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Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater

The temperature dependence of denitrification was investigated for high nitrate nitrogen denitrification in an expanded granular sludge bed (EGSB) reactor. The optimal reaction temperatures were 15–35 °C in which nearly complete denitrification was achieved with the removal of COD maintained over 80...

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Autores principales: Liao, Runhua, Miao, Yu, Li, Jun, Li, Yan, Wang, Zhu, Du, Jie, Li, Yueming, Li, Aimin, Shen, Huijuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9092073/
https://www.ncbi.nlm.nih.gov/pubmed/35558806
http://dx.doi.org/10.1039/c8ra08256a
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author Liao, Runhua
Miao, Yu
Li, Jun
Li, Yan
Wang, Zhu
Du, Jie
Li, Yueming
Li, Aimin
Shen, Huijuan
author_facet Liao, Runhua
Miao, Yu
Li, Jun
Li, Yan
Wang, Zhu
Du, Jie
Li, Yueming
Li, Aimin
Shen, Huijuan
author_sort Liao, Runhua
collection PubMed
description The temperature dependence of denitrification was investigated for high nitrate nitrogen denitrification in an expanded granular sludge bed (EGSB) reactor. The optimal reaction temperatures were 15–35 °C in which nearly complete denitrification was achieved with the removal of COD maintained over 80%. Nitrite accumulation was observed at 10 °C indicating the incomplete denitrification at low temperature. However, almost complete denitrification was even accomplished as high as 52 °C. High-throughput sequencing detected a total of 84 bacterial genera and 7 phyla, and temperature variation resulted in the shift of microbial community structure and diversity. Proteobacteria thrived while Firmicutes and Bacteroidetes were inhibited by temperature stress. The predominance of Halomonas and the significant decrease of Azoarcus at low temperature indicated a more important role of these two genera in denitrification in an EGSB reactor. The results of qPCR indicated that temperature exerted effects on the abundance of denitrification function genes, nirK, nirS, narG, and nosZ, due to the shift of the bacterial community. This study provided a comprehensive understanding of temperature effects on the denitrification process in an EGSB reactor treating high concentration nitrate wastewater.
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spelling pubmed-90920732022-05-11 Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater Liao, Runhua Miao, Yu Li, Jun Li, Yan Wang, Zhu Du, Jie Li, Yueming Li, Aimin Shen, Huijuan RSC Adv Chemistry The temperature dependence of denitrification was investigated for high nitrate nitrogen denitrification in an expanded granular sludge bed (EGSB) reactor. The optimal reaction temperatures were 15–35 °C in which nearly complete denitrification was achieved with the removal of COD maintained over 80%. Nitrite accumulation was observed at 10 °C indicating the incomplete denitrification at low temperature. However, almost complete denitrification was even accomplished as high as 52 °C. High-throughput sequencing detected a total of 84 bacterial genera and 7 phyla, and temperature variation resulted in the shift of microbial community structure and diversity. Proteobacteria thrived while Firmicutes and Bacteroidetes were inhibited by temperature stress. The predominance of Halomonas and the significant decrease of Azoarcus at low temperature indicated a more important role of these two genera in denitrification in an EGSB reactor. The results of qPCR indicated that temperature exerted effects on the abundance of denitrification function genes, nirK, nirS, narG, and nosZ, due to the shift of the bacterial community. This study provided a comprehensive understanding of temperature effects on the denitrification process in an EGSB reactor treating high concentration nitrate wastewater. The Royal Society of Chemistry 2018-12-18 /pmc/articles/PMC9092073/ /pubmed/35558806 http://dx.doi.org/10.1039/c8ra08256a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liao, Runhua
Miao, Yu
Li, Jun
Li, Yan
Wang, Zhu
Du, Jie
Li, Yueming
Li, Aimin
Shen, Huijuan
Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater
title Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater
title_full Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater
title_fullStr Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater
title_full_unstemmed Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater
title_short Temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater
title_sort temperature dependence of denitrification microbial communities and functional genes in an expanded granular sludge bed reactor treating nitrate-rich wastewater
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9092073/
https://www.ncbi.nlm.nih.gov/pubmed/35558806
http://dx.doi.org/10.1039/c8ra08256a
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