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PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS
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Description: Book cover
PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS

PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS

PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS

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Description: Book cover
PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS
Abstract
A batch and a continuous type experiments were conducted to test the conditions for simultaneous phosphorus release and uptake, and denitrification, taking place in one process. The bacteria able to denitrify as well as to remove phosphorus were evaluated for the application to biological nutrient removal (BNR) process.In the batch-type experiment, simultaneous reactions of phosphorus release and uptake, and also denitrification were observed under anoxic condition with high organic and nitrate loading. However the rate and the degree of P release were lower than that occurred under anaerobic condition.BNR processes composed of anaerobic-anoxic-oxic(AXO), anoxic-anaerobicoxic(XAO) and anoxic-oxic(XO) were operated in continuous condition. The anoxic reactors in each process received nitrate loading. In the AXO process, P release in anaerobic reactor and the luxury uptake in oxic reactor proceeded actively regardless to nitrate loading. However in XAO and XO processes, P release and luxury uptake occurred only with the nitrate loading less than 0.07kg NO3−-N/kg MLSS-d. With higher nitrate load, P release increased and the luxury uptake decreased. Therefore, it appeared that the application of denitrifying phosphorus-removing bacteria (DPB) to BNR process must first resolve the problem with decrease of luxury uptake of phosphorus in oxic reactor.
A batch and a continuous type experiments were conducted to test the conditions for simultaneous phosphorus release and uptake, and denitrification, taking place in one process. The bacteria able to denitrify as well as to remove phosphorus were evaluated for the application to biological nutrient removal (BNR) process.In the batch-type experiment, simultaneous reactions of phosphorus release and...
Author(s)
Kwang-Soo KimDaewha IlsanS. KimSungyoun KimKwang-Myeung ChoSang-Eun Lee
SourceProceedings of the Water Environment Federation
SubjectSession 61 – Research Symposium: Recycle and Fate in Biological Nutrient Removal
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2002
ISSN1938-6478
SICI1938-6478(20020101)2002:11L.110;1-
DOI10.2175/193864702784900624
Volume / Issue2002 / 11
Content sourceWEFTEC
First / last page(s)110 - 120
Copyright2002
Word count209

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Description: Book cover
PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS
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Description: Book cover
PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS
Abstract
A batch and a continuous type experiments were conducted to test the conditions for simultaneous phosphorus release and uptake, and denitrification, taking place in one process. The bacteria able to denitrify as well as to remove phosphorus were evaluated for the application to biological nutrient removal (BNR) process.In the batch-type experiment, simultaneous reactions of phosphorus release and uptake, and also denitrification were observed under anoxic condition with high organic and nitrate loading. However the rate and the degree of P release were lower than that occurred under anaerobic condition.BNR processes composed of anaerobic-anoxic-oxic(AXO), anoxic-anaerobicoxic(XAO) and anoxic-oxic(XO) were operated in continuous condition. The anoxic reactors in each process received nitrate loading. In the AXO process, P release in anaerobic reactor and the luxury uptake in oxic reactor proceeded actively regardless to nitrate loading. However in XAO and XO processes, P release and luxury uptake occurred only with the nitrate loading less than 0.07kg NO3−-N/kg MLSS-d. With higher nitrate load, P release increased and the luxury uptake decreased. Therefore, it appeared that the application of denitrifying phosphorus-removing bacteria (DPB) to BNR process must first resolve the problem with decrease of luxury uptake of phosphorus in oxic reactor.
A batch and a continuous type experiments were conducted to test the conditions for simultaneous phosphorus release and uptake, and denitrification, taking place in one process. The bacteria able to denitrify as well as to remove phosphorus were evaluated for the application to biological nutrient removal (BNR) process.In the batch-type experiment, simultaneous reactions of phosphorus release and...
Author(s)
Kwang-Soo KimDaewha IlsanS. KimSungyoun KimKwang-Myeung ChoSang-Eun Lee
SourceProceedings of the Water Environment Federation
SubjectSession 61 – Research Symposium: Recycle and Fate in Biological Nutrient Removal
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2002
ISSN1938-6478
SICI1938-6478(20020101)2002:11L.110;1-
DOI10.2175/193864702784900624
Volume / Issue2002 / 11
Content sourceWEFTEC
First / last page(s)110 - 120
Copyright2002
Word count209

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Kwang-Soo Kim# Daewha Ilsan# S. Kim# Sungyoun Kim# Kwang-Myeung Cho# Sang-Eun Lee. PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 25 Aug. 2025. <https://www.accesswater.org?id=-288800CITANCHOR>.
Kwang-Soo Kim# Daewha Ilsan# S. Kim# Sungyoun Kim# Kwang-Myeung Cho# Sang-Eun Lee. PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed August 25, 2025. https://www.accesswater.org/?id=-288800CITANCHOR.
Kwang-Soo Kim# Daewha Ilsan# S. Kim# Sungyoun Kim# Kwang-Myeung Cho# Sang-Eun Lee
PHOSPHORUS RELEASE AND UPTAKE ACCORDING TO NITRATE LOADING IN ANOXIC REACTOR OF BNR PROCESS
Access Water
Water Environment Federation
December 22, 2018
August 25, 2025
https://www.accesswater.org/?id=-288800CITANCHOR