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作者:

Zhang, J. (Zhang, J..) | Xiao, T.-M. (Xiao, T.-M..) | Cao, L.-Y. (Cao, L.-Y..) | Du, Y.-W. (Du, Y.-W..) | Liu, C. (Liu, C..) (学者:刘超) | Zhang, L. (Zhang, L..)

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摘要:

Shirasu porous glass (SPG) membranes have been applied for microbubble aeration in aerobic wastewater treatment. In the present study, both hydrophilic and hydrophobic SPG membranes were used in a microbubble-aerated biofilm reactor with online chemical cleaning, and their membrane fouling and chemical durability were determined to be strongly dependent on the membrane wettability. The fouling layer formed on the surface of both membranes was confirmed to be mainly organic fouling, and the hydrophobic membrane showed a relatively stronger resistance to the organic fouling. The severe chemical corrosion of the hydrophilic membrane was observed due to exposure to the alkaline sodium hypochlorite solution used for chemical cleaning, which resulted in significant increases in the median pore diameter and the porosity. On the other hand, the pore structure of the hydrophobic membrane changed slightly when exposed to the alkaline sodium hypochlorite solution, suggesting its strong alkali-resistance due to the non-wetting surface. However, the surface hydrophobic groups of hydrophobic membrane could be oxidized by sodium hypochlorite solution, resulting in more wettable membrane surface. The hydrophobic membrane also showed better performance in the respects of oxygen transfer, contaminant removal and energy-saving. Therefore, the hydrophobic membrane seemed more appropriate to be applied for microbubble aeration in aerobic wastewater treatment process. ©, 2015, Science Press. All right reserved.

关键词:

Chemical durability; Membrane fouling; Microbubble aeration; SPG membrane; Surface wettability

作者机构:

  • [ 1 ] [Zhang, J.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China
  • [ 2 ] [Zhang, J.]College of Architecture and Civil Engineering, Beijing University of Technology, Beijing, 100022, China
  • [ 3 ] [Xiao, T.-M.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China
  • [ 4 ] [Zhang, J.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China
  • [ 5 ] [Cao, L.-Y.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China
  • [ 6 ] [Du, Y.-W.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China
  • [ 7 ] [Liu, C.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China
  • [ 8 ] [Zhang, L.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China

通讯作者信息:

  • 刘超

    [Liu, C.]Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and TechnologyChina

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来源 :

Environmental Science

ISSN: 0250-3301

年份: 2015

期: 5

卷: 36

页码: 1694-1699

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SCOPUS被引频次: 1

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