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Spatial Characteristics and Implications of Grey Water Footprint of Major Food Crops in China

机译:中国主要粮食作物灰水脚印的空间特征及其影响

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摘要

The estimated, effective increase of agricultural fertilizer applied in China by 10.57 Mts from 2006 to 2016 is a crucial factor affecting the water environment. Based on analyzing the nitrate-leaching rate, the nitrogen-fertilizer application rate, and crop yield in wheat and maize key cultivation divisions in China, this paper applied the grey water footprint analytical method to estimate THE grey water footprint and its proportion to total water footprint and analyzed the spatial differences from 2012 to 2016. Results showed that the grey water footprint of wheat was higher in North and Northwest China with an increasing trend, while that of maize was higher in Southwest and Northwest China because of high nitrogen application rates and low yields in these regions. Except for the Southwestern division, wheat’s grey water footprint was about 1.3 times higher than the blue water footprint, while, for maize, it was two to three times higher. When analyzing and planning water demand for crop irrigation, the water required for nonpoint source pollution due to chemical fertilizers should be considered. Focusing blue water (irrigation) alone, while neglecting green water and ignoring grey water footprints, it might lead to overestimation of available agricultural water resources and failure to meet the goals of sustainable use of water resources.
机译:2006年至2016年中国农业肥料的估计有效增加10.57米,是影响水环境的关键因素。基于分析硝酸盐浸出率,氮肥施用率和小麦和玉米关键栽培部门的作物产量,本文应用了灰水占地面积方法来估算灰水占地面积及其与总水的比例占地面积并分析了2012年至2016年的空间差异。结果表明,中国北部和西北地区的灰水脚印越来越高,趋势越来越高,而中国西南和西北部的玉米较高,因为氮施用率高这些地区的低产率。除了西南部师外,小麦的灰水脚印比蓝水占地面积高出1.3倍,而对于玉米,这是2至三倍。在分析和规划作物灌溉需求时,应考虑由于化肥因化肥而导致的非点源污染所需的水。单独聚焦蓝色水(灌溉),同时忽视绿色水,忽略灰水脚印,可能会导致可用的农业资源高估,并未达到可持续利用水资源的目标。

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