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首页> 外文期刊>Fresenius Environmental Bulletin >GREY WATER FOOTPRINT OF CROPS AND CROP-DERIVED PRODUCTS: ANALYSIS OF CALCULATION METHOD
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GREY WATER FOOTPRINT OF CROPS AND CROP-DERIVED PRODUCTS: ANALYSIS OF CALCULATION METHOD

机译:作物和作物衍生产品的灰色水足迹:计算方法分析

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摘要

The explosive increase in world population, along with the fast socio-economic development, have led to an increased water demand; the impact of global water resource consumption is mapped with the "water footprint", which is the total volume of freshwater used to produce the goods and services consumed. "Virtual water" is the volume of water used to produce a commodity, and is classified as green, blue and grey. "Blue water" refers to the volume of fresh water consumed along the supply chain of a product; "green" quantifies the volume of precipitation stored as soil moisture, and "grey" measures the volume of water required to dilute pollutants associated with a product's production chain to meet ambient water quality standards. When applied to agricultural crops, the calculation of grey water requires the following quantities: fertilizer application rate, crop yield, fertilizer leaching fraction, maximum allowed pollutant concentration in natural waters, and in the water where pollution is rejected. Much of this data is unavailable and researchers seem to proceed with a series of assumptions to calculate grey water figures. In this article, the common assumptions are reviewed, and prominence is given to weaknesses and the sensitivity of the calculation method.
机译:世界人口的爆炸性增长以及快速的社会经济发展导致对水的需求增加;全球水资源消耗的影响与“水足迹”相对应,“水足迹”是用于生产所消费的商品和服务的淡水总量。 “虚拟水”是用于生产商品的水量,分为绿色,蓝色和灰色。 “蓝色水”是指产品供应链中消耗的淡水量; “绿色”表示存储为土壤水分的降水量,“灰色”表示稀释与产品生产链相关的污染物以满足环境水质标准所需的水量。当用于农作物时,灰水的计算需要以下数量:化肥施用量,作物产量,化肥浸出率,天然水和拒绝污染的水中允许的最大污染物浓度。许多数据不可用,研究人员似乎在进行一系列假设以计算灰水数字。在本文中,回顾了常见的假设,并突出了计算方法的弱点和敏感性。

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