Nature Communications, 23 April 2024
Weakened deep ocean mixing and sea ice loss could tip currently stable regions of West Antarctica across a threshold into extensive retreat for thousands of years, and this outcome can only be avoided with steep cuts in carbon emissions. This study unravels past ice sheet behavior to predict how it will react to future warming. Geological records reveal that stable coastal areas along the Ross Ice Shelf dramatically retreated thousands of years ago when a lack of sea ice removed the natural cold-water barrier preventing warm ocean currents from eroding the ice shelf. While retreating regions of West Antarctica such as the Amundsen sector are already committed to produce a certain amount of sea-level rise this century, these findings reiterate the need for urgent mitigation to prevent stable regions from producing similar ice loss in the near future.
Hela uppsatsen: https://www.nature.com/articles/s41467-024-47369-3
Plain-language briefing: https://theconversation.com/west-antarcticas-ice-sheet-was-smaller-thousands-of-years-ago-heres-why-this-matters-today-225670
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…