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Chronopotentiometry Applied to the Determination of Copper Transport Properties Through a Cation-Exchange Membrane

机译:计时电位法通过阳离子交换膜测定铜的传输性质

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Over the past several decades, electrodialysis membranes have been employed for the removal of metals from galvanizing industry effluents. However, for its technical viability, it is useful to know some properties of the system to avoid, for example, precipitation of inorganic salts, destruction of the membrane and an increase in the energy consumption. The scope of the present study is to use chronopotentiometry to determine limiting current densities, transition times and resistances of the cationic membrane HDX 100 using a synthesized solution of the galvanizing industry effluent prepared with copper sulfate and sulfuric acid in different concentrations: 0.1, 0.5 and 1.0 g/L of Cu~(+2). The current-voltage and chronopotentiometric curves obtained have clearly defined regions and it was verified that the Cu~(+2)concentration causes a significant increase in the limiting current densities and in transition times. However, a high decrease in resistance occurred because at the highest concentrations, it is more difficult to reach the zero concentration value at the membrane surface. Besides, the pH increase causes a significant decrease in the limiting current density and in the transport number, but a slight increase in the resistance due to the presence of hydrogen. The results obtained confirm that the chronopotentiometry method is a valuable tool to determine membrane properties.
机译:在过去的几十年中,电渗析膜已用于从镀锌工业废水中去除金属。然而,出于其技术可行性,了解该系统的某些性能以避免诸如无机盐的沉淀,膜的破坏和能量消耗的增加是有用的。本研究的范围是使用计时电位法确定镀锌工业废水的合成溶液的极限电流密度,跃迁时间和阳离子膜HDX 100的电阻,该溶液由不同浓度的硫酸铜和硫酸制备:0.1、0.5和1.0 g / L的Cu〜(+2)。所获得的电流-电压和计时电位曲线具有明确定义的区域,并且证实了Cu〜(+2)浓度会引起极限电流密度和跃迁时间的显着增加。但是,由于在最高浓度下更难以在膜表面达到零浓度值,所以电阻的降低很大。此外,pH值的增加导致极限电流密度和传输数的显着降低,但是由于氢的存在,电阻略有增加。获得的结果证实计时电位法是确定膜特性的有价值的工具。

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