热带假丝酵母
活性污泥
磷
氮气
化学
强化生物除磷
碳纤维
生物量(生态学)
活性炭
微生物
环境化学
微生物学
食品科学
生物化学
环境工程
污水处理
生物
细菌
酵母
有机化学
环境科学
吸附
生态学
材料科学
复合材料
复合数
遗传学
作者
Yuzhe He,Zhaohong Song,Xiaoqi Dong,Qihang Zheng,Xingxing Peng,Xiaoshan Jia
标识
DOI:10.1016/j.biortech.2022.126820
摘要
A new Candida tropicalis that simultaneously remove nitrogen and phosphorus, and degrade organic matters was isolated. Three continuous stirred tank reactors inoculated with C. tropicalis, activated sludge, and their co-existing system in aerobic condition were operated for 150 days. Results demonstrated that the inoculation of C. tropicalis in the co-existing system remarkably improved the carbon, nitrogen, and phosphorus removal efficiencies. The co-existing system had increased carbon, nitrogen, and phosphorus removal efficiencies (92%, 73%, and 63%, respectively); decreased biomass (reduced from 1200 mg/L to 500 mg/L); and C. tropicalis as the dominant strain. The relative abundance of traditional nitrogen- and phosphorus-removing microorganisms, such as Mycobacterium, Flavonifactor, and Devsia, increased in the co-existing system. Metagenomic analysis showed that the presence of the PCYT2, EPT1, and phnPP genes and more complexed metabolism pathways in the co-existing system might be responsible for the more activated metabolism process.
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