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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Separation of cobalt(II) from nickel(II) by a hybrid liquid membrane-electrodialysis process using anion exchange carriers
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Separation of cobalt(II) from nickel(II) by a hybrid liquid membrane-electrodialysis process using anion exchange carriers

机译:通过使用阴离子交换载体的混合液膜电渗析工艺从镍(II)中分离钴(II)

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摘要

Cobalt and nickel are widely used in various branches of industry, are usually present together in industrial and waste solutions and have similar physical and chemical properties; therefore, the separation of the metals is an important practical problem. A hybrid process based on the bulk liquid membrane is proposed as a novel method for the selective separation of cobalt(II) from nickel(II). The process includes the transport of cobalt(II) anionic chlorocomplexes from 3 to 6 mol/L HCl solutions through the liquid membranes containing tri-n-octylamine or trialkylbenzylammonium chloride in 1,2-dichloroethane during galvanostatic electrodialysis. A possibility of cobalt(II) transfer into dilute solutions of sulfuric, hydrochloric, nitric and perchloric adds accompanied by an effective separation from nickel(II) is demonstrated. Effects of the main electrodialysis parameters as well as of the composition of the liquid membranes, feed and strip aqueous solutions on the rate and selectivity of the cobalt(II) transport are studied, and optimum conditions are determined. It is shown that the rate of cobalt(II) transport increases with the increase in current density, hydrochloric acid and cobalt(II) initial concentration in the feed solution. The selectivity of the metal separation increases as the cobalt(II) or nickel(II) concentration in the initial mixture increases. (C) 2015 Elsevier B.V. All rights reserved.
机译:钴和镍广泛用于各个行业,通常同时存在于工业和废物溶液中,并且具有相似的物理和化学性质;因此,金属的分离是重要的实际问题。提出了一种基于体液膜的混合工艺,作为从镍(II)中选择性分离钴(II)的新方法。该方法包括在恒电流电渗析过程中,将钴(II)阴离子氯配合物从3至6 mol / L HCl溶液通过包含三正辛胺或三烷基苄基氯化铵的1,2-二氯乙烷溶液的液膜运输。证明了钴(II​​)可能转移到硫酸,盐酸,硝酸和高氯酸添加物的稀溶液中,并与镍(II)有效分离的可能性。研究了主要电渗析参数以及液膜,进料和汽提水溶液的组成对钴(II)传输速率和选择性的影响,并确定了最佳条件。结果表明,随着进料溶液中电流密度,盐酸和钴(II)初始浓度的增加,钴(II)的传输速率增加。金属分离的选择性随着初始混合物中钴(II)或镍(II)浓度的增加而增加。 (C)2015 Elsevier B.V.保留所有权利。

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