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基于胆红素氧化酶的硅胶大孔刚性催化剂用于在线染料降解。

Bilirubin oxidase-based silica macrocellular robust catalyst for on line dyes degradation.

机构信息

CNRS, Univ. Bordeaux, CRPP, UMR5031, 115 Avenue Albert Schweitzer, F-33600, Pessac, France.

Univ. Lille, CNRS, Centrale Lille, ENSCL, Univ. Artois, UMR 8181 - UCCS - Unité de Catalyse et Chimie du Solide, F-59000, Lille, France.

出版信息

Enzyme Microb Technol. 2019 Jan;120:77-83. doi: 10.1016/j.enzmictec.2018.10.004. Epub 2018 Oct 11.

DOI:10.1016/j.enzmictec.2018.10.004
PMID:30396402
Abstract

We present a new heterogeneous biocatalyst based on the grafting of Bilirubin Oxidase from Bacillus pumilus into macrocellular Si(HIPE) materials dedicated to water treatment. Due to the host intrinsic high porosity and monolithic character, on-line catalytic process is reached. We thus used this biocatalyst toward uni-axial flux decolorizations of Congo Red and Remazol Brilliant Blue (RBBR) at two different pH (4 and 8.2), both in presence or absence of redox mediator. In absence of redox mediators, 40% decolorization efficiency was reached within 24 h at pH 4 for Congo Red and 80% for RBBR at pH 8.2 in 24 h. In presence of 10μM ABTS, it respectively attained 100% efficiency after 2h and 12h. We have also demonstrated that non-toxic species were generated upon dyes decolorization. These results show that unlike laccases, this new biocatalyst exhibits excellent decolorization properties over a wide range of pH. Beyond, this enzymatic-based heterogeneous catalyst can be reused during two months being simply stored at room temperature while maintaining its decolorization efficiency. This study shows that this biocatalyst is a promising and robust candidate toward wastewater treatments, both in acidic and alkaline conditions where in the latter efficient decolorization strategies were still missing.

摘要

我们提出了一种基于枯草芽孢杆菌胆红素氧化酶接枝到专用于水处理的大孔 Si(HIPE)材料的新型异质生物催化剂。由于宿主固有的高孔隙率和整体特性,实现了在线催化过程。因此,我们将这种生物催化剂用于刚果红和雷马素亮蓝(RBBR)在两种不同 pH 值(4 和 8.2)下的单轴通量褪色,同时存在或不存在氧化还原介体。在不存在氧化还原介体的情况下,在 pH 4 下刚果红 24 小时内达到 40%的褪色效率,在 pH 8.2 下 RBBR 24 小时内达到 80%的褪色效率。在 10μM ABTS 的存在下,分别在 2 小时和 12 小时后达到 100%的效率。我们还证明了在染料褪色过程中产生了无毒物质。这些结果表明,与漆酶不同,这种新型生物催化剂在很宽的 pH 范围内表现出优异的褪色性能。此外,这种基于酶的异相催化剂可以在室温下简单储存两个月而不损失其褪色效率,从而可以重复使用。这项研究表明,这种生物催化剂是一种有前途的、稳健的废水处理候选物,适用于酸性和碱性条件,而后者仍然缺乏有效的褪色策略。

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