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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Green coconut fiber: a novel carrier for the immobilization of commercial laccase by covalent attachment for textile dyes decolourization
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Green coconut fiber: a novel carrier for the immobilization of commercial laccase by covalent attachment for textile dyes decolourization

机译:绿色椰子纤维:​​一种新型的载体,可通过共价键固定来固定商业漆酶,从而使纺织品染料脱色

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摘要

Commercial laccase formulation was immobilized on modified green coconut fiber silanized with 3-glycidoxypropyltrimethoxysilane, aiming to achieve a cheap and effective biocatalyst. Two different strategies were followed: one point (pH 7.0) and multipoint (pH 10.0) covalent attachment. The influence of immobilization time on enzymatic activity and the final reduction with sodium borohydride were evaluated. The highest activities were achieved after 2 h of contact time in all situations. Commercial laccase immobilized at pH 7.0 was found to have higher activity and higher affinity to the substrate. However, the immobilization by multipoint covalent attachment improved the biocatalyst thermal stability at 50 A degrees C, when compared to soluble enzyme and to the immobilized enzyme at pH 7.0. The Schiff's bases reduction by sodium borohydride, in spite of causing a decrease in enzyme activity, showed to contribute to the increase of operational stability through bonds stabilization. Finally, these immobilized enzymes showed high efficiency in the continuous decolourization of reactive textile dyes. In the first cycle, the decolourization is mainly due to dyes adsorption on the support. However, when working in successive cycles, the adsorption capacity of the support decreases (saturation) and the enzymatic action increases, indicating the applicability of this biocatalyst for textile wastewater treatment.
机译:将商业漆酶制剂固定在用3-环氧丙氧基丙基三甲氧基硅烷硅烷化的改性绿色椰子纤维上,目的是获得一种廉价而有效的生物催化剂。遵循两种不同的策略:一个点(pH 7.0)和多点(pH 10.0)共价连接。评估了固定时间对酶活性和硼氢化钠最终还原的影响。在所有情况下,经过2小时的接触时间后,活动达到了最高水平。发现固定在pH 7.0的商业漆酶具有更高的活性和对底物的更高的亲和力。但是,与可溶性酶和固定化酶在pH 7.0下相比,通过多点共价连接固定化可提高生物催化剂在50 A时的热稳定性。尽管引起酶活性降低,但硼氢化钠对希夫碱的还原作用仍可通过键稳定作用而有助于提高操作稳定性。最后,这些固定化酶在活性纺织品染料的连续脱色中显示出高效率。在第一个循环中,脱色主要是由于染料吸附在载体上。然而,当在连续的循环中工作时,载体的吸附能力降低(饱和)并且酶促作用增强,表明该生物催化剂适用于纺织废水处理。

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