the poly(m-phenyleneisophthalamide) (PMIA) braided tube reinforced (PBR) poly(tetrafluoroethylene-
co
-perfluoropropyl vinyl ether)(PFA) hollow fiber membrane was prepared
via
dipping-sintering method with the PFA and poly(vinyl alcohol)(PVA) as membrane-forming polymer and bonding agent
respectively. The membrane surface structure was adjusted by changing the sintering temperature and graphene (GE) content
and the influence of membrane structure and oil-water separation performance were investigated by scanning electron microscopy (SEM)
thermogravimetric (TG)
Fourier transform infrared (FTIR)
pore size analysis and oil-water separation experiment. The morphology observation shows that the surface PFA melts and permeates into the PMIA braided tube after sintering
and separation layer is closely combined with the support layer. The experiment results also indicate that with sintering temperature increasing
the oil flux decreases. On the other hand
with GE content increasing
the water contact angle
roughness
and porosity of PBR-PFA/GE hollow fiber membrane decrease
however
the oil flux increases initially and then decreases
the oil-water separation efficiency increases gradually. Furthermore
the introduction of GE not only has a similar effect on the increase of sintering temperature
but also results in two different ways of pore formation on the membrane surface. The PBR-PFA/GE hollow fiber membrane exhibits excellent hydrophobicity and lipophilicity with more than 97% separation efficiency for different oil products at −0.02 MPa. In addition
the membrane shows higher separation ability to the water-in-oil emulsion
and maintains a fine flux recovery rate after recycling
making it possible to apply in the field of wastewater treatment.
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Related Institution
Department of Textiles, Tianjin Polytechnic University, State Key Laboratory of Hollow Fiber Membrane Materials and Processes, Tianjin Polytechnic University
Anhui Province Key Laboratory of Environment-friendly Polymer Materials, School of Chemistry & Chemical Engineering, Anhui University
College of Materials Science & Engineering, Beijing University of Chemical Technology
Key Laboratory for the Synthesis and Application of Organic Functional Molecules, Ministry of Education, Hubei Collaborative Innovation Center for Advanced, College of Chemistry and Chemical Engineering, Hubei University
School of Chemistry, Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, Beihang University