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产甲烷条件下有机微量污染物的共代谢酶转化。

Cometabolic Enzymatic Transformation of Organic Micropollutants under Methanogenic Conditions.

机构信息

Department of Chemical Engineering, Institute of Technology, Universidade de Santiago de Compostela , Campus Vida, 15782 Santiago de Compostela, Spain.

出版信息

Environ Sci Technol. 2017 Mar 7;51(5):2963-2971. doi: 10.1021/acs.est.6b05549. Epub 2017 Feb 23.

DOI:10.1021/acs.est.6b05549
PMID:28198617
Abstract

Anaerobic digestion (AD) has been shown to have the biological potential to decrease concentrations of several organic micropollutants (OMPs) in sewage sludge. However, the mechanisms and factors behind these biotransformations, which are essential for elucidating the possible transformation products and to foster the complete removal of OMPs via operational strategies, remain unclear. Therefore, this study investigated the transformation mechanisms of 20 OMPs during the methanogenic step of AD with a focus on the role of acetate kinase (AK), which is a key enzyme in methane production. The results from lab-scale methanogenic reactors showed that this step accounts for much of the reported OMP biotransformation in AD. Furthermore, enzymatic assays confirmed that AK transforms galaxolide, naproxen, nonylphenol, octylphenol, ibuprofen, diclofenac, bisphenol A, and triclosan. Except for galaxolide, for which further studies are required to refine conclusions, the OMP's chemical structure was a determinant for AK action because only compounds that contain a carboxyl or hydroxyl group and have moderate steric hindrance were enzymatically transformed, likely by phosphorylation. For these seven compounds, this enzymatic mechanism accounts for 10-90% of the measured methanogenic biotransformation, suggesting that other active enzymes of the AD process are also involved in OMP biotransformation.

摘要

厌氧消化(AD)已被证明具有降低污水污泥中几种有机微量污染物(OMPs)浓度的生物学潜力。然而,对于这些生物转化背后的机制和因素,这些机制和因素对于阐明可能的转化产物以及通过操作策略促进 OMPs 的完全去除至关重要,目前仍不清楚。因此,本研究在 AD 的产甲烷步骤中调查了 20 种 OMPs 的转化机制,重点研究了乙酰激酶(AK)的作用,AK 是甲烷生成中的关键酶。来自实验室规模的产甲烷反应器的结果表明,这一步骤占 AD 中报道的 OMP 生物转化的很大一部分。此外,酶促测定证实 AK 转化了加洛沙星、萘普生、壬基酚、辛基酚、布洛芬、双氯芬酸、双酚 A 和三氯生。除了加洛沙星,需要进一步研究来完善结论,因为只有含有羧基或羟基且空间位阻适中的化合物才能被 AK 酶促转化,可能通过磷酸化。对于这七种化合物,这种酶促机制占测量的产甲烷生物转化的 10-90%,表明 AD 过程中的其他活性酶也参与了 OMP 的生物转化。

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