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Simultaneous sludge minimization and membrane fouling mitigation in membrane bioreactors by using a microaerobic - Settling pretreatment module.
Zuo, Yi; Shao, Yanjun; Wang, Lihua; Sun, Yiyue; An, Ying; Jiang, Lu-Man; Yu, Nan; Hao, Rujie; Zhou, Chuanting; Tao, Jun; Zhou, Zhen.
Afiliação
  • Zuo Y; Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China.
  • Shao Y; Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China.
  • Wang L; Shanghai Chengtou Wastewater Treatment Co., Ltd, Shanghai, 201203, China.
  • Sun Y; Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China.
  • An Y; Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China.
  • Jiang LM; Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China.
  • Yu N; Jinluo Water Co., Ltd, Linyi, 276600, China.
  • Hao R; Jinluo Water Co., Ltd, Linyi, 276600, China.
  • Zhou C; Shanghai Urban Construction Design and Research Institute, Shanghai, 200125, China.
  • Tao J; Shanghai Chengtou Wastewater Treatment Co., Ltd, Shanghai, 201203, China.
  • Zhou Z; Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai, 200090, China; Shanghai Institute of Pollution Control and Ecological Security, Shanghai, 200092, China. Electronic ad
J Environ Manage ; 328: 116977, 2023 Feb 15.
Article em En | MEDLINE | ID: mdl-36495823
ABSTRACT
Membrane fouling is the major obstacle for membrane bioreactors operated at a long sludge retention time to reduce sludge production. In this study, a sludge process reduction (SPR) module, consisting of a microaerobic tank and a settler, was inserted before an anoxic/oxic MBR (AO-MBR) to achieve dual objectives of fouling alleviation and sludge reduction. Three SPR-MBRs were operated to investigate influences of sludge recirculation ratios from the SPR settler to the microaerobic tank on process performance. Compared to AO-MBR, the SPR-MBRs reduced sludge production by 43.1-56.4% by maintaining sludge retention times above 175 d, and decreased foulant layer resistance and pore clogging resistance. Inserting SPR reduced the accumulation of dissolved organic matters and extracellular polymeric substances, enlarged sludge flocs, and decreased sludge viscoelasticity. However, increasing RSPR stimulated outward diffusion of extracellular polymeric substances and increased sludge viscosity. SPR-MBRs achieved effective sludge reduction by enriching hydrolytic (Trichococcus and Aeromonas) and fermentative genera (Lactococcus, Paludibacter, Macellibacteroides, and Acinetobacter) in the SPR, and alleviated membrane fouling by prohibiting the growth of extracellular polymeric substance-secreting bacteria and enriching filamentous bacteria to enlarge particle size. The results revealed that the SPR-MBR maximized sludge reduction with a very long sludge retention time, and alleviated membrane fouling synchronously.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Esgotos / Matriz Extracelular de Substâncias Poliméricas Idioma: En Revista: J Environ Manage Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Esgotos / Matriz Extracelular de Substâncias Poliméricas Idioma: En Revista: J Environ Manage Ano de publicação: 2023 Tipo de documento: Article País de afiliação: China