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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Growing water scarcity in agriculture: Future challenge to global water security
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Growing water scarcity in agriculture: Future challenge to global water security

机译:农业缺水问题日益严重:全球水安全的未来挑战

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摘要

As water is an essential component of the planetary life support system, water deficiency constitutes an insecurity that has to be overcome in the process of socio-economic development. The paper analyses the origin and appearance of blue as well as green water scarcity on different scales and with particular focus on risks to food production and water supply for municipalities and industry. It analyses water scarcity originating from both climatic phenomena and water partitioning disturbances on different scales: crop field, country level and the global circulation system. The implications by 2050 of water scarcity in terms of potential country-level water deficits for food self-reliance are analysed, and the compensating dependence on trade in virtual water for almost half the world population is noted. Planetary-scale conditions for sustainability of the global water circulation system are discussed in terms of a recently proposed Planetary Freshwater Boundary, and the consumptive water use reserve left to be shared between water requirements for global food production, fuelwood production and carbon sequestration is discussed. Finally, the importance of a paradigm shift in the further conceptual development of water security is stressed, so that adequate attention is paid to water's fundamental role in both natural and socio-economic systems.
机译:由于水是行星生命维持系统的重要组成部分,缺水构成了社会经济发展过程中必须克服的一种不安全感。本文分析了不同规模的蓝色和绿色水资源短缺的根源和外观,并特别关注市政当局和工业的食品生产和供水风险。它分析了由于气候现象和不同分区尺度的水分配扰动引起的缺水情况:作物田地,国家层面和全球循环系统。分析了到2050年缺水对国家粮食自给自足的潜在国家级缺水的影响,并指出了几乎一半的世界人口对虚拟水贸易的补偿性依赖。根据最近提出的行星淡水边界讨论了全球水循环系统可持续性的行星尺度条件,并讨论了全球粮食生产,薪材生产和碳固存的水需求之间共享的消耗性用水储备。最后,强调了范式转变在水安全的进一步概念发展中的重要性,因此要充分注意水在自然和社会经济系统中的基本作用。

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