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Three-Dimensionally Printed Microfluidic Cross-flow System for Ultrafiltration/Nanofiltration Membrane Performance Testing
Published on: February 13, 2016
High flux polysulfone/nano-zirconia composite microfiltration membranes containing water channels for wastewater
Haoming Qu1, Hongyang Ma2,3, Benjamin S Hsiao4
1State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, 100029, Beijing, China.
Abstract:
Polysulfone (PSF)/nano-zirconia (nano-ZrO2) composite microfiltration membranes with hydrophilic water channels were fabricated via non-solvent-induced phase separation (NIPS) and reinforced with a polyphenylene sulfide (PPS) woven substrate for efficient and chemically robust filtration. The composite membrane exhibited a bicontinuous phase structure, where nano-ZrO2 particles were distributed and organized to form water channels, thereby facilitating water molecule transport, as confirmed by SEM, AFM, and TEM measurements and molecular dynamics simulations. The composite membrane achieved over 98% rejection of 0.2-μm-diameter microspheres and nearly 100% rejection of 0.5-μm-diameter microspheres, respectively, as well as a > 6.4 log reduction value (LRV) against E. coli, while the permeability of the membrane was as high as 11.1 L m⁻2 h⁻1 kPa⁻1, which was 2.5-times higher than that of commercially available counterparts. The membrane also maintained 97.0% rejection after 720 h in 1 mol/L KOH and 100% rejection after 720 h in 0.1 mol/L HCl, indicating strong potential for industrial wastewater treatment.

