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Aqueous hybrid liquid membrane process for metal separation Part II. Selectivity of metals separation from wet-process phosphoric acid

机译:用于金属分离的水性混合液膜工艺第二部分。从湿法磷酸中分离金属的选择性

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Selective separations of heavy metal ions from industrial wet-process phosphoric acid (WPA) were studied using an aqueous hybrid liquid membrane (AHLM) system. Polyvinylsulfonic acid (PVSA) aqueous solution was used as a liquid membrane (LM) phase, separated from the feed and strip streams by cation-exchange membranes. Heavy metals, such as cadmium and copper, were successfully recovered from the WPA: average fluxes (in mol/m~2 s) to the strip phase were 3.7 x l0~-7 and 6.7 x l0~-7, respectively, at a Cu/Cd selectivity of 2.7. The transfer of iron and zinc species to the strip phase was below detection levels during the l44 h of the AHLM experiment. Selectivity is not a constant parameter in the AHLM separation of metal ions. The idea of dynamic selectivity and techniques for its determination were introduced. Selectivity can be controlled by adjusting the concentration, volume and flow rate of the circulating bulk LM phase. Such a control of the selectivity is one of the advantages of the AHLM system in comparison with other LMs and Donnan dialysis technologies. A theoretical model has been developed for the simulation of the AHLM transport selectivity. Satisfactory correlation between experimental and simulated data was achieved. Selectivity parameters, needed for the AHLM module design, may be obtained by performing series of experiments with feed, carrier and strip flow rate variations, and of membrane-based extraction. Preliminary optimization of the AHLM module may be achieved by simulation of the feed- and strip-side membrane areas, concentrations and volumes of the bulk LM and strip phases, and flow rates.
机译:使用水性混合液膜(AHLM)系统研究了从工业湿法磷酸(WPA)中选择性分离重金属离子的方法。聚乙烯磺酸(PVSA)水溶液用作液膜(LM)相,通过阳离子交换膜与进料和汽提物流分离。从WPA中成功地回收了重金属,例如镉和铜:到汽提相的平均通量(mol / m〜2 s)(mol / m〜2 s)分别为3.7 x l0〜-7和6.7 x l0〜-7。 Cu / Cd选择性为2.7。在AHLM实验的144小时内,铁和锌物质向带状相的转移低于检测水平。在金属离子的AHLM分离中,选择性不是恒定参数。介绍了动态选择性的概念及其确定方法。选择性可以通过调节循环本体LM相的浓度,体积和流速来控制。与其他LM和Donnan透析技术相比,这种对选择性的控制是AHLM系统的优势之一。已经开发了用于模拟AHLM传输选择性的理论模型。实验数据和模拟数据之间的相关性令人满意。 AHLM模块设计所需的选择性参数可以通过进料,载体和带材流速变化以及基于膜的萃取进行一系列实验来获得。 AHLM模块的初步优化可以通过模拟进料和带材侧膜的面积,LM本体相和带材相的浓度和体积以及流速来实现。

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