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Simultaneous partial nitrification, denitrification, and phosphorus removal in sequencing batch reactors via controlled reduced aeration and short-term sludge retention time decrease.

Authors :
Luo, Yahong
Yi, Kui
Zhang, Xinyu
Li, Boya
Cao, Runtong
Pang, Yingmiao
Li, Mingxian
Hou, Chenglin
Lv, Jinghua
Li, Xiaopin
Li, Dong
Source :
Journal of Environmental Management. Oct2023, Vol. 344, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Simultaneous bio-treatment processes of organic carbon (C)-, nitrogen (N)-, and phosphorus (P)-containing wastewater are challenged by insufficient carbon sources in the effluent. In the present study, two parallel anaerobic/aerobic sequencing batch reactors (R-1 and R-2) treating low C/N (≤4) wastewater were employed using different partial nitrification start-up strategies, controlled reduced aeration, and decreased sludge retention time. Advanced removal efficiencies for NH 4 +-N (≥96%), total nitrogen (TN, ≥86%), PO 4 3−–P (≥95%), and COD intra (≥91%) were realized, with TN and PO 4 3−–P effluent concentrations of 10.0 ± 3.5 and 0.11 ± 0.3 mg/L in R-1 and 9.28 ± 4.0 and 0.11 ± 0.1 mg/L in R-2, respectively. Higher nitrite accumulation rate (nearly 100%) and TN (121.1 ± 0.7 mg TN/g VSS·d) and P (12.5 ± 0.6 mg PO 4 3−–P/g VSS·d) removal loadings were obtained in R-2 by a thorough elimination of nitrite-oxidizing bacteria. Moreover, different microbial structures and nutrient removal pathways were identified. Denitrifying glycogen-accumulating organisms (Candidatus Competibacter) and phosphorus-accumulating organisms (PAOs) (Tetrasphaera) removed N and P with partial nitrification–endogenous denitrification pathways and aerobic P removal in R-1. In R-2, aerobic denitrifying bacteria (Psychrobacter) and PAOs ensured N and P removal through the partial nitrification–aerobic denitrification and aerobic P removal pathways. Compared to R-1, R-2 offers greater efficiency, convenience, and scope to further reduce carbon-source demand. [Display omitted] • Two novel start-up strategies of partial nitrification were developed. • COD intra efficiency reached to 93.3% in R-1. • Aerobic PAOs Tetrasphaera dominated in both systems. • The high-efficient use of oxygen by PAOs in the aerobic stage help AOB and DGAOs. • Aerobic denitrification in R-2 by Psychrobacter. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03014797
Volume :
344
Database :
Academic Search Index
Journal :
Journal of Environmental Management
Publication Type :
Academic Journal
Accession number :
171921780
Full Text :
https://doi.org/10.1016/j.jenvman.2023.118598