Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-Review

This mini-review reports the effect of aerobic granular sludge (AGS) on performance and membrane-fouling in combined aerobic granular sludge–membrane bioreactor (AGS–MBR) systems. Membrane-fouling represents a major drawback hampering the wider application of membrane bioreactor (MBR) technology. Fo...

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Main Authors: Riccardo Campo, Claudio Lubello, Tommaso Lotti, Gaetano Di Bella
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Membranes
Subjects:
EPS
Online Access:https://www.mdpi.com/2077-0375/11/4/261
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spelling doaj-5df118ee51314fd1804178888066e86f2021-04-04T23:00:23ZengMDPI AGMembranes2077-03752021-04-011126126110.3390/membranes11040261Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-ReviewRiccardo Campo0Claudio Lubello1Tommaso Lotti2Gaetano Di Bella3Department of Civil and Environmental Engineering—(DICEA), University of Florence, 50100 Florence, ItalyDepartment of Civil and Environmental Engineering—(DICEA), University of Florence, 50100 Florence, ItalyDepartment of Civil and Environmental Engineering—(DICEA), University of Florence, 50100 Florence, ItalyFaculty of Engineering and Architecture, University of Enna “Kore”, 94100 Enna, ItalyThis mini-review reports the effect of aerobic granular sludge (AGS) on performance and membrane-fouling in combined aerobic granular sludge–membrane bioreactor (AGS–MBR) systems. Membrane-fouling represents a major drawback hampering the wider application of membrane bioreactor (MBR) technology. Fouling can be mitigated by applying aerobic granular sludge technology, a novel kind of biofilm technology characterized by high settleability, strong microbial structure, high resilience to toxic/recalcitrant compounds of industrial wastewater, and the possibility to simultaneously remove organic matter and nutrients. Different schemes can be foreseen for the AGS–MBR process. However, an updated literature review reveals that in the AGS–MBR process, granule breakage represents a critical problem in all configurations, which often causes an increase of pore-blocking. Therefore, to date, the objective of research in this sector has been to develop a stable AGS–MBR through multiple operational strategies, including the cultivation of AGS directly in an AGS–MBR reactor, the occurrence of an anaerobic-feast/aerobic-famine regime in continuous-flow reactors, maintenance of average granule dimensions far from critical values, and proper management of AGS scouring, which has been recently recognized as a crucial factor in membrane-fouling mitigation.https://www.mdpi.com/2077-0375/11/4/261membrane bioreactoraerobic granular sludgeEPSfoulingAGS–MBR
collection DOAJ
language English
format Article
sources DOAJ
author Riccardo Campo
Claudio Lubello
Tommaso Lotti
Gaetano Di Bella
spellingShingle Riccardo Campo
Claudio Lubello
Tommaso Lotti
Gaetano Di Bella
Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-Review
Membranes
membrane bioreactor
aerobic granular sludge
EPS
fouling
AGS–MBR
author_facet Riccardo Campo
Claudio Lubello
Tommaso Lotti
Gaetano Di Bella
author_sort Riccardo Campo
title Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-Review
title_short Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-Review
title_full Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-Review
title_fullStr Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-Review
title_full_unstemmed Aerobic Granular Sludge–Membrane BioReactor (AGS–MBR) as a Novel Configuration for Wastewater Treatment and Fouling Mitigation: A Mini-Review
title_sort aerobic granular sludge–membrane bioreactor (ags–mbr) as a novel configuration for wastewater treatment and fouling mitigation: a mini-review
publisher MDPI AG
series Membranes
issn 2077-0375
publishDate 2021-04-01
description This mini-review reports the effect of aerobic granular sludge (AGS) on performance and membrane-fouling in combined aerobic granular sludge–membrane bioreactor (AGS–MBR) systems. Membrane-fouling represents a major drawback hampering the wider application of membrane bioreactor (MBR) technology. Fouling can be mitigated by applying aerobic granular sludge technology, a novel kind of biofilm technology characterized by high settleability, strong microbial structure, high resilience to toxic/recalcitrant compounds of industrial wastewater, and the possibility to simultaneously remove organic matter and nutrients. Different schemes can be foreseen for the AGS–MBR process. However, an updated literature review reveals that in the AGS–MBR process, granule breakage represents a critical problem in all configurations, which often causes an increase of pore-blocking. Therefore, to date, the objective of research in this sector has been to develop a stable AGS–MBR through multiple operational strategies, including the cultivation of AGS directly in an AGS–MBR reactor, the occurrence of an anaerobic-feast/aerobic-famine regime in continuous-flow reactors, maintenance of average granule dimensions far from critical values, and proper management of AGS scouring, which has been recently recognized as a crucial factor in membrane-fouling mitigation.
topic membrane bioreactor
aerobic granular sludge
EPS
fouling
AGS–MBR
url https://www.mdpi.com/2077-0375/11/4/261
work_keys_str_mv AT riccardocampo aerobicgranularsludgemembranebioreactoragsmbrasanovelconfigurationforwastewatertreatmentandfoulingmitigationaminireview
AT claudiolubello aerobicgranularsludgemembranebioreactoragsmbrasanovelconfigurationforwastewatertreatmentandfoulingmitigationaminireview
AT tommasolotti aerobicgranularsludgemembranebioreactoragsmbrasanovelconfigurationforwastewatertreatmentandfoulingmitigationaminireview
AT gaetanodibella aerobicgranularsludgemembranebioreactoragsmbrasanovelconfigurationforwastewatertreatmentandfoulingmitigationaminireview
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