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混合培养系统中2-氟苯胺和3-氟苯胺的好氧降解及微生物群落分析

Aerobic degradation of 2- and 3-fluoroaniline in mixed culture systems and microbial community analysis.

作者信息

Zhao Zhi-Qing, Shen Xiao-Li, Zheng Tu-Cai, Lv Liang, Su Yao, Ghulam Abbas

机构信息

College of Chemical & Material Engineering, Quzhou University, Quzhou, P.R. China.

College of Environment & Resource Sciences, Zhejiang University, Hangzhou, P.R. China.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2020;55(3):305-317. doi: 10.1080/10934529.2019.1688044. Epub 2019 Nov 10.

DOI:10.1080/10934529.2019.1688044
PMID:31707907
Abstract

Among three monofluoroanilines, 2-fluoroaniline (2-FA) and 3-fluoroaniline (3-FA) exhibit relatively poor biodegradability. This work examined their degradation characteristics in a mixed culture system and also analyzed the microorganism community. After acclimation for 58 d and 43 d, the high removal efficiency of 100% of 2-FA and 95.3% of 3-FA was obtained by adding 25 mg L of 2-FA or 3-FA to the two reactors, respectively. In addition, the high defluorination rates of 2-FA and 3-FA were observed to be 87.0% and 89.3%, respectively. The degradation kinetics showed that the maximum specific degradation rates of 2-FA and 3-FA were (21.23 ± 0.91) mg FA (g•VSS·h), and (11.75 ± 0.99) mg FA (g•VSS·h), respectively. PCR-DGGE analysis revealed that the unique bacteria degrading 2-FA were mainly composed of six genera (, , , , , and s), and five genera that degraded 3-FA (, , , and ). Analysis of the key catabolic enzyme activities indicated that the simultaneous hydroxylation and dehalogenation were involved in monooxygenase elimination of 2-FA and conversion of 3-FA to 4-fluorocatechol by dioxygenase, indicating that enriched mixed cultures were effective to metabolize 2-FA or 3-FA by unconventional pathways to prevent the accumulation of toxic metabolites.

摘要

在三种单氟苯胺中,2-氟苯胺(2-FA)和3-氟苯胺(3-FA)的生物降解性相对较差。本研究考察了它们在混合培养系统中的降解特性,并分析了微生物群落。分别在两个反应器中添加25mg/L的2-FA或3-FA,经过58天和43天的驯化后,2-FA的去除率达到100%,3-FA的去除率达到95.3%。此外,观察到2-FA和3-FA的高脱氟率分别为87.0%和89.3%。降解动力学表明,2-FA和3-FA的最大比降解速率分别为(21.23±0.91)mg FA/(g•VSS·h)和(11.75±0.99)mg FA/(g•VSS·h)。PCR-DGGE分析表明,降解2-FA的独特细菌主要由六个属(、、、、、和s)组成,降解3-FA的有五个属(、、、和)。关键分解代谢酶活性分析表明,2-FA的单加氧酶消除涉及同时羟基化和脱卤,3-FA通过双加氧酶转化为4-氟儿茶酚,这表明富集的混合培养物通过非常规途径有效代谢2-FA或3-FA,以防止有毒代谢物的积累。

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