator>
							<![CDATA[Monish Upadhyay]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[freshwater]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/31003452/Image-2-768x512.jpeg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39744</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Nagaland]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Conservation, Ecology, Fish, Forests, Himalayas, New species, Rivers, Water, Water Pollution, and Wetlands]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A new catfish species, Pseudecheneis likimroensis, has been described from India&#8217;s north-eastern state of Nagaland. The species, named after the fast-flowing Likimro river, from which specimens have been collected so far, was described in the Journal of Ichthyology. The discovery took place unexpectedly when a research team was in the region to survey fish fauna [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A new catfish species, Pseudecheneis likimroensis, has been described from India&#8217;s north-eastern state of Nagaland. The species, named after the fast-flowing Likimro river, from which specimens have been collected so far, was described in the Journal of Ichthyology. The discovery took place unexpectedly when a research team was in the region to survey fish fauna in Nagaland’s Kiphire district, said Limatemjen, co-author of the paper on the new species. Kiphire is a remote district, situated in the eastern part of the state and lies along the India-Myanmar border. “First we had to travel from Kohima to Kiphire, covering a distance of around 100 km. However, the journey takes much longer due to difficult road conditions,” Limatemjen, a professor of Zoology and Dean of Sciences at Kohima Science College, told Mongabay-India. After reaching Kiphire, the team took another four-hour journey to Likimro river where they walked yet another hour to reach the designated sampling site. Characteristic of mountain streams, the sampling site is torrential in nature and is surrounded by steep valleys. Around five specimens of Pseudecheneis likimroensis were collected by the team during the survey in October 2024. Although initially surprised by the unusual catch, found at an elevation of 446 m above sea level, it was only after bringing the specimens to the laboratory and running detailed examinations did the team realise they had an undescribed species at hand. A Pseudecheneis likimroensis specimen found in the fast flowing Likimro river in Nagaland in 2024. The species was described in&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/a-newly-described-fish-sheds-light-on-a-biodiversity-blind-spot/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>Study warns of growing landslide threat</title>
					<link>https://india.mongabay.com/short-article/2026/07/study-warns-of-growing-landslide-threat/</link>
					<comments>https://india.mongabay.com/short-article/2026/07/study-warns-of-growing-landslide-threat/?noamp=mobile#respond</comments>
					<pubDate>30 Jul 2026 14:29:16 +0000</pubDate>
											<dc:creator>
							<![CDATA[Arathi Menon]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Climate disaster]]></category>
		<category><![CDATA[disaster]]></category>
		<category><![CDATA[disaster risk]]></category>
		<category><![CDATA[landslide]]></category>
		<category><![CDATA[landslides]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/30131231/DSC4457-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?post_type=short-article&#038;p=39737</guid>

											<reporting-project>
							<![CDATA[Climate Connections]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Karnataka]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Climate Change, Extreme Weather Events, Floods, Forests, Mountains, and Western Ghats]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Climate change and land use changes could significantly increase landslide susceptibility and risk across Karnataka’s Western Ghats by 2050, according to a new study published in Scientific Reports. The modelling study evaluates future landslide susceptibility and risk by incorporating projected changes in land use/land cover (LULC) and rainfall patterns under different climate scenarios. The research [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Climate change and land use changes could significantly increase landslide susceptibility and risk across Karnataka’s Western Ghats by 2050, according to a new study published in Scientific Reports. The modelling study evaluates future landslide susceptibility and risk by incorporating projected changes in land use/land cover (LULC) and rainfall patterns under different climate scenarios. The research covers around 45,000 square kilometres across seven districts of Karnataka, including Uttara Kannada, Kodagu, Chikkamagaluru and Shivamogga, a region that has recorded more than 1,200 rainfall-triggered landslides. Unlike conventional assessments that assume landslide-causing factors remain constant