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PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES
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Description: Book cover
PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES

PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES

PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES

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Description: Book cover
PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES
Abstract
Faced with the task of treating significant volumes of complex industrial wastewaters, the biological components of municipal wastewater treatment plants are operating under the risk of toxic or inhibitory contaminants from the industrial effluents that may be detrimental to their operation. This might lead to undesirable effluent toxicity and/or result in permit violations. Therefore, there is a need for an upset early warning system that could protect the full-scale plants from toxic or inhibitory constituents in the incoming wastewaters. This study focused on the development of a protocol for rapid detection of potentially toxic inhibitory or toxic wastewaters using combined aerobic respirometric and anaerobic batch techniques. Aerobic respirometers equipped with automated data acquisition systems were used as potential early warning devices. The inhibition effect on carbon and nitrogen oxidation was assessed. The degree of inhibition was evaluated as the concentration causing 50% reduction in microbial activity, which was estimated by an inhibition model. Anaerobic toxicity assays were also conducted to evaluate the inhibitory effects of the toxic compounds to anaerobic inocula obtained from a master culture reactor fed with ethanol. The developed protocol for early detection of toxicity was validated using wastewater samples from the Quaker Oats Company and pure chemicals such as furfural and phenol. Varying degrees of sensitivity were observed in the study when different groups of microorganisms, wastewater samples, and chemicals were tested. The comparison of aerobic and anaerobic inhibition suggested the importance of using both aerobic and anaerobic cultures to maximize the necessary sensitivity of the protocol.
Faced with the task of treating significant volumes of complex industrial wastewaters, the biological components of municipal wastewater treatment plants are operating under the risk of toxic or inhibitory contaminants from the industrial effluents that may be detrimental to their operation. This might lead to undesirable effluent toxicity and/or result in permit violations. Therefore, there is a...
Author(s)
Sock-Hoon KohTimothy G. Ellis
SourceProceedings of the Water Environment Federation
SubjectSession 62 – Industrial Issues and Treatment Technologies Symposium: Treatment and Monitoring of Complex Organics
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2002
ISSN1938-6478
SICI1938-6478(20020101)2002:11L.178;1-
DOI10.2175/193864702784900499
Volume / Issue2002 / 11
Content sourceWEFTEC
First / last page(s)178 - 197
Copyright2002
Word count268

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Description: Book cover
PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES
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Description: Book cover
PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES
Abstract
Faced with the task of treating significant volumes of complex industrial wastewaters, the biological components of municipal wastewater treatment plants are operating under the risk of toxic or inhibitory contaminants from the industrial effluents that may be detrimental to their operation. This might lead to undesirable effluent toxicity and/or result in permit violations. Therefore, there is a need for an upset early warning system that could protect the full-scale plants from toxic or inhibitory constituents in the incoming wastewaters. This study focused on the development of a protocol for rapid detection of potentially toxic inhibitory or toxic wastewaters using combined aerobic respirometric and anaerobic batch techniques. Aerobic respirometers equipped with automated data acquisition systems were used as potential early warning devices. The inhibition effect on carbon and nitrogen oxidation was assessed. The degree of inhibition was evaluated as the concentration causing 50% reduction in microbial activity, which was estimated by an inhibition model. Anaerobic toxicity assays were also conducted to evaluate the inhibitory effects of the toxic compounds to anaerobic inocula obtained from a master culture reactor fed with ethanol. The developed protocol for early detection of toxicity was validated using wastewater samples from the Quaker Oats Company and pure chemicals such as furfural and phenol. Varying degrees of sensitivity were observed in the study when different groups of microorganisms, wastewater samples, and chemicals were tested. The comparison of aerobic and anaerobic inhibition suggested the importance of using both aerobic and anaerobic cultures to maximize the necessary sensitivity of the protocol.
Faced with the task of treating significant volumes of complex industrial wastewaters, the biological components of municipal wastewater treatment plants are operating under the risk of toxic or inhibitory contaminants from the industrial effluents that may be detrimental to their operation. This might lead to undesirable effluent toxicity and/or result in permit violations. Therefore, there is a...
Author(s)
Sock-Hoon KohTimothy G. Ellis
SourceProceedings of the Water Environment Federation
SubjectSession 62 – Industrial Issues and Treatment Technologies Symposium: Treatment and Monitoring of Complex Organics
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jan, 2002
ISSN1938-6478
SICI1938-6478(20020101)2002:11L.178;1-
DOI10.2175/193864702784900499
Volume / Issue2002 / 11
Content sourceWEFTEC
First / last page(s)178 - 197
Copyright2002
Word count268

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Sock-Hoon Koh# Timothy G. Ellis. PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 1 Oct. 2025. <https://www.accesswater.org?id=-288739CITANCHOR>.
Sock-Hoon Koh# Timothy G. Ellis. PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed October 1, 2025. https://www.accesswater.org/?id=-288739CITANCHOR.
Sock-Hoon Koh# Timothy G. Ellis
PROTOCOL FOR EARLY DETECTION AND EVALUATION OF INHIBITORY WASTEWATER USING COMBINED AEROBIC RESPIROMETRIC AND ANAEROBIC BATCH TECHNIQUES
Access Water
Water Environment Federation
December 22, 2018
October 1, 2025
https://www.accesswater.org/?id=-288739CITANCHOR