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An approach to develop grey water footprint accounting

机译:开发灰色水足迹核算的一种方法

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Grey water footprint (GWF) is an indicator that represents the water quality issues embedded in producing a product in form of freshwater volume. This indicator converts the pollution loads to the equivalent volume of freshwater with respect to the assimilative capacity of the receiving water body. This study develops the method of accounting multiple-pollutant GWF with ecological perspective. For demonstrating the developed methodology, original samples were taken from trout farms in the Kabkian River, south-western Iran, and the pollution exports are calculated in first step. In the second step, river is modelled for determining the local-oriented water quality standards. Finally, total multiple-pollutant GWF is determined. Here, equations are developed for considering dissolved oxygen (DO) in accounting GWF due to the critical role of this parameter in aquaculture and fish production. In addition, a state-of-the-art coefficient is introduced to alter the formulation for including the environmental issues of receiving water body in accounting GWF. This can provide a framework for considering Eutrophication, saline intrusions, minimum environmental flow and DO deficit of river, in addition to the risks of micropollutants in water footprint assessments. Nevertheless, the results of case study show that GWF is nitrogen-related for trout farming. It equals 195 m(3)/ton but it may fluctuate depending on the local development strategies and their consequences on the environmental issues. Consequently, the proposed methodology can broaden the prospect of the application of GWF and enhance the role of environmental capacity in this indicator.
机译:灰水足迹(GWF)是代表淡水量生产产品中嵌入的水质问题的指标。相对于接收水体的吸收能力,该指标将污染负荷转换为当量的淡水。本研究从生态学角度提出了一种计算多污染物GWF的方法。为了证明所开发的方法,从伊朗西南部Kabkian河的鳟鱼养殖场中提取了原始样本,并第一步计算了污染物的出口。第二步,对河流进行建模,以确定当地的水质标准。最后,确定了总的多污染物GWF。在此,由于该参数在水产养殖和鱼类生产中的关键作用,因此开发了用于考虑GWF的溶解氧(DO)的方程式。此外,引入了最新的系数来更改公式,以将在会计GWF中包含接收水体的环境问题包括在内。除了在水足迹评估中使用微量污染物的风险外,这还可以提供一个框架来考虑富营养化,盐分入侵,最小环境流量和河流的溶解氧缺乏。然而,案例研究的结果表明,GWF与鳟鱼养殖相关。它等于195 m(3)/吨,但可能会有所波动,具体取决于当地的发展策略及其对环境问题的影响。因此,提出的方法可以拓宽全球自然基金会的应用前景,并增强环境能力在该指标中的作用。

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