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Description: Improving Settleability and Enhancing Biological Phosphorus Removal through the...
Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones
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Description: Improving Settleability and Enhancing Biological Phosphorus Removal through the...
Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones

Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones

Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones

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Description: Improving Settleability and Enhancing Biological Phosphorus Removal through the...
Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones
Abstract
Improving settleability and achieving enhanced biological phosphorus removal in a wastewater treatment process is achieved through the application of hydrocyclones without the use of an anaerobic selector. Hydrocyclones are applied to the waste stream, selecting for dense solids to recycle through the process while light solids are wasted, creating a balance of granules and flocs with superior settling characteristics in which phosphorus is removed through phosphorus accumulating organisms (PAO).
Improving settleability and achieving enhanced biological phosphorus removal in a wastewater treatment process is achieved through the application of hydrocyclones without the use of an anaerobic selector. Hydrocyclones are applied to the waste stream, selecting for dense solids to recycle through the process while light solids are wasted, creating a balance of granules and flocs with superior...
Author(s)
Claire WellingAmanda KennedyBernhard WettChandler JohnsonBob RutherfordRick BaumlerCharles Bott
SourceProceedings of the Water Environment Federation
SubjectResearch Article
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Sep, 2015
ISSN1938-6478
DOI10.2175/193864715819539434
Volume / Issue2015 / 17
Content sourceWEFTEC
Copyright2015
Word count81

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Description: Improving Settleability and Enhancing Biological Phosphorus Removal through the...
Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones
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Description: Improving Settleability and Enhancing Biological Phosphorus Removal through the...
Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones
Abstract
Improving settleability and achieving enhanced biological phosphorus removal in a wastewater treatment process is achieved through the application of hydrocyclones without the use of an anaerobic selector. Hydrocyclones are applied to the waste stream, selecting for dense solids to recycle through the process while light solids are wasted, creating a balance of granules and flocs with superior settling characteristics in which phosphorus is removed through phosphorus accumulating organisms (PAO).
Improving settleability and achieving enhanced biological phosphorus removal in a wastewater treatment process is achieved through the application of hydrocyclones without the use of an anaerobic selector. Hydrocyclones are applied to the waste stream, selecting for dense solids to recycle through the process while light solids are wasted, creating a balance of granules and flocs with superior...
Author(s)
Claire WellingAmanda KennedyBernhard WettChandler JohnsonBob RutherfordRick BaumlerCharles Bott
SourceProceedings of the Water Environment Federation
SubjectResearch Article
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Sep, 2015
ISSN1938-6478
DOI10.2175/193864715819539434
Volume / Issue2015 / 17
Content sourceWEFTEC
Copyright2015
Word count81

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Claire Welling# Amanda Kennedy# Bernhard Wett# Chandler Johnson# Bob Rutherford# Rick Baumler# Charles Bott. Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 6 Oct. 2025. <https://www.accesswater.org?id=-278068CITANCHOR>.
Claire Welling# Amanda Kennedy# Bernhard Wett# Chandler Johnson# Bob Rutherford# Rick Baumler# Charles Bott. Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed October 6, 2025. https://www.accesswater.org/?id=-278068CITANCHOR.
Claire Welling# Amanda Kennedy# Bernhard Wett# Chandler Johnson# Bob Rutherford# Rick Baumler# Charles Bott
Improving Settleability and Enhancing Biological Phosphorus Removal through the Implementation of Hydrocyclones
Access Water
Water Environment Federation
December 22, 2018
October 6, 2025
https://www.accesswater.org/?id=-278068CITANCHOR