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Mechanistic study of degradation of basic violet 3 by Citrus limon peroxidase and phytotoxicity assessment of its degradation products

机译:柑橘柠檬过氧化物酶降解碱性紫3的机理及其降解产物的植物毒性评估

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The current study evaluates the potential of partially purified Citrus limon (lemon) peroxidase in the decolorization of a common synthetic triphenylmethane class dye; basic violet 3. Some important process parameters were optimized by OFAT methodology. Along with this, the effect of metal ions and mediators on the process of decolorization was also evaluated. The maximum decolorization (96.34%) of 7.5 mg/L dye was achieved at 42 U/mL of enzyme dose, 0.25 mM of H2O2 and 0.5 mM of p-coumaric acid. The pH, temperature and time for maximum decolorization were recorded to be 4.5, 45 degrees C, and 5 min, respectively. The presence of metal ions did not exert any drastic influence on the process of decolorization, ensuring it suitable for industrial applications. The optimization and interactive effect of pH, enzyme dose, and dye concentration for maximum decolorization was also investigated by RSM through central composite design matrix. UPLC/MS analyses were performed to identify the degradation products. As a result a mechanistic pathway for degradation of basic violet 3 was proposed. It was also found that degraded products of basic violet 3 showed less phytotoxicity than the dye itself, using Zea mays as test organism. (C) 2014 Elsevier B.V. All rights reserved.
机译:目前的研究评估了部分纯化的柑橘柠檬(柠檬)过氧化物酶在普通合成三苯甲烷类染料脱色中的潜力。碱性紫3.通过OFAT方法对一些重要的工艺参数进行了优化。同时,还评估了金属离子和介体对脱色过程的影响。在42 U / mL的酶剂量,0.25 mM的H2O2和0.5 mM的对香豆酸的条件下,可实现7.5 mg / L染料的最大脱色(96.34%)。记录最大脱色的pH,温度和时间分别为4.5、45℃和5分钟。金属离子的存在对脱色过程没有任何剧烈的影响,从而确保了其适用于工业应用。通过中心复合设计矩阵,RSM还研究了pH,酶剂量和染料浓度对最大脱色的优化和相互作用。进行UPLC / MS分析以鉴定降解产物。结果,提出了降解碱性紫3的机理途径。还发现,使用玉米作为测试有机体,碱性紫3的降解产物显示出比染料本身更低的植物毒性。 (C)2014 Elsevier B.V.保留所有权利。

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