氮负荷对长SRT活性污泥法处理城市污水微生物群落结构及脱氮的影响

IF 8.7 Q1 Environmental Science
Quan Yuan , Yongjuan Du , Song Chen , Yikan Zhao , Yuting Han , Yuzhu Jiao , Yingxue Sun
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引用次数: 0

摘要

生物营养物去除过程是控制城市污水处理和再生厂水环境中氮磷的关键。城市污水的处理效率受到进水水质波动的影响。本研究考察了N负荷对长污泥滞留时间活性污泥去除率和微生物群落结构的影响。结果表明,出水NH4+-N和NO2−-N浓度均低于0.5 mg/L, TN去除率分别为79.77%和65.80%。脱氢酶活性、比吸氧速率、比硝化速率和比反硝化速率随氮负荷的增加而增加。在门水平上,两个系统中最占优势的细菌隶属于变形菌门,分别占60.65%和48.62%。在属水平上,不动杆菌(Acinetobacter)、Thauera和Zoogloea在反硝化作用中起重要作用。氨氧化菌属和亚硝酸盐氧化菌属分别为亚硝酸单胞菌属(r-战略家)和硝基螺旋菌属(k -战略家)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of N loading on microbial community structure and nitrogen removal of an activated sludge process with long SRT for municipal wastewater treatment
Biological nutrient removal process is pivotal in controlling nitrogen and phosphorus from municipal wastewater treatment and reclamation plants in the water environment. The efficiency of municipal wastewater treatment is affected by the fluctuation of influent quality. In this study, the impact of N loading on the removal efficiency and the microbial community structure of activated sludge with long sludge retention time were investigated. The results showed that the effluent NH4+-N and NO2-N concentration were lower than 0.5 mg/L, and the TN removal efficiencies were 79.77 % and 65.80 %, respectively. The dehydrogenase activity, specific oxygen uptake rate, specific nitrification rate, and specific denitrification rate increased as the N loading increasing. At the phylum level, the most dominant bacterial was affiliated with Proteobacteria in the two systems, accounting for 60.65 % and 48.62 %, respectively. At the genus level, Acinetobacter, Thauera, and Zoogloea played significant roles in denitrification. The ammonia oxidation bacteria and nitrite-oxidizing bacteria were of the genus Nitrosomonas (r-strategist) and Nitrospira (K-strategist).
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来源期刊
Water Cycle
Water Cycle Engineering-Engineering (miscellaneous)
CiteScore
9.20
自引率
0.00%
发文量
20
审稿时长
45 days
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