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    AuthorChisca, Stefan (1)
    Ghaffour, NorEddine (1)
    Khalid, Mohammed Khalil (1)
    Nunes, Suzana Pereira (1)
    Srivatsa Bettahalli, N.M. (1)View MoreDepartmentAnalytical Chemistry Core Lab (1)Analytical Core Lab (1)
    Biological and Environmental Sciences and Engineering (BESE) Division (1)
    Environmental Science and Engineering Program (1)
    Water Desalination and Reuse Research Center (WDRC) (1)Journal
    Desalination (1)
    PublisherElsevier BV (1)SubjectHollow fibers (1)Membrane distillation (1)Polyoxadiazole (1)Produced water (1)View MoreTypeArticle (1)Year (Issue Date)2018 (1)Item AvailabilityMetadata Only (1)

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    Polyoxadiazole hollow fibers for produced water treatment by direct contact membrane distillation

    Xu, Jingli; Srivatsa Bettahalli, N.M.; Chisca, Stefan; Khalid, Mohammed Khalil; Ghaffour, NorEddine; Vilagines, Régis; Nunes, Suzana Pereira (Desalination, Elsevier BV, 2018-01-08) [Article]
    Treatment of produced water in the petroleum industry has been a challenge worldwide. In this study, we evaluated the use of direct contact membrane distillation (DCMD) for this purpose, removing oil and dissolved elements and supplying clean water from waste. We synthesized fluorinated polyoxadiazole, a highly hydrophobic polymer, to fabricate hollow fiber membranes, which were optimized and tested for simulated produced water and real produced water treatment. The process performance was investigated under different operating parameters, such as feed temperature, feed flow velocity and length of the membrane module for 4 days. The results indicate that by increasing feed temperature and feed flow rate the vapor flux increases. The flux decreased with increasing the length of the module due to the decrease of the driving force along the module. The fouling behavior, which corresponds to flux decline and cleaning efficiency of the membrane, was studied. The performance of the fabricated hollow fiber membranes was demonstrated for the treatment of produced water, complying with the industrial reuse and discharge limits.
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