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A process for the purification of organochlorine contaminated activated carbon: Sequential solvent purging and reductive dechlorination

机译:纯化有机氯污染的活性炭的方法:顺序溶剂吹扫和还原脱氯

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摘要

A system for the purification of organochlorine contaminated activated carbon is described. The system involves a continuous flow of aqueous ethanol to purge organochlorines from activated carbon. The organochlorine laden solvent is simultaneously treated with zero valent zinc as the bulk electron source, water as the proton source and the electron shuttle cyanocobalamin as a catalyst for reductive dechlorination. The system was characterised by performing batch reactions and extractions before being applied in a continuous flow system. In particular the ratio of water to ethanol in the system needed to be optimised. Water is needed for the reductive dechlorination reaction whilst it is not conducive to the extraction process. An 80% ethanolic solution was found to give optimal reductive dechlorination rates without compromising extraction of organochlorines from activated carbon. Of three electron shuttles evaluated cyanocobalamin was discovered to be the most relevant to the system with respect to reductive dechlorination rates and its ability to avoid absorption to activated carbon.
机译:描述了用于纯化被有机氯污染的活性炭的系统。该系统涉及乙醇水溶液的连续流动,以从活性炭中清除有机氯。同时用零价锌作为本体电子源,水作为质子源以及电子对接氰钴胺素作为还原性脱氯催化剂处理含有机氯的溶剂。该系统的特点是在应用于连续流系统之前先进行间歇反应和萃取。特别地,需要优化系统中水与乙醇的比例。还原性脱氯反应需要水,但不利于萃取过程。发现80%的乙醇溶液可提供最佳的还原脱氯速率,而不会影响从活性炭中萃取有机氯的能力。就还原脱氯速率及其避免吸收活性炭的能力而言,在评估的三个电子航天器中,氰钴胺素与该体系最相关。

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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