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Application Of Multicriteria Decision Analysis To Jar-test Results For Chemicals Selection In The Physical-chemical Treatment Of Textile Wastewater

机译:多准则决策分析法在纺织废水物理化学处理药剂选择的罐试验结果中的应用

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摘要

Jar-test is a well-known tool for chemicals selection for physical-chemical wastewater treatment. Jar-test results show the treatment efficiency in terms of suspended matter and organic matter removal. However, in spite of having all these results, coagulant selection is not an easy task because one coagulant can remove efficiently the suspended solids but at the same time increase the conductivity or increase considerably the sludge production containing chemicals and toxic dyes. This makes the final selection of coagulants very dependent on the relative importance assigned to each measured parameter. In this paper, the use of multicriteria decision analysis (MCDA) is proposed to help on the selection of the coagulant and its concentration in the physical-chemical wastewater treatment, since textile wastewater contains hazardous substances. Therefore, starting from the parameters fixed by the jar-test results, these techniques will allow to weight these parameters, according to the judgements of wastewater experts, and to establish priorities among coagulants. Two well-known MCDA techniques have been used: analytic hierarchic process (AHP) and preference ranking organization method for enrichment evaluations (PROMETHEEs) and their results were compared. The method proposed has been applied to the particular case of textile wastewaters. The results obtained show that MCDA techniques are useful tools to select the chemicals for the physical-technical treatment.
机译:Jar-test是用于物理化学废水处理的化学选择的著名工具。 Jar测试结果显示了悬浮物和有机物去除方面的处理效率。然而,尽管获得了所有这些结果,但凝结剂的选择并不是一件容易的事,因为一种凝结剂可以有效地去除悬浮的固体,但同时却可以提高电导率或显着提高含有化学物质和有毒染料的污泥产量。这使得凝结剂的最终选择非常依赖于分配给每个测量参数的相对重要性。在本文中,由于纺织废水中含有有害物质,因此建议使用多标准决策分析(MCDA)来帮助选择混凝剂及其在物理化学废水处理中的浓度。因此,从罐测试结果确定的参数开始,这些技术将根据废水专家的判断对这些参数进行加权,并确定混凝剂的优先级。使用了两种众所周知的MCDA技术:层次分析法(AHP)和用于富集评估的偏好排序组织方法(PROMETHEEs),并比较了它们的结果。所提出的方法已经应用于纺织废水的特殊情况。获得的结果表明,MCDA技术是选择用于物理技术处理的化学药品的有用工具。

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