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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Decolorization potential of some reactive dyes with crude laccase and laccase-mediated system
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Decolorization potential of some reactive dyes with crude laccase and laccase-mediated system

机译:粗漆酶和漆酶介导体系对某些活性染料的脱色潜力

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In this study, decolorization of dyestuffs, such as Reactive Red 198, Rem Blue RR, Dylon Navy 17, Rem Red RR, and Rem Yellow RR was studied using laccase and laccase-mediated system. The laccases are known to have an important potential for remediation of pollutants. Among these dyestuffs, decolorization of Rem Blue RR and Dylon Navy 17 was performed with crude laccase under optimized conditions. Vanillin was selected as laccase mediator after screening six different compounds with Rem Yellow RR, Reactive Red 198, and Rem Red RR as substrates. However, Rem Yellow RR was not decolorized by either laccase or laccase-mediated system. It is observed that the culture supernatant contained high laccase activity after treatment with catalase that was responsible for the decolorization. Besides, culture supernatant with high laccase activity as enzyme source was treated with catalase; in this way, the hypothesis that laccase was the enzyme responsible for decolorization was supported. The Rem Blue RR was decolorized with 64.84% under the optimum conditions and Dylon Navy 17 with 75.43% with crude laccase. However, using the laccase and vanillin, the decolorization of Reactive Red 198 and Rem Red RR was found to be 62% and 68%, respectively. Our study demonstrated that the decolorization abilities of laccase and/or laccase mediator systems were based on the types of mediator, the dye structure, and the standard experimental conditions. Also, the electrochemical behaviors of some samples were studied. The redox potentials of these samples were determined using cyclic voltammetry on glassy carbon electrode in phosphate buffer (pH 6) solution.
机译:在这项研究中,使用漆酶和漆酶介导的系统研究了染料的脱色,如活性红198,Rem蓝色RR,D​​ylon海军蓝17,Rem Red RR和Rem Yellow RR。已知漆酶具有修复污染物的重要潜力。在这些染料中,Rem Blue RR和Dylon Navy 17的脱色是在最佳条件下用粗漆酶进行的。在以Rem Yellow RR,Reactive Red 198和Rem Red RR为底物筛选了六种不同的化合物后,选择香草醛作为漆酶介体。但是,Rem Yellow RR既不被漆酶也不能被漆酶介导的系统脱色。观察到在用引起脱色的过氧化氢酶处理后,培养物上清液具有高的漆酶活性。此外,用过氧化氢酶处理具有高漆酶活性的培养上清作为酶源。以这种方式,支持了漆酶是引起脱色的酶的假设。在最佳条件下,Rem Blue RR的脱色率为64.84%,Dylon Navy 17的色漆酶为75.43%。但是,使用漆酶和香兰素,发现活性红198和Rem Red RR的脱色分别为62%和68%。我们的研究表明,漆酶和/或漆酶介体体系的脱色能力取决于介体的类型,染料结构和标准实验条件。此外,还研究了一些样品的电化学行为。使用循环伏安法在磷酸盐缓冲液(pH 6)溶液中的玻璃碳电极上测定这些样品的氧化还原电势。

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