Immobilization of Laccase in β-Cyclodextrin Composite Hydrogel for Efficient Degradation of Dye Pollutants

Catalysts Pub Date : 2024-07-24 DOI:10.3390/catal14080473
Hong Zhang, Zhi Wang, Fengxi Li, Lei Wang, Bo Ren
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Abstract

A stable and efficient biocatalyst was prepared by encapsulating Trametes versicolor laccase using an acrylic acid-grafted β-cyclodextrin hydrogel (Lac-CD-PAA). Scanning electron microscopy and nitrogen adsorption-desorption experiments showed that there were regularly distributed channels in the spongy Lac-CD-PAA. In addition, a large number of mesopores and macropores existed in the wall of the hydrogel lamellae. This network structure reduced the diffusion resistance of the hydrogel to the target substrate. The relative activity of the resulting Lac-CD-PAA could be maintained at 35.8% after six cycles of use. Lac-CD-PAA exhibited higher thermal and chemical stability compared to free laccase. The negative charge on the surface of Lac-CD-PAA gives it the ability to pretreat cationic dyes. In six consecutive methylene blue decolorization tests, Lac-CD-PAA decolorized better than free laccase. The results showed that the prepared β-cyclodextrin-based composite hydrogel was a good carrier for laccase.
将漆酶固定在β-环糊精复合水凝胶中以高效降解染料污染物
通过使用丙烯酸接枝β-环糊精水凝胶(Lac-CD-PAA)包封Trametes versicolor漆酶,制备了一种稳定高效的生物催化剂。扫描电子显微镜和氮吸附-解吸实验表明,海绵状 Lac-CD-PAA 中存在规则分布的通道。此外,水凝胶层壁中还存在大量的中孔和大孔。这种网络结构降低了水凝胶对目标基质的扩散阻力。六次循环使用后,所得 Lac-CD-PAA 的相对活性可保持在 35.8%。与游离漆酶相比,Lac-CD-PAA 具有更高的热稳定性和化学稳定性。Lac-CD-PAA 表面的负电荷使其具有预处理阳离子染料的能力。在连续六次亚甲基蓝脱色试验中,Lac-CD-PAA 的脱色效果均优于游离漆酶。结果表明,所制备的β-环糊精基复合水凝胶是一种很好的漆酶载体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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