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Description: Aeration system design in integrated fixed-film activated sludge (IFAS) and moving...
Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes
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Description: Aeration system design in integrated fixed-film activated sludge (IFAS) and moving...
Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes

Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes

Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes

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Description: Aeration system design in integrated fixed-film activated sludge (IFAS) and moving...
Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes
Abstract
Aerobic integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBRs) use an engineered aeration system consisting of stainless-steel pipe diffusers, manifold (or submerged air header), down pipes, and manually operated air-flow control valves. The so-called medium-bubble diffuser has a large diameter (i.e., 4-mm) orifice that is situated along the underside of the stainless steel pipe diffuser. Therefore, medium-bubble diffusers are not as susceptible to scaling and fouling as fine-bubble diffusers, and operational experience has proven that medium-bubble diffusers require significantly less maintenance than fine-bubble diffusers. The oxygen transfer efficiency (OTE) of a medium-bubble diffuser is better than that of a typical coarse-bubble diffuser. The presence of free moving plastic biofilm carriers in a bioreactor improves OTE. Unfortunately, there is not a generally accepted design criteria for the aeration systems that are used in aerobic IFAS zones and MBBRs. This paper will describe a method for designing a state-of-the-art aeration system for aerobic IFAS zones and MBBRs. The methodology presented in this paper may be used to design aeration systems typical of state-of-the-art aerobic free moving plastic biofilm carrier-based reactors.
Aerobic integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBRs) use an engineered aeration system consisting of stainless-steel pipe diffusers, manifold (or submerged air header), down pipes, and manually operated air-flow control valves. The so-called medium-bubble diffuser has a large diameter (i.e., 4-mm) orifice that is situated along the underside of the...
Author(s)
Chandler JohnsonJoshua P. Boltz
SourceProceedings of the Water Environment Federation
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Oct, 2013
ISSN1938-6478
DOI10.2175/193864713813685403
Volume / Issue2013 / 13
Content sourceWEFTEC
Copyright2013
Word count205

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Description: Aeration system design in integrated fixed-film activated sludge (IFAS) and moving...
Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes
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Description: Aeration system design in integrated fixed-film activated sludge (IFAS) and moving...
Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes
Abstract
Aerobic integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBRs) use an engineered aeration system consisting of stainless-steel pipe diffusers, manifold (or submerged air header), down pipes, and manually operated air-flow control valves. The so-called medium-bubble diffuser has a large diameter (i.e., 4-mm) orifice that is situated along the underside of the stainless steel pipe diffuser. Therefore, medium-bubble diffusers are not as susceptible to scaling and fouling as fine-bubble diffusers, and operational experience has proven that medium-bubble diffusers require significantly less maintenance than fine-bubble diffusers. The oxygen transfer efficiency (OTE) of a medium-bubble diffuser is better than that of a typical coarse-bubble diffuser. The presence of free moving plastic biofilm carriers in a bioreactor improves OTE. Unfortunately, there is not a generally accepted design criteria for the aeration systems that are used in aerobic IFAS zones and MBBRs. This paper will describe a method for designing a state-of-the-art aeration system for aerobic IFAS zones and MBBRs. The methodology presented in this paper may be used to design aeration systems typical of state-of-the-art aerobic free moving plastic biofilm carrier-based reactors.
Aerobic integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBRs) use an engineered aeration system consisting of stainless-steel pipe diffusers, manifold (or submerged air header), down pipes, and manually operated air-flow control valves. The so-called medium-bubble diffuser has a large diameter (i.e., 4-mm) orifice that is situated along the underside of the...
Author(s)
Chandler JohnsonJoshua P. Boltz
SourceProceedings of the Water Environment Federation
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Oct, 2013
ISSN1938-6478
DOI10.2175/193864713813685403
Volume / Issue2013 / 13
Content sourceWEFTEC
Copyright2013
Word count205

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Chandler Johnson# Joshua P. Boltz. Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 9 Oct. 2025. <https://www.accesswater.org?id=-281421CITANCHOR>.
Chandler Johnson# Joshua P. Boltz. Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed October 9, 2025. https://www.accesswater.org/?id=-281421CITANCHOR.
Chandler Johnson# Joshua P. Boltz
Aeration system design in integrated fixed-film activated sludge (IFAS) and moving bed biofilm reactors (MBBR) using stainless steel pipe diffusers, manifold, and down pipes
Access Water
Water Environment Federation
December 22, 2018
October 9, 2025
https://www.accesswater.org/?id=-281421CITANCHOR