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硅胶体系中协同固定化 Dehalococcoides mccartyi BAV1 和丁酸梭菌对顺式-1,2-二氯乙烯的长期脱氯生成乙烯。

Long-term dechlorination of cis-DCE to ethene with co-immobilized Dehalococcoides mccartyi BAV1 and Clostridium butyricum in silica gel system.

机构信息

Department of Life Sciences, National Central University, Taoyuan 32001, Taiwan.

Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung 80424, Taiwan.

出版信息

J Hazard Mater. 2022 May 15;430:128355. doi: 10.1016/j.jhazmat.2022.128355. Epub 2022 Jan 26.

Abstract

Chloroethenes are common groundwater pollutants, and have been classified as toxic and carcinogenic to humans. The metabolites of chloroethenes, cis-dichloroethene (cis-DCE) and vinyl chloride (VC) commonly accumulate in groundwater due to their recalcitrant reductive dechlorination under anaerobic conditions. Dehalococcoides mccartyi (Dhc) is the key anaerobic bacteria for complete dechlorination of chloroethene, and Clostridium butyricum (C. butyricum) can provide hydrogen for supporting the growth of Dhc. In this study, we co-immobilized Dhc strain BAV1 and C. butyricum in a silica gel to determine the ability of the complete dechlorination of cis-DCE. Our results showed that our immobilized system could protect BAV1 from a high concentration (8 mM) of cis-DCE to carry out complete dechlorination. After the long-term use of our immobilized system, the activity of complete dechlorination was maintained for more than 180 consecutive days. Furthermore, we applied the immobilized system to remediate contaminated groundwater and uncovered the complete dechlorination of cis-DCE into ethene, a non-toxic product, within 28 days. Therefore, this novel co-immobilized system could serve a solution for bioremediation at chloroethene-contaminated sites.

摘要

氯乙烯是常见的地下水污染物,已被归类为对人类有毒和致癌。由于在厌氧条件下具有抗降解性,氯乙烯的代谢物顺式-二氯乙烯(cis-DCE)和氯乙烯(VC)通常在地下水中积累。脱硫孤菌(Dhc)是完全降解氯乙烯的关键厌氧细菌,丁酸梭菌(C. butyricum)可以为 Dhc 的生长提供氢气。在这项研究中,我们将 Dhc 菌株 BAV1 和 C. butyricum 共同固定在硅胶中,以确定完全降解 cis-DCE 的能力。我们的结果表明,我们的固定化系统可以保护 BAV1 免受高浓度(8 mM)cis-DCE 的影响,从而进行完全脱氯。在我们的固定化系统长期使用后,完全脱氯的活性保持了 180 多天。此外,我们将固定化系统应用于受污染地下水的修复,在 28 天内将 cis-DCE 完全脱氯为无毒产物乙烯。因此,这种新型的共固定化系统可为受氯乙烯污染的场地的生物修复提供一种解决方案。

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