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Identifying water recycling strategy using multivariate statistical analysis for high-tech industries in Taiwan

机译:利用多元统计分析确定台湾高科技产业的水循环策略

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Multivariate statistical techniques of cluster analysis (CA) and discriminant analysis (DA) were applied in this study for the evaluation of water resource management strategies in high-tech industries, on the basis of the existing water use related data of 70 participating plants in Taiwan since 2011. The existing water use data were collected and transformed into detailed water balance charts, and the water use performance at individual plants was evaluated by three indices, namely the "processing water recovery rate", the "plant water recovery rate", and the "plant discharge rate". Results from discriminant analysis showed that increase in the ratios of effluent recycled to pure water system (EPWR) and recycled to secondary water system (ESWR) had positive effects on achieving higher water use performance. On the other hand, process water consumption and ESWR were influential factors in discriminating samples with lower water use performance. The results also confirmed the finding from synergistic effect that improvement on both EPWR and ESWR contributed to the highest water use performance. Opportunities for water recycling in high-tech industries appears to be technically feasible, future efforts could usefully be undertaken to implement further investment on water-use efficiency and novel treatment techniques, and investigation on various reuse purposes. (C) 2014 Elsevier B.V. All rights reserved.
机译:本研究基于台湾70家参与工厂的用水相关数据,运用聚类分析(CA)和判别分析(DA)的多元统计技术评估高科技行业的水资源管理策略。自2011年以来。收集现有的用水数据并将其转换为详细的水平衡图,并通过“加工用水回收率”,“植物用水回收率”和“加工用水回收率”三个指标评估各个工厂的用水绩效。 “工厂排放率”。判别分析的结果表明,再循环至纯水系统(EPWR)和再循环至二级水系统(ESWR)的废水比率对实现更高的用水效率具有积极作用。另一方面,过程用水量和ESWR是区分用水性能较低的样品的影响因素。该结果还证实了从协同效应中发现,对EPWR和ESWR的改善均有助于实现最高的用水性能。高科技产业中的水循环利用的机会在技术上似乎是可行的,未来可以进行有益的努力以对水的利用效率和新颖的处理技术进行进一步的投资,并对各种再利用目的进行调查。 (C)2014 Elsevier B.V.保留所有权利。

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