Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture
Nitrification systems are known to be a source of nitrous oxide (N2O) emission, however, the contribution from partial and full nitrification systems remains controversial. In this study, N2O emission from a partial and full nitrification culture was investigated. In all tests, nitrite, dissolved ox...
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sg-ntu-dr.10356-1432692021-02-05T06:16:55Z Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture Chua, Desmond Feng Jun Sun, Faqian Mukherjee, Manisha Zhou, Yan School of Civil and Environmental Engineering Advanced Environmental Biotechnology Centre Nanyang Environment and Water Research Institute Singapore Centre for Environmental Life Sciences and Engineering Engineering::Environmental engineering Nitrous Oxide Ammonia-oxidising Bacteria Nitrification systems are known to be a source of nitrous oxide (N2O) emission, however, the contribution from partial and full nitrification systems remains controversial. In this study, N2O emission from a partial and full nitrification culture was investigated. In all tests, nitrite, dissolved oxygen concentration and pH levels were controlled within a similar range limiting ammonium concentration to be the only variable. The results reveal with the same amount of ammonium removed, the full nitrification culture produced far greater N2O than the partial nitrification culture for both pulse (25–36 times) and continuous feeding modes (2–110 times). The relative gene expression data indicate that under pulse feeding there is a decreasing trend of nirK and norB genes for the partial and full nitrification culture respectively while under continuous feeding, increasing norB trends were observed for both. This possibly indicated the hydroxylamine pathway was favoured for the partial nitrification culture while the hybrid N-nitrosation pathway maybe the major contributor for the full nitrification culture. These findings improve our understanding on N2O production pathways and enable researchers to propose better mitigation strategies. Nanyang Technological University Accepted version We would like to thank Dr. Bin Cao (@EMBB_NTU; www. bcaolab.org) for the useful discussion. The authors are grateful to the funding support of Nanyang Technological University start-up grant e anticipating and mitigating challenges in enhanced biotreatment processes e enhancement and global warming. 2020-08-18T04:59:08Z 2020-08-18T04:59:08Z 2019 Journal Article Chua, D. F. J., Sun, F., Mukherjee, M., & Zhou, Y. (2019). Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture. Chemosphere, 220, 974-982. doi:10.1016/j.chemosphere.2018.12.204 0045-6535 https://hdl.handle.net/10356/143269 10.1016/j.chemosphere.2018.12.204 2-s2.0-85060039236 220 974 982 en Chemosphere © 2019 Elsevier Ltd. All rights reserved. This paper was published in Chemosphere and is made available with permission of Elsevier Ltd. application/pdf |
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Engineering::Environmental engineering Nitrous Oxide Ammonia-oxidising Bacteria Chua, Desmond Feng Jun Sun, Faqian Mukherjee, Manisha Zhou, Yan Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture |
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Nitrification systems are known to be a source of nitrous oxide (N2O) emission, however, the contribution from partial and full nitrification systems remains controversial. In this study, N2O emission from a partial and full nitrification culture was investigated. In all tests, nitrite, dissolved oxygen concentration and pH levels were controlled within a similar range limiting ammonium concentration to be the only variable. The results reveal with the same amount of ammonium removed, the full nitrification culture produced far greater N2O than the partial nitrification culture for both pulse (25–36 times) and continuous feeding modes (2–110 times). The relative gene expression data indicate that under pulse feeding there is a decreasing trend of nirK and norB genes for the partial and full nitrification culture respectively while under continuous feeding, increasing norB trends were observed for both. This possibly indicated the hydroxylamine pathway was favoured for the partial nitrification culture while the hybrid N-nitrosation pathway maybe the major contributor for the full nitrification culture. These findings improve our understanding on N2O production pathways and enable researchers to propose better mitigation strategies. |
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School of Civil and Environmental Engineering |
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School of Civil and Environmental Engineering Chua, Desmond Feng Jun Sun, Faqian Mukherjee, Manisha Zhou, Yan |
format |
Article |
author |
Chua, Desmond Feng Jun Sun, Faqian Mukherjee, Manisha Zhou, Yan |
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Chua, Desmond Feng Jun |
title |
Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture |
title_short |
Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture |
title_full |
Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture |
title_fullStr |
Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture |
title_full_unstemmed |
Comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture |
title_sort |
comparison of nitrous oxide emission between a partial and full nitrification enriched ammonia-oxidising culture |
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2020 |
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https://hdl.handle.net/10356/143269 |
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