环境科学
灌溉
气候变化
缺水
水资源管理
节约用水
土地利用、土地利用的变化和林业
水文学(农业)
农场用水
水资源
农业
土地利用
温室气体
灌溉统计
全球变化
水循环
农用地
用水
全球变暖
全球变暖的影响
大气(单位)
稀缺
用水量
大气科学
地下水位
亏缺灌溉
供水
蓄水
作者
Yi Yao,Wim Thiery,Agnès Ducharne,Benjamin I. Cook,Anxin Ding,Steven De Hertog,Petra Sieber,Kjetil Schanke,Pedro F. Arboleda-Obando,Jeanne Colin,Maya Costantini,Bertrand Decharme,David M. Lawrence,Peter Lawrence,L. Ruby Leung,Min‐Hui Lo,N. Devaraju,Ren-Jie Wu,Tian Zhou,Jonas Jägermeyr
出处
期刊:
[Springer Science+Business Media]
日期:2025-11-05
卷期号:3 (12): 1424-1435
被引量:11
标识
DOI:10.1038/s44221-025-00529-1
摘要
Abstract Agricultural irrigation has experienced rapid expansion, and its growing freshwater consumption is potentially exacerbating water scarcity issues. Previous studies predominantly relied on observations or land-only simulations, often neglecting land–atmosphere interactions or failing to capture long-term evolution. We therefore analyse the effects of historical irrigation expansion on water fluxes and resources using seven Earth system models. Here we show that irrigation expansion in many regions substantially decreases the net water influx from the atmosphere to land, further aggravating the existing drying trends caused by climate change. For example, irrigation expansion changed the trend of this net influx from −0.664 ( ± 0.283) to −1.461 ( ± 0.261) mm yr −2 in South Asia after 1960. Consequently, the local terrestrial water storage depletion rate is substantially enlarged by irrigation expansion (for example, from −2.559 ( ± 0.094) to −16.008 ( ± 0.557) mm yr −1 ). Our results attribute the land water loss to irrigation expansion and climate change, calling for immediate solutions to tackle the negative trends.
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