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在双酚A存在下,漆酶介导的双氯芬酸和氟芬那酸转化增强及酶膜反应器测试

Enhanced laccase-mediated transformation of diclofenac and flufenamic acid in the presence of bisphenol A and testing of an enzymatic membrane reactor.

作者信息

Hahn Veronika, Meister Mareike, Hussy Stephan, Cordes Arno, Enderle Günther, Saningong Akuma, Schauer Frieder

机构信息

Institute of Microbiology, Ernst-Moritz-Arndt-University Greifswald, Friedrich-Ludwig-Jahn-Str. 15, 17487, Greifswald, Germany.

Leibniz Institute for Plasma Science and Technology (INP Greifswald e.V.), Felix-Hausdorff-Str. 2, 17489, Greifswald, Germany.

出版信息

AMB Express. 2018 Feb 24;8(1):28. doi: 10.1186/s13568-018-0546-y.

Abstract

The inadequate removal of pharmaceuticals and other micropollutants in municipal wastewater treatment plants, as evidenced by their detection of these substances in the aquatic environment has led to the need for sustainable remediation strategies. Laccases possess a number of advantages including a broad substrate spectrum. To identify promoting or inhibitory effects of reaction partners in the remediation processes we tested not only single compounds-as has been described in most studies-but also mixtures of pollutants. The reaction of diclofenac (DCF) and flufenamic acid (FA), mediated by Trametes versicolor laccase resulted in the formation of products, which were more hydrophilic than the respective reactant (reactant concentration of 0.1 mM; laccase activity 0.5 U/ml). Analyses (HPLC, LC/MS) showed that the product 1a and 1b for DCF and FA, respectively, to be a para-benzoquinone imine derivative. The formation of 1a was enhanced by the addition of bisphenol A (BPA). After 6 days 97% more product was formed in the mixture of DCF and BPA compared with DCF tested alone. Product 1a was also detected in experiments with micropollutant-supplemented secondary effluent. Within 24 h 67% and 100% of DCF and BPA were transformed, respectively (25 U/ml). Experiments with a membrane reactor (volume 10 l; phosphate buffer, pH 7) were in good agreement with the results of the laboratory scale experiments (50 ml). EC-values were also determined. The data support the use of laccases for the removal or detoxification of recalcitrant pollutants. Thus, the enzyme laccase may be a component of an additional environmentally friendly process for the treatment stage of wastewater remediation.

摘要

城市污水处理厂对药物和其他微污染物的去除不充分,这已通过在水生环境中检测到这些物质得到证明,因此需要可持续的修复策略。漆酶具有许多优点,包括底物谱广泛。为了确定修复过程中反应伙伴的促进或抑制作用,我们不仅测试了大多数研究中描述的单一化合物,还测试了污染物混合物。由云芝漆酶介导的双氯芬酸(DCF)和氟芬那酸(FA)的反应产生了比各自反应物更亲水的产物(反应物浓度为0.1 mM;漆酶活性为0.5 U/ml)。分析(HPLC、LC/MS)表明,DCF和FA的产物分别为1a和1b,是对苯醌亚胺衍生物。双酚A(BPA)的添加增强了1a的形成。6天后,与单独测试的DCF相比,DCF和BPA混合物中形成的产物多97%。在添加微污染物的二级出水实验中也检测到了产物1a。在24小时内,DCF和BPA分别有67%和100%被转化(25 U/ml)。膜反应器(体积10升;磷酸盐缓冲液,pH 7)的实验结果与实验室规模实验(50毫升)的结果非常一致。还测定了EC值。这些数据支持使用漆酶去除或解毒难降解污染物。因此,漆酶可能是废水修复处理阶段另一种环境友好工艺的组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1003/6890904/02a30a3202c9/13568_2018_546_Fig1_HTML.jpg

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