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THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT
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Description: Book cover
THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT

THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT

THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT

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Description: Book cover
THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT
Abstract
The influence of physicochemical properties of microbial floc, namely extracellular polymeric substances (EPS) and hydrophobicity, on ultraviolet (UV) disinfection of sequencing batch reactor effluent was studied. Samples were generated from bench scale sequencing batch reactors (SBRs) fed a synthetic media. The SBRs were fed a media composed of either glucose or a 50% glucose / 50% skim milk mixture. Escherichia coli was added to the reactors daily to serve as an indicator organism for UV disinfection assays of SBR effluent. Sludge retention time (SRT) was adjusted between 4 – 20 days to generate microbial floc with varying physicochemical properties. EPS was extracted from mixed liquor suspended solids using a cationic exchange resin. EPS composition and concentration did not change with SRT for reactors fed with a similar carbon source. However, EPS samples obtained from reactors fed with a glucose-skim milk mixture contained more protein, less carbohydrate and more total EPS than EPS from reactors fed primarily glucose. EPS showed absorbance at 253.7nm, indicating that EPS may serve to absorb UV and prevent penetration of UV light through microbial floc; however, there was no direct relationship drawn between SRT and UV absorbance. Hydrophobicity increased and surface charge decreased with increasing SRT, and hydrophobicity increased with the protein:carbohydrate ratio of EPS (rp = 0.89, p
The influence of physicochemical properties of microbial floc, namely extracellular polymeric substances (EPS) and hydrophobicity, on ultraviolet (UV) disinfection of sequencing batch reactor effluent was studied. Samples were generated from bench scale sequencing batch reactors (SBRs) fed a synthetic media. The SBRs were fed a media composed of either glucose or a 50% glucose / 50% skim milk...
Author(s)
HEATHER E. SCOTTSTEVEN N. LISSRAMIN FARNOODD. GRANT ALLEN
SourceProceedings of the Water Environment Federation
SubjectSESSION 9: UV DESIGN AND OPERATIONS
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2002
ISSN1938-6478
SICI1938-6478(20020101)2002:1L.598;1-
DOI10.2175/193864702785033734
Volume / Issue2002 / 1
Content sourceDisinfection and Reuse Symposium
First / last page(s)598 - 616
Copyright2002
Word count228

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Description: Book cover
THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT
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Description: Book cover
THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT
Abstract
The influence of physicochemical properties of microbial floc, namely extracellular polymeric substances (EPS) and hydrophobicity, on ultraviolet (UV) disinfection of sequencing batch reactor effluent was studied. Samples were generated from bench scale sequencing batch reactors (SBRs) fed a synthetic media. The SBRs were fed a media composed of either glucose or a 50% glucose / 50% skim milk mixture. Escherichia coli was added to the reactors daily to serve as an indicator organism for UV disinfection assays of SBR effluent. Sludge retention time (SRT) was adjusted between 4 – 20 days to generate microbial floc with varying physicochemical properties. EPS was extracted from mixed liquor suspended solids using a cationic exchange resin. EPS composition and concentration did not change with SRT for reactors fed with a similar carbon source. However, EPS samples obtained from reactors fed with a glucose-skim milk mixture contained more protein, less carbohydrate and more total EPS than EPS from reactors fed primarily glucose. EPS showed absorbance at 253.7nm, indicating that EPS may serve to absorb UV and prevent penetration of UV light through microbial floc; however, there was no direct relationship drawn between SRT and UV absorbance. Hydrophobicity increased and surface charge decreased with increasing SRT, and hydrophobicity increased with the protein:carbohydrate ratio of EPS (rp = 0.89, p
The influence of physicochemical properties of microbial floc, namely extracellular polymeric substances (EPS) and hydrophobicity, on ultraviolet (UV) disinfection of sequencing batch reactor effluent was studied. Samples were generated from bench scale sequencing batch reactors (SBRs) fed a synthetic media. The SBRs were fed a media composed of either glucose or a 50% glucose / 50% skim milk...
Author(s)
HEATHER E. SCOTTSTEVEN N. LISSRAMIN FARNOODD. GRANT ALLEN
SourceProceedings of the Water Environment Federation
SubjectSESSION 9: UV DESIGN AND OPERATIONS
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2002
ISSN1938-6478
SICI1938-6478(20020101)2002:1L.598;1-
DOI10.2175/193864702785033734
Volume / Issue2002 / 1
Content sourceDisinfection and Reuse Symposium
First / last page(s)598 - 616
Copyright2002
Word count228

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HEATHER E. SCOTT# STEVEN N. LISS# RAMIN FARNOOD# D. GRANT ALLEN. THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 13 Dec. 2025. <https://www.accesswater.org?id=-289213CITANCHOR>.
HEATHER E. SCOTT# STEVEN N. LISS# RAMIN FARNOOD# D. GRANT ALLEN. THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed December 13, 2025. https://www.accesswater.org/?id=-289213CITANCHOR.
HEATHER E. SCOTT# STEVEN N. LISS# RAMIN FARNOOD# D. GRANT ALLEN
THE EFFECT OF PHYSICOCHEMICAL PROPERTIES OF MICROBIAL FLOC ON UV DISINFECTION OF SEQUENCING BATCH REACTOR EFFLUENT
Access Water
Water Environment Federation
December 22, 2018
December 13, 2025
https://www.accesswater.org/?id=-289213CITANCHOR