Proceedings of the National Academy of Sciences, April 18
Research into the impact of black carbon has long noted the potential of emissions reductions to slow snow and ice loss. With Covid-19, this appears to have been borne out in a real-world scenario, when corona virus lockdowns in South Asia last year reduced emissions of particle pollution, including black carbon by 30% compared with the 20-year average. This improvement in air quality (allowing Everest to be visible from Kathmandu for the first time in many decades) also appears to have decreased black carbon (soot) deposition on ice and snow supplying the Indus River basin. The cleaner snow and ice reflects sunlight, and this effect slowed the summer and springtime melt by an estimated 1.5 cubic miles of runoff water. The slowing in melt was significant enough to increase reservoir levels, allowing managers to maintain a more steady flow in serving the 300 million people dependent on Indus water resources. This unanticipated Covid-19 impact indicates how decreases in black carbon emissions can benefit regional cryosphere and related water resources, in addition to the immediate health impacts of decreased particle pollution, which WHO estimates caused 8 million excess deaths annually.
https://tc.copernicus.org/
Compiled by Amy Imdieke
PNAS, 6 July 2026 Antarctic ice shelves act as natural barriers that slow the flow…
Nature Climate Change, 10 June 2026 Human-driven sea-level rise is transforming once-rare “extreme sea-level events”…
Advances in Climate Change Research, June 2026 Extratropical cyclones – large weather systems that transport…
Ocean Science, 30 June 2026 The North Sea has warmed about twice as fast as…
Environmental Research Climate, 3 July 2026 Glaciers in the Western Himalayas store vast freshwater reserves…
Climate Dynamics, 28 May 2026 Declining sea ice in the Arctic’s Barents-Kara Sea may be…