Quorum Quenching in Membrane Bioreactors for Fouling Retardation: Complexity Provides Opportunities

  • Xu, Boyan; 
  • Su, Qingxian; 
  • Yang, Yuxin; 
  • Huang, Shujuan; 
  • Yang, Yue; 
  • ... Choo, Kwang-Ho; 
  • 외 3명
Citations

WEB OF SCIENCE

45
Citations

SCOPUS

45

초록

The occurrence of biofouling restricts the widespread application of membrane bioreactors (MBRs) in wastewater treatment. Regulation of quorum sensing (QS) is a promising approach to control biofouling in MBRs, yet the underlying mechanisms are complex and remain to be illustrated. A fundamental understanding of the relationship between QS and membrane biofouling in MBRs is lacking, which hampers the development and application of quorum quenching (QQ) techniques in MBRs (QQMBRs). While many QQ microorganisms have been isolated thus far, critical criteria for selecting desirable QQ microorganisms are still missing. Furthermore, there are inconsistent results regarding the QQ lifecycle and the effects of QQ on the physicochemical characteristics and microbial communities of the mixed liquor and biofouling assemblages in QQMBRs, which might result in unreliable and inefficient QQ applications. This review aims to comprehensively summarize timely QQ research and highlight the important yet often ignored perspectives of QQ for biofouling control in MBRs. We consider what this "information" can and cannot tell us and explore its values in addressing specific and important questions in QQMBRs. Herein, we first examine current analytical methods of QS signals and discuss the critical roles of QS in fouling-forming microorganisms in MBRs, which are the cornerstones for the development of QQ technologies. To achieve targeting QQ strategies in MBRs, we propose the substrate specificity and degradation capability of isolated QQ microorganisms and the surface area and pore structures of QQ media as the critical criteria to select desirable functional microbes and media, respectively. To validate the biofouling retardation efficiency, we further specify the QQ effects on the physicochemical properties, microbial community composition, and succession of mixed liquor and biofouling assemblages in MBRs. Finally, we provide scale-up considerations of QQMBRs in terms of the debated QQ lifecycle, practical synergistic strategies, and the potential cost savings of MBRs. This review presents the limitations of classic QS/QQ hypotheses in MBRs, advances the understanding of the role of QS/QQ in biofouling development/retardation in MBRs, and builds a bridge between the fundamental understandings and practical applications of QQ technology.

키워드

biofilm; quorumsensing; acyl homoserine lactones; soluble microbialproducts; extracellular polymericsubstances; life cycle assessment; WASTE-WATER TREATMENT; EXTRACELLULAR POLYMERIC SUBSTANCES; SOLUBLE MICROBIAL PRODUCTS; ACYL HOMOSERINE LACTONE; BIOFOULING CONTROL; BACTERIAL CONSORTIUM; ACTIVATED-SLUDGE; SIGNAL MOLECULES; BIOFILM; MBR
제목
Quorum Quenching in Membrane Bioreactors for Fouling Retardation: Complexity Provides Opportunities
저자
Xu, Boyan; Su, Qingxian; Yang, Yuxin; Huang, Shujuan; Yang, Yue; Shi, Xueqing; Choo, Kwang-Ho; Ng, How Yong; Lee, Chung-Hak
DOI
10.1021/acs.est.4c04535
발행일
2024-07-16
유형
Review
저널명
Environmental Science & Technology
권
58
호
30
페이지
13171 ~ 13193