Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Intensified Positive Arctic–Methane Feedback under IPCC Climate Scenarios in the 21st Century

作者:Yihui Wang, Liyuan He, Jianzhao Liu, Kyle A. Arndt, Jorge L. Mazza Rodrigues, Donatella Zona, David A. Lipson, Walter C. Oechel, Daniel Ricciuto, Stan D. Wullschleger, Xiaofeng Xu · 发表于:Ecosystem Health and Sustainability · 年份:2024 · DOI:10.34133/ehs.0185 · 被引用次数:10 · 研究领域:Climate change and permafrost、Atmospheric and Environmental Gas Dynamics、Cryospheric studies and observations

The positive Arctic–methane (CH 4 ) feedback forms when more CH 4 is released from the Arctic tundra to warm the climate, further stimulating the Arctic to emit CH 4 . This study utilized the CLM-Microbe model to project CH 4 emissions across five distinct Arctic tundra ecosystems on the Alaska North Slope, considering three Shared Socioeconomic Pathway (SSP) scenarios using climate data from three climate models from 2016 to 2100. Employing a hyper-resolution of 5 m × 5 m within 40,000 m 2 domains accounted for the Arctic tundra’s high spatial heterogeneity; three sites were near Utqiaġvik (US-Beo, US-Bes, and US-Brw), with one each in Atqasuk (US-Atq) and Ivotuk (US-Ivo). Simulated CH 4 emissions substantially increased by a factor of 5.3 to 7.5 under the SSP5–8.5 scenario compared to the SSP1–2.6 and SSP2–4.5 scenarios. The projected CH 4 emissions exhibited a stronger response to rising temperature under the SSP5–8.5 scenario than under the SSP1–2.6 and SSP2–4.5 scenarios, primarily due to strong temperature dependence and the enhanced precipitation-induced expansion of anoxic conditions that promoted methanogenesis. The CH 4 transport via ebullition and plant-mediated transport is projected to increase under all three SSP scenarios, and ebullition dominated CH 4 transport by 2100 across five sites. Projected CH 4 emissions varied in temperature sensitivity, with a Q 10 range of 2.7 to 60.9 under SSP1–2.6, 3.8 to 17.6 under SSP2–4.5, and 5.7 to 17.2 under SSP5–8.5. Compar...