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首页> 外文期刊>Journal of Applied Electrochemistry >Electrochemical remediation of metal-bearing wastewaters Part II: Corrosion-based inhibition of copper removal by iron (III)
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Electrochemical remediation of metal-bearing wastewaters Part II: Corrosion-based inhibition of copper removal by iron (III)

机译:含金属废水的电化学修复第二部分:腐蚀对铁去除铜的抑制作用(III)

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摘要

A hitherto undocumented inhibition to electrodeposition of Cu(II) from dilute (<200 mg L~(-1)) wastewaters was traced to the presence of Fe(III) at concentrations comparable to those of copper ion. This inhibition was found to differ from heterogeneous side-reduction of Fe(III) that is well known to decrease faradaic efficiency for copper removal. Based on bench-scale electrolysis as well as cyclic voltammetry studies, an inhibition mechanism was qualitatively identified that involved copper corrosion by Fe(III). This corrosion process was found to be strongly favoured by sluggish heterogeneous reduction of Fe(III) at carbon electrode materials. One procedure shown to substantially improve copper removal from solutions demonstrating corrosion inhibition was alkali precipitation of iron. Real mine drainage wastewater that was pretreated in this manner was consistently depleted of copper by flow-through electrolysis to levels below 50 μg L~(-1).
机译:迄今未发现的对稀(<200 mg L〜(-1))废水中的Cu(II)电沉积的抑制作用可追溯到Fe(III)的存在,其浓度与铜离子相当。发现这种抑制作用不同于众所周知的Fe(III)的异质侧还原,降低了去除铜的法拉第效率。基于台式电解和循环伏安法研究,定性地确定了一种抑制机制,该机制涉及Fe(III)对铜的腐蚀。人们发现,碳电极材料上的Fe(III)缓慢异质还原非常有利于这种腐蚀过程。可以证明从本质上改善了从铜的溶液中去除铜的过程,证明了腐蚀抑制作用,这是铁的碱沉淀。以这种方式预处理的实际矿山排水废水通过流通式电解不断地将铜消耗至低于50μgL〜(-1)的水平。

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