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Description: Full Scale MABR Plants: From Process Concepts to Field Results
Full Scale MABR Plants: From Process Concepts to Field Results
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Description: Full Scale MABR Plants: From Process Concepts to Field Results
Full Scale MABR Plants: From Process Concepts to Field Results

Full Scale MABR Plants: From Process Concepts to Field Results

Full Scale MABR Plants: From Process Concepts to Field Results

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Description: Full Scale MABR Plants: From Process Concepts to Field Results
Full Scale MABR Plants: From Process Concepts to Field Results
Abstract
MABR are potentially energy efficient biological treatment, but also a unique biofilm process providing simultaneous nitrification and denitrification. A spirally wound flat sheet configuration of a MABR module was developed to operate in IFAS mode as a solution for small plants. Results from an operating plant show that design values are reached and sustained continuously, and that energy consumption of about 0.2 kWh/m3 is within the typical range for MABR.
MABR are potentially energy efficient biological treatment, but also a unique biofilm process providing simultaneous nitrification and denitrification. A spirally wound flat sheet configuration of a MABR module was developed to operate in IFAS mode as a solution for small plants. Results from an operating plant show that design values are reached and sustained continuously, and that energy...
Author(s)
Ronen Shechter
SourceProceedings of the Water Environment Federation
SubjectResearch Article
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jun, 2017
ISSN1938-6478
DOI10.2175/193864717821494123
Volume / Issue2017 / 3
Content sourceNutrient Removal and Recovery Symposium
Copyright2017
Word count80

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Description: Full Scale MABR Plants: From Process Concepts to Field Results
Full Scale MABR Plants: From Process Concepts to Field Results
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Description: Full Scale MABR Plants: From Process Concepts to Field Results
Full Scale MABR Plants: From Process Concepts to Field Results
Abstract
MABR are potentially energy efficient biological treatment, but also a unique biofilm process providing simultaneous nitrification and denitrification. A spirally wound flat sheet configuration of a MABR module was developed to operate in IFAS mode as a solution for small plants. Results from an operating plant show that design values are reached and sustained continuously, and that energy consumption of about 0.2 kWh/m3 is within the typical range for MABR.
MABR are potentially energy efficient biological treatment, but also a unique biofilm process providing simultaneous nitrification and denitrification. A spirally wound flat sheet configuration of a MABR module was developed to operate in IFAS mode as a solution for small plants. Results from an operating plant show that design values are reached and sustained continuously, and that energy...
Author(s)
Ronen Shechter
SourceProceedings of the Water Environment Federation
SubjectResearch Article
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jun, 2017
ISSN1938-6478
DOI10.2175/193864717821494123
Volume / Issue2017 / 3
Content sourceNutrient Removal and Recovery Symposium
Copyright2017
Word count80

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Ronen Shechter. Full Scale MABR Plants: From Process Concepts to Field Results. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 12 Jun. 2025. <https://www.accesswater.org?id=-279848CITANCHOR>.
Ronen Shechter. Full Scale MABR Plants: From Process Concepts to Field Results. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed June 12, 2025. https://www.accesswater.org/?id=-279848CITANCHOR.
Ronen Shechter
Full Scale MABR Plants: From Process Concepts to Field Results
Access Water
Water Environment Federation
December 22, 2018
June 12, 2025
https://www.accesswater.org/?id=-279848CITANCHOR