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通过超滤络合作用从废水或受污染土壤的洗涤水中去除金属离子。

Metal ions removal from wastewater or washing water from contaminated soil by ultrafiltration-complexation.

作者信息

Molinari Raffaele, Gallo Saverio, Argurio Pietro

机构信息

Department of Chemical and Materials Engineering, University of Calabria, Via P. Bucci, Cubo 45/A, Rende (CS) I-87030, Italy.

出版信息

Water Res. 2004 Feb;38(3):593-600. doi: 10.1016/j.watres.2003.10.024.

Abstract

In the present paper a process for removal of ions from wastewater or from washing water of contaminated soil by using the weakly basic water-soluble polymer polyethylenimine (PEI) as chelating agent and the Cu(2+) ion as model in combination with an ultrafiltration process was investigated. The complexing agent was preliminarily tested to establish the best operative conditions of the process. Next, ultrafiltration tests by using five different membranes were realised to check membrane performance like flux and rejection. Finally, the possibility for recovering and recycling the polymer was tested in order to obtain an economically sustainable process. Obtained results showed that complexation conditions depends on pH: indeed, at a pH>6 PEI-Cu(2+) complexes are formed, while at pH<3 the decomplexation reaction takes place. Saturation condition is 0.333 mg Cu(2+)/mg PEI, meaning a ratio PEI/Cu(2+)=3(w/w). UF tests showed good results using the PAN 40 kDa membrane reaching an average copper concentration in the permeate of 2 mg/l and a flux of 135.4 and 156.5l/h.m(2) at 2 and 4 bar, respectively. Metal rejection, permeate flow rate, and possibility to regenerating and recycling the polymer makes the polymer-assisted ultrafiltration process (PAUF) very interesting for metal ion removal from waters.

摘要

在本文中,研究了一种使用弱碱性水溶性聚合物聚乙烯亚胺(PEI)作为螯合剂,以Cu(2+)离子为模型,结合超滤过程从废水或受污染土壤的洗涤水中去除离子的工艺。对络合剂进行了初步测试,以确定该工艺的最佳操作条件。接下来,使用五种不同的膜进行超滤测试,以检查膜的性能,如通量和截留率。最后,测试了聚合物回收和循环利用的可能性,以获得经济上可持续的工艺。所得结果表明,络合条件取决于pH值:实际上,在pH>6时会形成PEI-Cu(2+)络合物,而在pH<3时会发生解络合反应。饱和条件为0.333 mg Cu(2+)/mg PEI,即PEI/Cu(2+)=3(重量比)。超滤测试表明,使用PAN 40 kDa膜效果良好,在2 bar和4 bar压力下,透过液中的平均铜浓度分别为2 mg/l,通量分别为135.4和156.5l/h·m(2)。金属截留率、透过液流速以及聚合物再生和循环利用的可能性使得聚合物辅助超滤工艺(PAUF)在从水中去除金属离子方面非常有吸引力。

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