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Ammonium Removal by a Newly Isolated Heterotrophic Nitrification–Aerobic Denitrification Bacteria Pseudomonas Stutzeri SDU10 and Its Potential in Treatment of Piggery Wastewater
by
Zhang, Juan
, Zhou, Bo
, Lin, Jianqiang
, Chen Linxu
, Lin Jianqun
, Chen Lifei
, Ren Yilin
, Deng, Pan
in
Acetic acid
/ Ammonium
/ Animal wastes
/ Carbon
/ Carbon sources
/ Carbon/nitrogen ratio
/ Chemical oxygen demand
/ Denitrification
/ Nitrification
/ Nitrogen
/ Pig manure
/ Pseudomonas
/ Sodium acetate
/ Swine
/ Wastewater treatment
2020
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Ammonium Removal by a Newly Isolated Heterotrophic Nitrification–Aerobic Denitrification Bacteria Pseudomonas Stutzeri SDU10 and Its Potential in Treatment of Piggery Wastewater
by
Zhang, Juan
, Zhou, Bo
, Lin, Jianqiang
, Chen Linxu
, Lin Jianqun
, Chen Lifei
, Ren Yilin
, Deng, Pan
in
Acetic acid
/ Ammonium
/ Animal wastes
/ Carbon
/ Carbon sources
/ Carbon/nitrogen ratio
/ Chemical oxygen demand
/ Denitrification
/ Nitrification
/ Nitrogen
/ Pig manure
/ Pseudomonas
/ Sodium acetate
/ Swine
/ Wastewater treatment
2020
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Ammonium Removal by a Newly Isolated Heterotrophic Nitrification–Aerobic Denitrification Bacteria Pseudomonas Stutzeri SDU10 and Its Potential in Treatment of Piggery Wastewater
by
Zhang, Juan
, Zhou, Bo
, Lin, Jianqiang
, Chen Linxu
, Lin Jianqun
, Chen Lifei
, Ren Yilin
, Deng, Pan
in
Acetic acid
/ Ammonium
/ Animal wastes
/ Carbon
/ Carbon sources
/ Carbon/nitrogen ratio
/ Chemical oxygen demand
/ Denitrification
/ Nitrification
/ Nitrogen
/ Pig manure
/ Pseudomonas
/ Sodium acetate
/ Swine
/ Wastewater treatment
2020
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Ammonium Removal by a Newly Isolated Heterotrophic Nitrification–Aerobic Denitrification Bacteria Pseudomonas Stutzeri SDU10 and Its Potential in Treatment of Piggery Wastewater
Journal Article
Ammonium Removal by a Newly Isolated Heterotrophic Nitrification–Aerobic Denitrification Bacteria Pseudomonas Stutzeri SDU10 and Its Potential in Treatment of Piggery Wastewater
2020
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Overview
A strain SDU10 was isolated from swine manure compost and identified as Pseudomonas stutzeri SDU10. It demonstrated excellent capability in NH4+-N removal. Optimal conditions of NH4+-N removal were determined, which were sodium acetate as the optimal carbon source, carbon to nitrogen (C/N) ratio of 10, temperature of 30 °C, pH of 7.0. Especially, P. stutzeri SDU10 could remove high concentration NH4+-N of 1500.0 and 2000.0 mg/l in 120 h with the NH4+-N removal rates of 91.1% and 61.6%, respectively. In batch experiments, the highest NH4+-N removal rate of 97.6% and chemical oxygen demand (COD) removal rate of 94.2% were obtained at initial C/N ratio 10 during piggery wastewater treatment using P. stutzeri SDU10. Results showed that P. stutzeri SDU10 had the potential for treatment of wastewater of high NH4+-N concentration.
Publisher
Springer Nature B.V
Subject
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