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通过海藻酸钠-多巴胺/聚乙二醇固定化漆酶水凝胶的构建及其对印染废水的高效降解。

Construction of immobilized laccase hydrogels via sodium alginate-dopamine/polyethylene glycol and its efficient degradation of dyeing wastewater.

机构信息

Jiangsu Engineering Technology Research Centre of Functional Textiles, Jiangnan University, Wuxi 214122, China.

Jiangsu Engineering Technology Research Centre of Functional Textiles, Jiangnan University, Wuxi 214122, China; Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 1):134929. doi: 10.1016/j.ijbiomac.2024.134929. Epub 2024 Aug 22.

DOI:10.1016/j.ijbiomac.2024.134929
PMID:39179078
Abstract

Laccases with highly catalytic properties have been widely used in developing green applications for water remediation. However, the poor stability and low reutilization rate of free laccase make it difficult to be applied practically. Hence, in this study, an immobilized laccase was prepared using dopamine (DA) functionalized sodium alginate (SA)/polyethylene glycol (PEG) composite hydrogels to realize the recyclability of the laccase. The SA/PEG composite hydrogels, as the protective carrier for laccase, exhibited excellent catalytic stability in various interfering environments. After 30 days, Lac@SA-PDA/PEG beads could remain 70.23 % of the initial activity, as the residual activity of free laccase was only 12.35 %. When free laccase and Lac@SA-PDA/PEG beads were used for decolorization of Reactive Blue 19 (RB-19,100 mg/L), the degradation rate of Lac@SA-PDA/PEG is 6.88 times higher than free laccase. More importantly, the SA-PDA/PEG composite hydrogel exhibited a high reutilization rate, which after six cycles, Lac@SA-PDA/PEG beads retained 90.23 % of its initial activity. Besides, the degradation effect of Lac@SA-PDA/PEG on different dyes was analyzed. In addition, the conjectured degradation pathways of RB-19 by laccase were analyzed. The work showed that immobilized laccase has tremendous potential for the treatment of dyestuff wastewater.

摘要

具有高催化性能的漆酶已被广泛应用于开发水修复的绿色应用。然而,游离漆酶的稳定性差和再利用率低使其难以实际应用。因此,在本研究中,使用多巴胺(DA)功能化的海藻酸钠(SA)/聚乙二醇(PEG)复合水凝胶制备固定化漆酶,以实现漆酶的可回收性。作为漆酶的保护载体,SA/PEG 复合水凝胶在各种干扰环境中表现出优异的催化稳定性。30 天后,Lac@SA-PDA/PEG 珠仍保留初始活性的 70.23%,而游离漆酶的剩余活性仅为 12.35%。当游离漆酶和 Lac@SA-PDA/PEG 珠用于还原蓝 19(RB-19,100mg/L)的脱色时,Lac@SA-PDA/PEG 的降解速率比游离漆酶高 6.88 倍。更重要的是,SA-PDA/PEG 复合水凝胶具有较高的重复利用率,经过六次循环后,Lac@SA-PDA/PEG 珠保留了其初始活性的 90.23%。此外,还分析了 Lac@SA-PDA/PEG 对不同染料的降解效果。此外,还分析了漆酶对 RB-19 的推测降解途径。这项工作表明,固定化漆酶在处理染料废水方面具有巨大的潜力。

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