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Physico-chemical treatment techniques for wastewater laden with heavy metals

机译:重金属废水的理化处理技术

摘要

This article reviews the technical applicability of various physico-chemical treatments for the removal of heavy metals such as Cd(II), Cr(III), Cr(VI), Cu(II), Ni(II) and Zn(II) from contaminated wastewater. A particular focus is given to chemical precipitation, coagulation-flocculation, flotation, ion exchange and membrane filtration. Their advantages and limitations in application are evaluated. Their operating conditions such as pH, dose required, initial metal concentration and treatment performance are presented. About 124 published studies (1980-2006) are reviewed. It is evident from the survey that ion exchange and membrane filtration are the most frequently studied and widely applied for the treatment of metal-contaminated wastewater. Ion exchange has achieved a complete removal of Cd(II), Cr(III), Cu(II), Ni(II) and Zn(II) with an initial concentration of 100 mg/L, respectively. The results are comparable to that of reverse osmosis (99% of Cd(II) rejection with an initial concentration of 200 mg/L). Lime precipitation has been found as one of the most effective means to treat inorganic effluent with a metal concentration of higher than 1000 mg/L. It is important to note that the overall treatment cost of metal-contaminated water varies, depending on the process employed and the local conditions. In general, the technical applicability, plant simplicity and cost-effectiveness are the key factors in selecting the most suitable treatment for inorganic effluent.
机译:本文综述了各种物理化学处理技术从重金属中去除Cd(II),Cr(III),Cr(VI),Cu(II),Ni(II)和Zn(II)的技术适用性。受污染的废水。特别关注化学沉淀,凝结-絮凝,浮选,离子交换和膜过滤。评估了它们在应用中的优点和局限性。介绍了它们的操作条件,例如pH值,所需剂量,初始金属浓度和处理性能。回顾了约124篇已发表的研究(1980-2006)。从调查中可以明显看出,离子交换和膜过滤是研究最频繁的方法,并广泛用于处理金属污染的废水。离子交换已完全去除了初始浓度分别为100 mg / L的Cd(II),Cr(III),Cu(II),Ni(II)和Zn(II)。结果与反渗透相当(99%的Cd(II)排斥,初始浓度为200 mg / L)。已经发现石灰沉淀是处理金属浓度高于1000 mg / L的无机废水的最有效方法之一。重要的是要注意,受金属污染的水的总处理成本因所采用的工艺和当地条件而异。通常,技术适用性,工厂简便性和成本效益是选择最合适的无机废水处理方法的关键因素。

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