气候变化
环境科学
全球温度
产量(工程)
全球变暖
大气科学
气候学
海洋学
物理
热力学
地质学
作者
Bing Liu,Senthold Asseng,Christoph Müller,Frank Ewert,Joshua Elliott,David B. Lobell,Pierre Martre,Alex C. Ruane,Daniel Wallach,James W. Jones,Cynthia Rosenzweig,Pramod Aggarwal,Phillip D. Alderman,Jakarat Anothai,Bruno Basso,Christian Biernath,Davide Cammarano,Andrew J. Challinor,Delphine Deryng,Giacomo De Sanctis
摘要
The potential impact of global temperature change on global crop yield has recently been assessed with different methods. Here we show that grid-based and point-based simulations and statistical regressions (from historic records), without deliberate adaptation or CO2 fertilization effects, produce similar estimates of temperature impact on wheat yields at global and national scales. With a 1◦C global temperature increase, global wheat yield is projected to decline between 4.1% and 6.4%. Projected relative temperature impacts from different methods were similar for major wheat-producing countries China, India, USA and France, but less so for Russia. Point-based and grid-based simulations, and to some extent the statistical regressions, were consistent in projecting that warmer regions are likely to suffer more yield loss with increasing temperature than cooler regions. By forming a multi-method ensemble, it was possible to quantify ‘method uncertainty’ in addition to model uncertainty. This significantly improves confidence in estimates of climate impacts on global food security.
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