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欧盟 27 国农业用水驱动因素

Drivers of Water Use in the Agricultural Sector of the European Union 27.

机构信息

Department of Agricultural and Consumer Economics, Regional Economics Applications Laboratory, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

National Renewable Energy Laboratory, Golden, Colorado 80401, United States.

出版信息

Environ Sci Technol. 2020 Aug 4;54(15):9191-9199. doi: 10.1021/acs.est.9b06662. Epub 2020 Jul 17.

Abstract

Population growth and the uncertain hazards that accompany climate change have put increasing pressure on the management and sustainability of water. It has a direct impact on agriculture and its domestic and international supply chain linkages. As one of the largest agricultural producers in the world, the European Union (EU) is particularly sensitive to changes in water availability. Therefore, we perform a structural decomposition analysis based on the recently released EXIOBASE 3 database to examine in depth how changes in water input coefficients, in final demand and in technology have affected changes in water use across crops. Crop production consumes 99% of the direct water in agriculture. Our results show that the largest EU crop producers have experienced an increase in water use that is mostly driven by changes in technology. On the other hand, several Mediterranean countries, where water scarcity has been a problem for years, have decreased their water consumption mostly thanks to an improvement in their water intensity. Results by crop are consistent with those at the aggregated level except for vegetables of which water use changes have been primarily driven by changes in final demand and water intensity.

摘要

人口增长和伴随气候变化而来的不确定危害给水资源的管理和可持续性带来了越来越大的压力。它直接影响到农业及其国内外供应链的联系。作为世界上最大的农业生产国之一,欧盟(EU)对水资源供应的变化尤为敏感。因此,我们基于最近发布的 EXIOBASE 3 数据库进行了结构分解分析,深入研究了水投入系数、最终需求和技术的变化如何影响农作物用水的变化。农作物生产消耗了农业中 99%的直接用水。我们的研究结果表明,最大的欧盟农作物生产国的用水量增加,主要是由技术变化驱动的。另一方面,一些多年来一直面临水资源短缺问题的地中海国家,由于水强度的提高,用水量有所减少。按作物划分的结果与汇总水平的结果一致,但蔬菜的用水变化主要是由最终需求和水强度的变化驱动的。

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