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首页> 外文期刊>International Journal of Process Systems Engineering >Optimal design of a hybrid air stripping/pervapouration system for removal of multicomponent VOCs from groundwater
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Optimal design of a hybrid air stripping/pervapouration system for removal of multicomponent VOCs from groundwater

机译:用于去除地下水中多组分挥发性有机化合物的混合气提/汽化系统的优化设计

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摘要

Groundwater streams contaminated with volatile organic compounds (VOCs) require proper treatment to comply with drinking requirement restrictions. Air stripping and pervapouration are two common treatment technologies for groundwater contaminated with VOCs. An attractive alternative for VOC treatment may be to combine these two technologies together within the same circuit since this offers potential advantages over the operation of either of these systems alone. The current study focuses on the important issue of determining in an objective and systematic manner how to combine these two technologies to meet the drinking water requirements in the most cost-effective manner. Superstructure optimisation is the framework for hybridisation investigated in this study to determine the optimal treatment network and operating conditions for the treatment units to achieve desired water qualities. Two case studies illustrating the proposed approach are presented and the sensitivity of their optimal solutions to perturbations in certain operating conditions is discussed.
机译:需要对经过挥发性有机化合物(VOC)污染的地下水进行适当的处​​理,以符合饮用要求的限制。空气汽提和渗透是用于处理被VOC污染的地下水的两种常用处理技术。 VOC处理的一种有吸引力的替代方法可能是将这两种技术在同一电路中组合在一起,因为与单独使用这两种系统相比,它具有潜在的优势。当前的研究集中在以客观和系统的方式确定如何结合这两种技术以最经济有效的方式满足饮用水需求这一重要问题。上层结构优化是本研究中研究的杂交框架,以确定最佳处理网络和处理单元的操作条件,以实现所需的水质。提出了两个案例研究,说明了所提出的方法,并讨论了在某些操作条件下其最优解对扰动的敏感性。

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