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Soybean peroxidase-catalysed removal of benzidines from water

机译:大豆过氧化物酶催化从水中除去苯并萘

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摘要

Crude soybean peroxidase (SBP), isolated from soybean seed coats (hulls) at unusually low concentrations, catalyses the oxidative polymerisation of hazardous aqueous benzidine and its 3,3′-dichloro, 3,3′-dimethyl and 3,3′-dimethoxy derivatives in the presence of hydrogen peroxide. The optimum operating conditions for oxidation of 0.10mM benzidine were investigated. At pH 5, the hydrogen peroxide-to-substrate concentration ratio was 1.5 and the minimum SBP concentration required to achieve at least 95% conversion of the benzidine in synthetic wastewater was 0.43mU/ml. Progress curves were established for the conversion of the four substrates, and apparent first-order rate constants were derived. Enzyme-catalysed polymerisation with SBP and subsequent removal of the polymeric products generated can provide an alternative means to conventional methods for treating many aromatic wastewater pollutants, including the benzidines studied here.
机译:粗大豆过氧化物酶(SBP),在异常低浓度下与大豆种子涂层(船体)分离,催化危险苯并丁胺的氧化聚合及其3,3'-二氯甲烷,3,3'-二甲基和3,3'-二甲氧基的氧化聚合在过氧化氢存在下的衍生物。研究了氧化0.10mM苯并丁胺的最佳操作条件。在pH5中,过氧化氢 - 底物浓度比为1.5,并且在合成废水中达到苯并胺的至少95%转化物所需的最小SBP浓度为0.43mu / ml。建立了用于转化四个基质的进展曲线,衍生出表观一阶率常数。用SBP酶催化的聚合并随后去除产生的聚合物产物可以为治疗许多芳族废水污染物的常规方法提供替代方法,包括在这里研究的苯并曲线。

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