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Author:

Wang, Kai-Lun (Wang, Kai-Lun.) | Liu, Fang (Liu, Fang.) | Guan, Yu-Qi (Guan, Yu-Qi.) | Zhu, Xue-Dong (Zhu, Xue-Dong.) | Dong, Dan (Dong, Dan.) | Xue, Xiao-Lei (Xue, Xiao-Lei.) | Ma, Yan-Lin (Ma, Yan-Lin.) | Luan, Gui-Rong (Luan, Gui-Rong.) | Guo, Jin (Guo, Jin.) (Scholars:郭瑾)

Indexed by:

EI Scopus PKU PubMed CSCD

Abstract:

Polyvinylidene fluoride (PVDF) hollow fiber ultrafiltration membranes were modified with carbon nanotubes (CNT). Hybrid pre-ozonation and CNT modification were investigated by experimentally manipulating the ozonation process, threshold flux, and membrane fouling. The results showed that the threshold fluxes of the unmodified membrane and hybrid process were 45 L•(m2•h)-1 and 81 L•(m2•h)-1, respectively. Additionally, the fouling rate of the hybrid process was about 0.001 37 kPa•min-1•L-1•m2•h, which was notably lower compared to other process. The results showed that the filtration volume under threshold flux was higher than that under critical flux with the same CNT loading mass and ozone dosage. This comparison indicated that membrane fouling was alleviated under threshold flux and that the corresponding operation period was extended. Through the carbon balance experiment, the fouling capacity and recoverability improved remarkably after CNT modification. Additionally, ozonation could enhance the recoverability of membranes. The hybrid process examined in this study could dramatically improve the permeability and extend the operation time of the ultrafiltration membrane. © 2019, Science Press. All right reserved.

Keyword:

Membrane fouling Ozonization Carbon nanotubes Sewage Ozone Ultrafiltration Fluorine compounds Membranes

Author Community:

  • [ 1 ] [Wang, Kai-Lun]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 2 ] [Liu, Fang]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 3 ] [Guan, Yu-Qi]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 4 ] [Zhu, Xue-Dong]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 5 ] [Dong, Dan]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 6 ] [Xue, Xiao-Lei]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 7 ] [Ma, Yan-Lin]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 8 ] [Luan, Gui-Rong]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China
  • [ 9 ] [Guo, Jin]School of Environmental and Energy Engineering, Beijing University of Technology, Beijing; 100124, China

Reprint Author's Address:

  • 郭瑾

    [guo, jin]school of environmental and energy engineering, beijing university of technology, beijing; 100124, china

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Source :

Environmental Science

ISSN: 0250-3301

Year: 2019

Issue: 2

Volume: 40

Page: 738-746

Cited Count:

WoS CC Cited Count: 0

SCOPUS Cited Count: 1

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 6

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