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Performance of tetramethoxyphenyl porphyrin cobalt(II) (CoTMPP) based stainless steel cathode in the electricigenic permeable reactive barrier for groundwater organic contamination remediation

机译:基于四甲氧基苯基卟啉钴(II)(CoTMPP)的不锈钢阴极在电渗性反应性屏障中用于地下水有机污染物修复的性能

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摘要

An electricigenic permeable reactive barrier (EPRB) technology was brought forward for remediation of organic-contaminated groundwater, with a benefit that it overcame the limitations of electron acceptor addition in other groundwater remediation methods. To investigate performances of constructions and materials used in EPRB system, several kinds of reactors were designed and prepared in laboratory. Stainless steel wires, a kind of nontoxic, inexpensive and conductive material, were used as basic material of electrode. In order to improve cathodic oxygen reduction capability, a cathode based on tetramethoxyphenyl porphyrin cobalt (II) (CoTMPP) was prepared and studied in this paper. Results showed that a high catalytic activity for oxygen reduction was exhibited by the CoTMPP based cathode, with an electricity generation 3 times as high as that of the naked stainless steel cathode. Some evidence indicated that by loading on the surface of stainless steel wires and heat-treated under anaerobic conditions, epoxy resin, with its curing agents, might have got a catalytic capability for oxygen reduction.
机译:提出了一种电渗渗透反应屏障(EPRB)技术来修复有机污染的地下水,其优点是克服了其他地下水修复方法中添加电子受体的局限性。为了研究EPRB系统中使用的结构和材料的性能,在实验室中设计并制备了几种反应器。不锈钢线是一种无毒,廉价,导电的材料,被用作电极的基础材料。为了提高阴极氧还原能力,制备并研究了基于四甲氧基苯基卟啉钴(II)(CoTMPP)的阴极。结果表明,基于CoTMPP的阴极具有很高的氧还原催化活性,其发电量是裸不锈钢阴极的三倍。一些证据表明,通过将其装载在不锈钢丝表面并在厌氧条件下进行热处理,环氧树脂及其固化剂可能具有催化还原氧的能力。

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