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Description: Book cover
On-Line Nitrate/Nitrite Probes for BNR Process Control
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Description: Book cover
On-Line Nitrate/Nitrite Probes for BNR Process Control

On-Line Nitrate/Nitrite Probes for BNR Process Control

On-Line Nitrate/Nitrite Probes for BNR Process Control

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Description: Book cover
On-Line Nitrate/Nitrite Probes for BNR Process Control
Abstract
Real time nitrogen monitoring plays an increasingly important role for the successful biological nutrient removal at wastewater treatment plants. Though traditionally dissolved oxygen has been the main process control parameter a greater understanding of the biological mechanisms and process conditions like nitrite/nitrate concentrations to achieve lower effluent values becomes necessary, specifically in terms of nutrient reduction. If the process is incorrectly monitored, nitrite may build up to toxic concentrations. When the facility's influent ammonia loading fluctuates depending on the origination of wastewater, manual control of aeration is not only difficult, but can create more problems. If too much air is delivered, complete the nitrification process can be achieved, but reduced denitrification results in high nitrates in the effluent. When reliable NO3− and NO2− readings are captured on-line, correct process control would lead not only to reduced aeration blower power but also reduced staff response and adjustment time of aeration equipment. This will also reduced chlorine consumption at the back end of the plant.In this paper, the reliability of the online nitrite/nitrate monitors and the applicability of their readings in automatic control systems are discussed with regards to operational cost savings and technical feasibility. Great advances in sensors and analyzer technologies have been made over the past decade. An overview of UV sensors and techniques for monitoring of NO3 and NO2 will be discussed. Other non-UV type analyzers that could be used to monitor NO3 and NO2 are also presented.
Real time nitrogen monitoring plays an increasingly important role for the successful biological nutrient removal at wastewater treatment plants. Though traditionally dissolved oxygen has been the main process control parameter a greater understanding of the biological mechanisms and process conditions like nitrite/nitrate concentrations to achieve lower effluent values becomes necessary,...
Author(s)
Viraj de SilvaTao Fu
SourceProceedings of the Water Environment Federation
SubjectSession 75: Financing Consent Decrees – Cincinnati's Approach to an Affordable Solution
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2006
ISSN1938-6478
SICI1938-6478(20060101)2006:6L.5927;1-
DOI10.2175/193864706783775568
Volume / Issue2006 / 6
Content sourceWEFTEC
First / last page(s)5927 - 5934
Copyright2006
Word count246

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Description: Book cover
On-Line Nitrate/Nitrite Probes for BNR Process Control
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Details

Description: Book cover
On-Line Nitrate/Nitrite Probes for BNR Process Control
Abstract
Real time nitrogen monitoring plays an increasingly important role for the successful biological nutrient removal at wastewater treatment plants. Though traditionally dissolved oxygen has been the main process control parameter a greater understanding of the biological mechanisms and process conditions like nitrite/nitrate concentrations to achieve lower effluent values becomes necessary, specifically in terms of nutrient reduction. If the process is incorrectly monitored, nitrite may build up to toxic concentrations. When the facility's influent ammonia loading fluctuates depending on the origination of wastewater, manual control of aeration is not only difficult, but can create more problems. If too much air is delivered, complete the nitrification process can be achieved, but reduced denitrification results in high nitrates in the effluent. When reliable NO3− and NO2− readings are captured on-line, correct process control would lead not only to reduced aeration blower power but also reduced staff response and adjustment time of aeration equipment. This will also reduced chlorine consumption at the back end of the plant.In this paper, the reliability of the online nitrite/nitrate monitors and the applicability of their readings in automatic control systems are discussed with regards to operational cost savings and technical feasibility. Great advances in sensors and analyzer technologies have been made over the past decade. An overview of UV sensors and techniques for monitoring of NO3 and NO2 will be discussed. Other non-UV type analyzers that could be used to monitor NO3 and NO2 are also presented.
Real time nitrogen monitoring plays an increasingly important role for the successful biological nutrient removal at wastewater treatment plants. Though traditionally dissolved oxygen has been the main process control parameter a greater understanding of the biological mechanisms and process conditions like nitrite/nitrate concentrations to achieve lower effluent values becomes necessary,...
Author(s)
Viraj de SilvaTao Fu
SourceProceedings of the Water Environment Federation
SubjectSession 75: Financing Consent Decrees – Cincinnati's Approach to an Affordable Solution
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2006
ISSN1938-6478
SICI1938-6478(20060101)2006:6L.5927;1-
DOI10.2175/193864706783775568
Volume / Issue2006 / 6
Content sourceWEFTEC
First / last page(s)5927 - 5934
Copyright2006
Word count246

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Viraj de Silva# Tao Fu. On-Line Nitrate/Nitrite Probes for BNR Process Control. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 29 Jun. 2025. <https://www.accesswater.org?id=-293366CITANCHOR>.
Viraj de Silva# Tao Fu. On-Line Nitrate/Nitrite Probes for BNR Process Control. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed June 29, 2025. https://www.accesswater.org/?id=-293366CITANCHOR.
Viraj de Silva# Tao Fu
On-Line Nitrate/Nitrite Probes for BNR Process Control
Access Water
Water Environment Federation
December 22, 2018
June 29, 2025
https://www.accesswater.org/?id=-293366CITANCHOR