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◆ Proceedings of the National Academy of Sciences2026-05-18· Greenhouse gas

Human amplification of climate-induced greenhouse gas emissions from global small water bodies

Xuliang Zhuang, X H Liu, Shengjun Xu, Xu Wang, Aamer Ali Shah, Lei Wang, S S Wu, Cancan Jiang, Zhiyun Ouyang, Shilong Piao

一句话结论

Human activities amplify climate-induced greenhouse gas emissions from small water bodies (SWBs), creating critical but unquantified feedback in the global carbon cycle.

原始摘要(原文)
Human activities amplify climate-induced greenhouse gas emissions from small water bodies (SWBs), creating critical but unquantified feedback in the global carbon cycle. Here, by training machine learning models on 470 field observations and upscaling to a global database of 3.28 million water bodies, we quantify this human amplification, which drives SWBs to emit 84.5 Tg CO 2 y −1 and 11.0 Tg CH 4 y −1 , a disproportionate share of total inland water emissions (15% of CO 2 and 28% of CH 4 ) from only 6% of Earth’s surface area. This amplification is primarily fueled by agricultural nutrient loading and land use intensity, which elevate CH 4 fluxes in agricultural catchments five times higher than those in forested systems. Future projections show this synergy will increase emissions by up to 30% (CO 2 ) and 14% (CH 4 ) by 2100 under SSP5-8.5, whereas sustainable pathways (SSP1-2.6) could mitigate this emission acceleration through nutrient mitigation efforts, a largely neglected feedback process in current climate change assessments.
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Human amplification of climate-induced greenhouse gas emissions from global small water bodies — 科研速览 Science Skim