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Mechanistic study of a diazo dye degradation by Soybean Peroxidase

机译:大豆过氧化物酶降解重氮染料的机理研究

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Background Enzyme based remediation of wastewater is emerging as a novel, efficient and environmentally-friendlier approach. However, studies showing detailed mechanisms of enzyme mediated degradation of organic pollutants are not widely published. Results The present report describes a detailed study on the use of Soybean Peroxidase to efficiently degrade Trypan Blue, a diazo dye. In addition to examining various parameters that can affect the dye degradation ability of the enzyme, such as enzyme and H2O2 concentration, reaction pH and temperature, we carried out a detailed mechanistic study of Trypan Blue degradation. HPLC-DAD and LC-MS/MS studies were carried out to confirm dye degradation and analyze the intermediate metabolites and develop a detailed mechanistic dye degradation pathway. Conclusion We report that Soybean peroxidase causes Trypan Blue degradation via symmetrical azo bond cleavage and subsequent radical-initiated ring opening of the metabolites. Interestingly, our results also show that no high molecular weight polymers were produced during the peroxidase-H2O2 mediated degradation of the phenolic Trypan Blue.
机译:背景技术基于酶的废水修复正在作为一种新颖,高效且环境友好的方法出现。但是,显示酶介导的降解有机污染物的详细机理的研究尚未广泛发表。结果本报告描述了使用大豆过氧化物酶有效降解重氮染料台盼蓝的详细研究。除了检查可能影响酶的染料降解能力的各种参数(例如酶和H2O2浓度,反应pH和温度)外,我们还进行了台盼蓝降解的详细机理研究。进行了HPLC-DAD和LC-MS / MS研究,以确认染料降解并分析中间代谢物,并开发出详细的机理性染料降解途径。结论我们报道大豆过氧化物酶通过对称的偶氮键裂解和随后的自由基引发的代谢物开环而导致台盼蓝降解。有趣的是,我们的结果还表明,在过氧化物酶-H2O2介导的酚台盼蓝降解过程中,没有产生高分子量的聚合物。

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