Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification

Achieving stable long-term mainstream nitrite oxidizing bacteria (NOB) suppression is the bottleneck for the novel partial nitrification (PN) process toward energy- and carbon-efficient wastewater treatment. However, long-term PN stability remains a challenge due to NOB adaptation. This study propos...

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Main Authors: Zhao, Yingfen, Ab. Hamid, Nur Hafizah, Reddy, Nichelle, Zheng, Min, Yuan, Zhiguo, Duan, Haoran, Ye, Liu
Format: Article
Published: American Chemical Society 2022
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Online Access:http://eprints.utm.my/103761/
http://dx.doi.org/10.1021/acs.est.1c05672
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spelling my.utm.1037612023-11-23T08:58:56Z http://eprints.utm.my/103761/ Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification Zhao, Yingfen Ab. Hamid, Nur Hafizah Reddy, Nichelle Zheng, Min Yuan, Zhiguo Duan, Haoran Ye, Liu TP Chemical technology Achieving stable long-term mainstream nitrite oxidizing bacteria (NOB) suppression is the bottleneck for the novel partial nitrification (PN) process toward energy- and carbon-efficient wastewater treatment. However, long-term PN stability remains a challenge due to NOB adaptation. This study proposed and demonstrated a novel strategy for achieving NOB suppression by the primary treatment of mainstream wastewater with a forward osmosis (FO) membrane process, which facilitated two external NOB inhibition factors (salinity and free nitrous acid, FNA). To evaluate the proposed strategy, a lab-scale sequencing batch reactor was operated for 200 days. A stable PN operation was achieved with a nitrite accumulation ratio of 97.7 ± 2.8%. NOB were suppressed under the combined inhibition effect of NaCl (7.9 ± 0.2 g/L, as introduced by the FO direct filtration) and FNA (0.11 ± 0.02 mg of HNO2-N/L, formed as a result of the increased NH4+-N concentration after the FO process). The two inhibition factors worked in synergy to achieve a more stable PN operation. The microbial analysis showed that the elevated salinity and accumulation of FNA reshaped the microbial community and selectively eliminated NOB. Finally, an economic and feasibility analysis was conducted, which suggests that the integration of an FO unit into PN/A is a feasible and economically viable wastewater treatment process. American Chemical Society 2022 Article PeerReviewed Zhao, Yingfen and Ab. Hamid, Nur Hafizah and Reddy, Nichelle and Zheng, Min and Yuan, Zhiguo and Duan, Haoran and Ye, Liu (2022) Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification. Environmental Science and Technology, 56 (12). pp. 8663-8672. ISSN 0013-936X http://dx.doi.org/10.1021/acs.est.1c05672 DOI : 10.1021/acs.est.1c05672
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Zhao, Yingfen
Ab. Hamid, Nur Hafizah
Reddy, Nichelle
Zheng, Min
Yuan, Zhiguo
Duan, Haoran
Ye, Liu
Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification
description Achieving stable long-term mainstream nitrite oxidizing bacteria (NOB) suppression is the bottleneck for the novel partial nitrification (PN) process toward energy- and carbon-efficient wastewater treatment. However, long-term PN stability remains a challenge due to NOB adaptation. This study proposed and demonstrated a novel strategy for achieving NOB suppression by the primary treatment of mainstream wastewater with a forward osmosis (FO) membrane process, which facilitated two external NOB inhibition factors (salinity and free nitrous acid, FNA). To evaluate the proposed strategy, a lab-scale sequencing batch reactor was operated for 200 days. A stable PN operation was achieved with a nitrite accumulation ratio of 97.7 ± 2.8%. NOB were suppressed under the combined inhibition effect of NaCl (7.9 ± 0.2 g/L, as introduced by the FO direct filtration) and FNA (0.11 ± 0.02 mg of HNO2-N/L, formed as a result of the increased NH4+-N concentration after the FO process). The two inhibition factors worked in synergy to achieve a more stable PN operation. The microbial analysis showed that the elevated salinity and accumulation of FNA reshaped the microbial community and selectively eliminated NOB. Finally, an economic and feasibility analysis was conducted, which suggests that the integration of an FO unit into PN/A is a feasible and economically viable wastewater treatment process.
format Article
author Zhao, Yingfen
Ab. Hamid, Nur Hafizah
Reddy, Nichelle
Zheng, Min
Yuan, Zhiguo
Duan, Haoran
Ye, Liu
author_facet Zhao, Yingfen
Ab. Hamid, Nur Hafizah
Reddy, Nichelle
Zheng, Min
Yuan, Zhiguo
Duan, Haoran
Ye, Liu
author_sort Zhao, Yingfen
title Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification
title_short Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification
title_full Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification
title_fullStr Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification
title_full_unstemmed Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification
title_sort wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification
publisher American Chemical Society
publishDate 2022
url http://eprints.utm.my/103761/
http://dx.doi.org/10.1021/acs.est.1c05672
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