over time, the researchers incorporated projected changes in rainfall and land use under four Shared Socioeconomic Pathway (SSP) scenarios. Using machine learning, they combined these projections to identify future landslide hotspots and assess risks to people and infrastructure, making this one of the first future-oriented landslide assessments for the region. The authors note that the intensity and frequency of fatal landslides in the Western Ghats are increasingly influenced by human-induced land use changes and climate change, making it essential to understand how these factors may evolve in the coming decades. They emphasise that susceptibility maps they developed identify areas most likely to experience landslides, while risk maps combine susceptibility with exposure to highlight locations where landslides could result in socioeconomic losses. Such assessments could inform infrastructure development, land use planning and disaster risk reduction. The findings project a significant increase in rainfall intensity and urban development by 2050, leading to higher landslide susceptibility and risk across the study area.&hellip;This article was originally published on <a href="https://india.mongabay.com/short-article/2026/07/study-warns-of-growing-landslide-threat/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>Volcanoes, El Niño and colonial policies fuelled two deadly famines in India</title>
					<link>https://india.mongabay.com/2026/07/volcanoes-el-nino-and-colonial-policies-fuelled-two-deadly-famines-in-india/</link>
					<comments>https://india.mongabay.com/2026/07/volcanoes-el-nino-and-colonial-policies-fuelled-two-deadly-famines-in-india/?noamp=mobile#respond</comments>
					<pubDate>30 Jul 2026 13:56:36 +0000</pubDate>
											<dc:creator>
							<![CDATA[Karthik Vinod]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[colonisation]]></category>
		<category><![CDATA[famine]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/30132302/Bellary_ZillaGreat_Famine_of_1876%E2%80%9378-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39721</guid>

											<reporting-project>
							<![CDATA[Climate Connections]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Climate Change, Climate Science, Drought, Environment, Extreme Weather Events, Food, Health impacts, Human Rights, Monsoons, and Water]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Two volcanic eruptions — one in Japan, and the other in Nicaragua — spewed sulfur aerosols into the atmosphere in the 1830s. This in turn accelerated cooling and a monsoon failure that triggered droughts across British-administered Agra and Madras, according to a new study. But while the volcanic eruptions triggered drought, it was decades of [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Two volcanic eruptions — one in Japan, and the other in Nicaragua — spewed sulfur aerosols into the atmosphere in the 1830s. This in turn accelerated cooling and a monsoon failure that triggered droughts across British-administered Agra and Madras, according to a new study. But while the volcanic eruptions triggered drought, it was decades of colonial over-taxation and environmental degradation that further turned the monsoon failure into famines which saw mass deaths. Between 1832 and 1838, India witnessed poor monsoon. This period saw weather patterns shift globally. El Niño, a periodic climatic phenomenon in the southern hemisphere, which struck in 1833, was one of them. It affected monsoon circulation thereby bringing an extended spell of dry weather all over India. Droughts broke out in the British-administered Agra and Madras, affecting cultivation of rice, legumes and other seasonal crops. Colonial policies led to economic mismanagement, feeding a famine that left over 900,000 people dead. The study, that establishes the link between these volcanic eruptions and the resulting famines, was published in the Journal of Historical Geography in December. It finds that the cooling effects of two distant volcanic eruptions — one near Japan in 1831, one in Nicaragua in 1835 — contributed to the severe monsoon failures in India. Because the peak cooling from the 1831 eruption happened to coincide with the El Niño&#8217;s onset, the two effects made the resulting drought worse than either would likely have caused on its own. The new study adds to a “growing body of work&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/volcanoes-el-nino-and-colonial-policies-fuelled-two-deadly-famines-in-india/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>The wild cat with a unique stripe pattern</title>
					<link>https://india.mongabay.com/short-article/2026/07/the-wild-cat-with-a-unique-stripe-pattern/</link>
					<comments>https://india.mongabay.com/short-article/2026/07/the-wild-cat-with-a-unique-stripe-pattern/?noamp=mobile#respond</comments>
					<pubDate>29 Jul 2026 15:38:48 +0000</pubDate>
											<dc:creator>
							<![CDATA[Team Mongabay-India]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[big cats]]></category>
