Tourmaline mediated enhanced autotrophic denitrification: The mechanisms of electron transfer and Paracoccus enrichment

被引:4
作者
Fu, Mengqi [1 ]
Qiu, Shan [1 ]
Wang, Jue [1 ]
Zhu, Yingshi [2 ,3 ]
Yuan, Mu [1 ]
Wang, Liang [1 ]
机构
[1] Harbin Inst Technol, Sch Environm, State Key Lab Urban Water Resource & Environm, Harbin 150090, Peoples R China
[2] Zhejiang Environm Technol Co Ltd, Hangzhou 311100, Peoples R China
[3] Zhejiang Univ, Coll Chem & Biol Engn, Key Lab Biomass Chem Engn, Minist Educ, Hangzhou 310058, Peoples R China
关键词
Autotrophic denitrification; Nitrogen removal; Tourmaline; Extracellular polymeric substances; Microbial community; WASTE-WATER; REDUCTION; REMOVAL; MEMBRANE; ECOLOGY; SULFUR;
D O I
10.1016/j.scitotenv.2023.169847
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Autotrophic denitrification (AD) without carbon source is an inevitable choice for denitrification of municipal wastewater under the carbon peaking and carbon neutrality goals. This study first employed sulfur-tourmaline-AD (STAD) as an innovative nitrate removal trial technique in wastewater. STAD demonstrated a 2.23-fold increase in nitrate-nitrogen (NO3- -N) removal rate with reduced nitrite-nitrogen (NO2- -N) accumulation, effectively removing 99 % of nitrogen pollutants compared to sulfur denitrification. Some denitrifiers microorganisms that could secrete tyrosine, tryptophan, and aromatic protein (extracellular polymeric substances (EPS)). Moreover, according to the EPS composition and characteristics analysis, the secretion of loosely bound extracellular polymeric substances (LB-EPS) that bound to the bacterial endogenous respiration and enriched microbial abundance, was produced more in the STAD system, further improving the system stability. Furthermore, the addition of tourmaline (Tm) facilitated the discovery of a new genus (Paracoccus) that enhanced nitrate decomposition. Applying optimal electron donors through metabolic pathways and the microbial
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页数:11
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