Effects of different electron donors on nitrogen removal performance and microbial community of denitrification system

反硝化 反硝化细菌 异养 自养 硫杆菌 好氧反硝化 硫黄 化学 环境化学 氮气 细菌 生物 有机化学 遗传学
作者
Junfeng Yang,Yujie Qin,Xiangyin Liu,Lan Yang,Shaohong Zheng,Siyuan Gong,Liu Zhi-ju,Chenglong Wu,Xinyue Lin,Tiansheng Lu,Jiannv Chen
出处
期刊:Journal of environmental chemical engineering [Elsevier BV]
卷期号:10 (3): 107915-107915 被引量:22
标识
DOI:10.1016/j.jece.2022.107915
摘要

Biological denitrification is an economical and effective process for the removal of NO3--N from wastewater. During the denitrification process, electron donors such as organic and inorganic compounds are required to provide electrons for the reduction of NO3--N. In this study, the effects of sulfide (sulfur autotrophic denitrification, stage I), sulfide and glucose (sulfur autotrophic-heterotrophic synergistic denitrification, stage II) and glucose (heterotrophic denitrification, stage III) on nitrogen removal performance and microbial characteristics of denitrification system were investigated. After adding 80 mg/L glucose in stage II, advanced nitrogen removal based on sulfur autotrophic and heterotrophic denitrification was achieved with a high NO3--N removal efficiency of 96.0%. The microbial species were marginally reduced as the denitrification system transitioned from sulfur autotrophic denitrification to heterotrophic denitrification, while the abundance of denitrifying bacteria grew dramatically. Comamonas, uncultured_bacterium_f_Burkholderiaceae and Enterobacter increased from less than 2% in stage I to 10.0%, 9.1% and 7.8% in stage III, respectively. In particular, the abundance of sulfur autotrophic denitrifying bacteria (Thiobacillus and Sulfurimonas) did not drop but somewhat increased in stage II. A potential interaction model between sulfur autotrophic and heterotrophic bacteria was proposed. The results of this study provide a novel idea and theoretical basis for improving the nitrogen removal efficiency of the system through biological enhancement or microbial community regulation.
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