硝基螺
亚硝酸盐
生物
舟状虫
小球藻
反硝化细菌
细菌
藻类
普通小球藻
植物
硝酸盐
微生物学
生态学
化学
反硝化
氮气
有机化学
遗传学
作者
Xiangjing Yang,Yonglin Liao,Ming Zeng,Yuyue Qin
标识
DOI:10.1016/j.biortech.2024.130638
摘要
Chlorella sp. and Navicula sp. were separately used to construct an algal-bacterial symbiotic system in two identical sequencing batch reactors (R1 and R2) to explore the influence of algal species differences on nitrite accumulation. The Navicula-bacterial symbiotic system showed a higher nitrite accumulation efficiency of 85% and a stronger resistance to ammonia load. It secreted twice as many extracellular polymeric substances than the Chlorella-bacterial symbiotic system. Nitrospira and SM1A02 were the dominant functional genera of nitrite-oxidizing bacteria in R1. The dominant functional genus of ammonium-oxidizing bacteria and the dominant functional genus of denitrifying bacteria were Ellin6067 and unclassified_Saprospiraceae in R2, respectively. In general, this research provided some reference for the construction of an algal-bacterial symbiotic system and achieving nitrite accumulation through an algal-bacterial symbiotic system.
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