		<category><![CDATA[cats]]></category>
		<category><![CDATA[National Tiger Conservation Authority]]></category>
		<category><![CDATA[tiger]]></category>
		<category><![CDATA[Tiger conservation]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/29151106/tiger-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?post_type=short-article&#038;p=39706</guid>

											<reporting-project>
							<![CDATA[Species File]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animals, Big Cats, Biodiversity, Cats, Ecology, Ecosystem services, Forests, Poaching, Tigers, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Species File: Exploring India&#8217;s biodiversity, one species at a time. Tiger stripes are unique, like human fingerprints. No two tigers have the same stripes, a trait that helps researchers monitor the species’ population. In India — home to 75% of the world’s wild tigers — such monitoring plays a crucial role in conservation efforts. Tigers [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Species File: Exploring India&#8217;s biodiversity, one species at a time. Tiger stripes are unique, like human fingerprints. No two tigers have the same stripes, a trait that helps researchers monitor the species’ population. In India — home to 75% of the world’s wild tigers — such monitoring plays a crucial role in conservation efforts. Tigers (Panthera tigris) are the largest of all big cat species, and apex predators. They have a distinctive reddish-orange yellow coat, and a muscular build. Tigers can survive in a wide range of habitats, including mangrove swamps, forests and grasslands. As a solitary and territorial animal, the tiger relies on its strength to hunt its prey, and is vital to the health of entire ecosystems. Central India holds about 40% of the country’s wild tigers, with recent estimates placing the population at around 3,682 individuals. In 1972, the Royal Bengal Tiger (Panthera tigris tigris) was declared the national animal of India. In India, tigers are listed under Schedule I of the Wildlife Protection Act, 1972, giving it the highest level of protection. In 2006, the act was amended to provide for constituting the National Tiger Conservation Authority (NTCA) for strengthening tiger conservation. According to the International Union for Conservation of Nature’s (IUCN) Red List of Species, tigers are endangered, which means they face a very high risk of extinction in the wild. Despite tiger populations having stabilised in the past few years, they continue to face significant threats such as shrinkage of tiger habitat, biotic interference&hellip;This article was originally published on <a href="https://india.mongabay.com/short-article/2026/07/the-wild-cat-with-a-unique-stripe-pattern/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>India has a railway noise problem but its health impacts are poorly understood</title>
					<link>https://india.mongabay.com/2026/07/india-has-a-railway-noise-problem-but-its-health-impacts-are-poorly-understood/</link>
					<comments>https://india.mongabay.com/2026/07/india-has-a-railway-noise-problem-but-its-health-impacts-are-poorly-understood/?noamp=mobile#respond</comments>
					<pubDate>29 Jul 2026 14:45:20 +0000</pubDate>
											<dc:creator>
							<![CDATA[Rohan Singh]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[Indian Railway]]></category>
		<category><![CDATA[railways]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/29114606/Outer_area_of_Howrah_Junction_railway_station_India-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39704</guid>

											<reporting-project>
							<![CDATA[Just Transitions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Cities and Towns, Environment, Health impacts, Human Rights, Pollution, and Villages]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Every day, thousands of trains pass through India&#8217;s cities, towns, and densely populated settlements. For millions of Indians living alongside railway corridors, the sound of passing trains — often accompanied by ground vibrations — is part of daily life. Most days, it continues late into the night. Yet, railway noise remains a poorly understood environmental [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Every day, thousands of trains pass through India&#8217;s cities, towns, and densely populated settlements. For millions of Indians living alongside railway corridors, the sound of passing trains — often accompanied by ground vibrations — is part of daily life. Most days, it continues late into the night. Yet, railway noise remains a poorly understood environmental health risk. Recent studies have begun documenting elevated noise levels around railway tracks, with some communities experiencing exposures that exceed recommended residential limits. Yet, while researchers can increasingly measure railway noise, far less is known about what years of repeated exposure may mean for sleep, cardiovascular health, stress