黑碳加速南安第斯山脉积雪融化

Environmental Research Letters, 25 March 2022

Concentrations of black carbon (BC) in the snow near Santiago, one of the most populated cities in South America, are more than five times higher than elsewhere in the southern Andes and Patagonia. This study provides the first comprehensive assessment of the impacts of black carbon on seasonal snow in this region. The greatest amount of black carbon was found in snow in the mountainous La Parva and Valle Nevado, forty kilometers east of Santiago. Black carbon primarily arises in this region from poor combustion in diesel engines; coal and residential wood burning; and set agricultural fires and related wildfires. Strong winds flowing from the valleys west of the Andes transport these BC particles toward the mountains, where they accumulate on top of the snow. This darkens the surface and increases the amount of sunlight absorbed, which accelerates melting. The Andes snowpack provides an essential source of water for many South American communities, and supports everything from generation of hydroelectric power to local agriculture. Authors underscore the importance of developing environmental policies that reduce the black carbon footprint of major cities in nearby cryosphere.

https://iopscience.iop.org/article/10.1088/1748-9326/ac5df0

帕姆·皮尔森

最新帖子

COP31 Cryosphere Pavilion: Call for Side Events and ECS Volunteers

Dear Friends of the Cryosphere Pavilion and Cryosphere Capsule Readers! We are happy to announce…

1 周 ago

Extreme Sea-Level Rise Could Lead to Large-Scale Coastal Relocation in the United Kingdom

Nature Communications, 21 July 2026 Rising sea levels driven by ocean warming and ice sheet…

1 周 ago

East Antarctic Ice Shelf Melt Driven by Warm Surface Ocean Waters

Journal of Geophysical Research: Oceans, 26 June 2026 East Antarctica has long been considered less…

1 周 ago

Increasing Decline in Antarctic Bottom Water Volume Since 2000s

Geophysical Research Letters, 9 July 2026 Antarctic Bottom Water (AABW) is the cold, dense water…

1 周 ago

Record-Low Arctic Winter Sea Ice in 2025 and 2026 Signals Continued Decline

PNAS, 20 July 2026 After several years in the early 2020s when Arctic winter sea…

1 周 ago

AMOC Weakening and Permafrost Thaw During Overshoot of the 1.5°C Paris Limit

Nature Communications, 16 July 2026 Temporarily exceeding global warming targets increases the risk of long-lasting…

1 周 ago