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The effectiveness of membrane systems for the separation of anolyte and catholyte in a lab-scale copper electrowinning cell based on reactive electrodialysis

机译:基于反应性电渗析的膜系统在实验室规模的铜电解沉积池中分离阳极电解液和阴极电解液的有效性

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摘要

A study has been carried out to establish the effectiveness of various membrane systems for the separation of anolyte (aqueous FeSO_4 + H_2SO_4) and catholyte (aqueous CuSO_4 + H_2SO_4) in a lab-scale copper electrowinning cell based on reactive electrodialysis. With a single anion membrane, there was a small but significant unwanted transport of both copper and iron through the membrane. Separation effectiveness increased by increasing the number of membranes, but so did the cell voltage, which implies a higher energy cost. For the most effective system (2 type B membranes), the unwanted transport rates were 4 X 10~(-4) mol h~(-1) m~(-2) for Cu and 17 X 10~(-4) mol h~(-1) m~(-2) for Fe. The corresponding cell voltage was 0.774 V. The difference in the transport rates for Fe and Cu may be explained by the ion transport mechanisms in the studied systems.
机译:已经进行了研究,以建立基于反应性电渗析的实验室规模的铜电解沉积池中的各种膜系统,用于分离阳极电解液(FeSO_4 + H_2SO_4水溶液)和阴极电解液(CuSO_4 + H_2SO_4水溶液)的有效性。对于单个阴离子膜,铜和铁通过该膜的迁移量很小但很明显。分离效率通过增加膜的数量而增加,但是电池电压也增加了,这意味着更高的能源成本。对于最有效的系统(2个B型膜),铜的不希望有的传输速率为4 X 10〜(-4)mol h〜(-1)m〜(-2),Cu为17 X 10〜(-4)mol Fe的h〜(-1)m〜(-2)相应的电池电压为0.774V。Fe和Cu的传输速率之差可以通过所研究系统中的离子传输机理来解释。

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