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首页> 外文期刊>Journal of Environmental Health Science and Engineering >Decolorization of two synthetic dyes using the purified laccase of Paraconiothyrium variabile immobilized on porous silica beads
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Decolorization of two synthetic dyes using the purified laccase of Paraconiothyrium variabile immobilized on porous silica beads

机译:使用固定在多孔二氧化硅微珠上的对乙酰氨基甲酸酯变体的纯化漆酶对两种合成染料进行脱色

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Background Decolorization of hazardous synthetic dyes using laccases in both free and immobilized form has gained attention during the last decades. The present study was designed to prepare immobilized laccase (purified from Paraconiothyrium variabile) on porous silica beads followed by evaluation of both free and immobilized laccases for decolorization of two synthetic dyes of Acid Blue 25 and Acid Orange 7. Effects of laccase concentration, pH and temperature alteration, and presence of 1-hydroxybenzotriazole (HBT) as laccase mediator on decolorization pattern were also studied. In addition, the kinetic parameters (Km and Vmax) of the free and immobilized laccases for each synthetic dye were calculated. Results Immobilized laccase represented higher temperature and pH stability compare to free one. 39% and 35% of Acid Blue 25 and Acid Orange 7 was decolorized, respectively after 65 min incubation in presence of the free laccase. In the case of immobilized laccase decolorization percent was found to be 76% and 64% for Acid Blue 25 and Acid Orange 7, respectively at the same time. Increasing of laccase activity enhanced decolorization percent using free and immobilized laccases. Relative decolorization of both applied dyes was increased after treatment by laccase-HBT system. After nine cycles of decolorization by immobilized laccase, 26% and 31% of relative activity were lost in the case of Acid Blue 25 and Acid Orange 7, respectively. Conclusions To sum up, the present investigation introduced the immobilized laccase of P. variabile on porous beads as an efficient biocatalyst for decolorization of synthetic dyes.
机译:背景技术在过去的几十年中,使用游离和固定形式的漆酶对危险的合成染料进行脱色已经引起了人们的注意。本研究的目的是在多孔二氧化硅微珠上制备固定化漆酶(从变异对虾泛菌中提纯),然后评估游离和固定化漆酶对两种酸性蓝25和酸性橙7合成染料的脱色。还研究了温度变化以及在脱色模式下1-羟基苯并三唑(HBT)作为漆酶介体的存在。另外,计算了每种合成染料的游离和固定漆酶的动力学参数(Km和Vmax)。结果固定的漆酶与游离的漆酶相比具有较高的温度和pH稳定性。在游离漆酶存在下孵育65分钟后,分别使39%和35%的酸性蓝25和酸性橙7脱色。在固定的漆酶的情况下,发现酸性蓝25和酸性橙7的脱色百分比分别为76%和64%。使用游离的和固定的漆酶,漆酶活性的增加提高了脱色率。漆酶-HBT系统处理后,两种染料的相对脱色都增加了。经过固定化漆酶的九次脱色循环后,在酸性蓝25和酸性橙7的情况下,相对活性分别损失了26%和31%。结论综上所述,本研究介绍了在多孔珠粒上固定的变异毕赤酵母漆酶作为合成染料脱色的有效生物催化剂。

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