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首页> 外文期刊>AIChE Journal >Optimal Design of Single-Contaminant Regeneration Reuse Water Networks with Process Decomposition
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Optimal Design of Single-Contaminant Regeneration Reuse Water Networks with Process Decomposition

机译:具有过程分解的单污染物再生回用水网的优化设计

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摘要

Water network with regeneration schemes (e.g., regeneration reuse, regeneration recycling) can reduce freshwater consumption further than water network merely with direct reuse. Regeneration reuse, compared with regeneration recycling, can additionally avoid unexpected accumulation of contaminants. Owing to these features, process decomposition can help to reduce freshwater usage and wastewater discharge of regeneration reuse water systems and achieve the results, which graphical method delivers. In this article, the effect of decomposition on water-using process and further on regeneration reuse water system is briefly analyzed on the concentration-mass load diagram. Then a superstructure and three sequential mathematical models, which take process decomposition into account, are in turn developed to optimize single contaminant regeneration reuse water systems. By several examples, the reliability of the models is verified. Moreover, several decomposition strategies are summarized to realize the regeneration reuse water network, which attains the targets from graphical method. The results indicate that postregeneration concentration has a major impact on the scheme of process decomposition.
机译:具有再生方案的水网络(例如再生再利用,再生再循环)比仅具有直接再利用的水网络可以进一步减少淡水消耗。与再生回收相比,再生再利用可以避免污染物的意外堆积。由于这些特性,过程分解可以帮助减少再生再利用水系统的淡水使用量和废水排放,并达到图形化方法所提供的结果。在本文中,通过浓度-质量负荷图简要分析了分解对用水过程以及再生水系统的影响。然后,依次开发考虑过程分解的上部结构和三个顺序数学模型,以优化单一污染物再生回用水系统。通过几个例子,验证了模型的可靠性。此外,总结了几种分解策略,以实现再生回用水网,这是通过图形方法达到目标的。结果表明,再生后浓度对工艺分解方案有重大影响。

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