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不同 Cu(II)浓度对序批式反应器性能、微生物酶活性和微生物群落的长期影响。

Long-term effect of different Cu(II) concentrations on the performance, microbial enzymatic activity and microbial community of sequencing batch reactor.

机构信息

Key Lab of Marine Environment and Ecology, Ministry of Education, Ocean University of China, Qingdao, 266100, China; College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China.

Key Lab of Marine Environment and Ecology, Ministry of Education, Ocean University of China, Qingdao, 266100, China.

出版信息

Environ Pollut. 2019 Dec;255(Pt 1):113216. doi: 10.1016/j.envpol.2019.113216. Epub 2019 Sep 9.

Abstract

The performance, microbial community and enzymatic activity of sequencing batch reactors (SBRs) were investigated under 75-day exposure of different Cu(II) concentrations. Cu(II) at 0-5 mg/L had no distinct impact on the chemical oxygen demand (COD) and nitrogen removal, oxygen-uptake rate (OUR), nitrification and denitrification rate, and microbial enzymatic activity. The inhibitory effects of Cu(II) at 10 and 30 mg/L on the nitrogen removal rate, OUR, and microbial enzymatic activity of SBR increased with an increment in operation time due to the Cu(II) biotoxicity and the Cu(II) accumulation in activated sludge. The changes of microbial reactive oxygen species production, lactate dehydrogenase release, catalase activity and superoxide dismutase activity demonstrated that Cu(II) at 10 and 30 mg/L broke the equilibrium between the oxidation and antioxidation processes in microbial cells and also damaged the cytomembrance integrity, which could affect the COD and nitrogen removal performance and change normal microbial cell morphology. The Cu(II) in the influent could be removed by the microbial absorption and accumulated in the activated sludge under long-term exposure. The microbial community displayed some distinct changes from 0 to 30 mg/L Cu(II). In contrast with 0 mg/L Cu(II), Nitrosomonas, Nitrospira and some denitrifying bacteria obviously decreased in relative abundance under long-term exposure of 10 and 30 mg/L Cu(II).

摘要

在 75 天不同 Cu(II)浓度暴露下,研究了序批式反应器 (SBR) 的性能、微生物群落和酶活性。0-5mg/L 的 Cu(II) 对化学需氧量 (COD) 和氮去除、耗氧速率 (OUR)、硝化和反硝化速率以及微生物酶活性没有明显影响。由于 Cu(II) 的生物毒性和活性污泥中 Cu(II) 的积累,10 和 30mg/L 的 Cu(II) 对 SBR 的氮去除率、OUR 和微生物酶活性的抑制作用随着运行时间的增加而增加。微生物活性氧产生、乳酸脱氢酶释放、过氧化氢酶活性和超氧化物歧化酶活性的变化表明,10 和 30mg/L 的 Cu(II) 打破了微生物细胞中氧化和抗氧化过程之间的平衡,破坏了细胞质膜的完整性,从而影响 COD 和氮去除性能并改变正常的微生物细胞形态。在长期暴露下,进水中的 Cu(II) 可被微生物吸收并在活性污泥中积累。在长期暴露于 10 和 30mg/L Cu(II) 时,微生物群落显示出一些明显的变化。与 0mg/L Cu(II) 相比,Nitrosomonas、Nitrospira 和一些反硝化细菌的相对丰度明显降低。

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