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On the use of graphical method to determine the targets of single-contaminant regeneration recycling water systems

机译:关于使用图形方法确定单一污染物再生循环水系统的目标

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摘要

Water system integration with regeneration recycling can reduce freshwater consumption and wastewater discharge to the maximum extent. In this paper, by analyzing the limiting composite curve of a single-contaminant water system, a method is proposed to construct the optimal water supply line for regeneration recycling. Accordingly the targets for regeneration recycling water systems are obtained. The targets in sequence are the minimum freshwater consumption (the minimum wastewater discharge), the minimum regenerated water flowrate, and the optimal regeneration concentration. The post-regeneration concentration is taken to be fixed in the sequential targeting procedure. The interactions of these targets are analyzed, and formulas for calculating these targets are proposed. The results show that for a single-contaminant regeneration recycling water system, the minimum freshwater consumption is determined by the shape of the limiting composite curve below the post-regeneration concentration. The optimal regeneration concentration is defined as the minimum regeneration concentration at the minimum freshwater consumption and the corresponding minimum regenerated water flowrate. The minimum regenerated water flowrate and the optimal regeneration concentration are both related to the geometrical features of the limiting composite curve of the water-using system and to the post-regeneration concentration. The optimal regeneration concentration has no direct relationship with the pinch concentration. (c) 2007 Elsevier Ltd. All rights reserved.
机译:将水系统与再生回收相结合可以最大程度地减少淡水消耗和废水排放。本文通过分析单污染物水系统的极限合成曲线,提出了一种构造再生再生最优供水管线的方法。因此,获得了再生循环水系统的目标。依次的目标是最小的淡水消耗量(最小的废水排放量),最小的再生水流量和最佳的再生浓度。再生后浓度在顺序靶向过程中被固定。分析了这些目标之间的相互作用,并提出了计算这些目标的公式。结果表明,对于单污染物再生循环水系统,最小淡水消耗量取决于再生后浓度以下的极限复合曲线的形状。最佳再生浓度定义为在最小淡水消耗下的最小再生浓度和相应的最小再生水流量。最小再生水流量和最佳再生浓度都与用水系统的极限复合曲线的几何特征以及再生后浓度有关。最佳再生浓度与收缩浓度没有直接关系。 (c)2007 Elsevier Ltd.保留所有权利。

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