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Publikasjonstype Vitenskapelig tidsskriftpublikasjon

Evolution of Near‐Term Atmospheric Methane and Associated Temperature Response Under the Global Methane Pledge: Insights From an Earth System Model

Ulas Im, Drew Shindell, Kostas Tsigaridis, Susanne Bauer, Dirk Jan Leo Oliviè, Simon Wilson, Lise Lotte Sørensen, Peter L. Langen, Sabine Eckhardt, Lena Höglund-Isaksson, Zbigniew Klimont, Florian Lindl, Lori Bruhwiler

Publikasjonsdetaljer

Publikasjonstype: Vitenskapelig artikkel

Tidsskrift: Geophysical Research Letters

Volum: 53

Artikkelnummer: e2025GL118967

Utgave: 1

Sider: 1-9

Sammendrag:

Abstract Methane is a powerful greenhouse gas with a shorter lifetime than carbon dioxide (CO 2 ), making it an important target for near‐term climate action. The Global Methane Pledge (GMP) aims to cut anthropogenic methane emissions by 30% from 2020 levels by 2030. Using an Earth system model with interactive CH 4 sources and sinks, we assess the Pledge\'s impact through 2050. Results show that current GMP commitments deliver only a 10% cut by 2030—well below the target. Only the maximum technically feasible reduction (MTFR) pathway can achieve the 30% goal. By 2050, current GMP commitments lowers methane concentrations by 3% relative to 2025, while MTFR achieves 8%. Both pathways slow warming slightly, avoiding about 0.1°C of global temperature rise, with the Arctic seeing the greatest benefits (up to 2°C less warming). Without wider participation, the GMP with current signatories will fall short of its targets and Paris Agreement goals.

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