physiology, or quality of life. As evidence slowly emerges, researchers say India lacks a clear understanding of the cumulative human burden of railway-noise exposure, leaving important questions about health impacts unanswered. Measuring decibels, missing health evidence Studies in recent years are beginning to reveal what life near railway corridors may mean for communities around. A 2024 study led by Rajeev Kumar Mishra, an associate professor at the Department of Environmental Science and Engineering at Delhi Technological University (DTU), found that residents living near railway corridors reported physiological and psychological effects associated with repeated exposure to railway noise and vibration. The research team measured noise at 10 sites near railway stations in Delhi and found that the noise exceeded Central Pollution Control Board (CPCB) limits. Sleep disturbance was one of the most frequently reported concerns among surveyed residents. However, Mishra emphasises that these findings primarily document exposure to&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/india-has-a-railway-noise-problem-but-its-health-impacts-are-poorly-understood/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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						<item>
					<title>India’s ethanol push moves from the pump to the field, raising water and food questions</title>
					<link>https://india.mongabay.com/2026/07/indias-ethanol-push-moves-from-the-pump-to-the-field-raising-water-and-food-questions/</link>
					<comments>https://india.mongabay.com/2026/07/indias-ethanol-push-moves-from-the-pump-to-the-field-raising-water-and-food-questions/?noamp=mobile#respond</comments>
					<pubDate>28 Jul 2026 16:31:30 +0000</pubDate>
											<dc:creator>
							<![CDATA[Manish Chandra Mishra]]>
						</dc:creator>
										<author>
						<![CDATA[Shailesh Shrivastava]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[Ethanol]]></category>
		<category><![CDATA[ethanol blending]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/28144133/signal-2026-07-28-12-24-18-195_003-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39684</guid>

											<reporting-project>
							<![CDATA[Just Transitions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Global and India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Biofuels, Environment, Food, Fossil Fuels, Green Energy, Human Rights, Industry, and Water]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[This is the third part in a series comparing India and Brazil’s ethanol transitions. This part examines how India&#8217;s ethanol model increasingly moving beyond sugarcane and molasses-based production to grains, raising questions about pressures on livestock feed and the food processing industry. The second part examined the challenges of procurement, storage, transport and quality control. [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[This is the third part in a series comparing India and Brazil’s ethanol transitions. This part examines how India&#8217;s ethanol model increasingly moving beyond sugarcane and molasses-based production to grains, raising questions about pressures on livestock feed and the food processing industry. The second part examined the challenges of procurement, storage, transport and quality control. In December 2025, tractors and crowds of farmers gathered near an under-construction grain-based ethanol plant in Rathi Khera village in Rajasthan’s Hanumangarh district. They feared the project would strain local water resources, pollute groundwater and damage farmland. The company said the plant would use zero-liquid-discharge technology and pollution-control systems. The protest later escalated into clashes with police, and construction was halted. The Hanumangarh agitation was one of several protests against ethanol and distillery projects reported across India, including in Madhya Pradesh, Punjab and Telangana, where communities have raised concerns about water use, pollution and impacts on farmland. These disputes are emerging as India’s ethanol industry undergoes a major shift from sugarcane-based to grain-based production. In the latest tender by state oil companies, grain-based distilleries supplied more than 70% of the ethanol procured, according to Athar Shahab, managing director of Zuari Industries Limited, an Indian conglomerate with businesses spanning agribusiness, sugar and biofuels, real-estate and engineering services. A decade ago, sugarcane molasses dominated India’s ethanol supply. That balance has now shifted. India now derives roughly 65-70% of its ethanol from grains, mainly maize and rice from Food Corporation of India warehouses, while sugarcane-based feedstocks contribute around&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/indias-ethanol-push-moves-from-the-pump-to-the-field-raising-water-and-food-questions/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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