反硝化细菌
缺氧水域
磷
生物反应器
强化生物除磷
微生物种群生物学
硝化作用
无氧运动
反硝化
环境化学
营养物
废水
污水处理
化学
制浆造纸工业
活性污泥
细菌
环境工程
氮气
生物
环境科学
生态学
有机化学
生理学
遗传学
工程类
作者
Kun Wang,Chuanting Zhou,Hua Zhou,Ming Jiang,Guang Chen,Cong Wang,Zhenjian Zhang,Xiaodan Zhao,Lu-Man Jiang,Zhen Zhou
标识
DOI:10.1016/j.biortech.2023.128757
摘要
A comparative study was conducted for the anaerobic/anoxic/aerobic (AAO) process and its two upgrading processes, five-stage Bardenpho and AAO coupling moving bed bioreactors (AAO + MBBR), using long-term operation data of six full-scale wastewater treatment plants. The three processes all had good COD and phosphorus removal performance. The reinforcing effects of carriers on nitrification were moderate at full-scale applications, while the Bardenpho was advantageous in nitrogen removal. The AAO + MBBR and Bardenpho processes both had higher microbial richness and diversity than the AAO. The AAO + MBBR favored bacteria to degrade complex organics (Ottowia and Mycobacterium) and to form biofilms (Novosphingobium), and preferentially enriched denitrifying phosphorus-accumulating bacteria (DPB) (norank_o__Run-SP154) with the highest anoxic to aerobic phosphorus uptake rates of 65.3 % - 83.9 %. The Bardenpho enriched bacteria tolerant to varied environments (Norank_f__Blastocatellaceae, norank_o__Saccharimonadales, and norank_o__SBR103), and was more suitable for the upgrading of the AAO because of its excellent pollutant removal performance and flexible operation mode.
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