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Biofunctionalized poly (amic) acid membranes for absolute disinfection of drinking water

Year: 2014

Journal: JOURNAL OF MEMBRANE SCIENCE, Vol. 472, p 261-271, 20150722

Authors: Yazgan, Idris; Du, Nian; Congdon, Robert; Okello, Veronica; Sadik, Omowunmi A.

Organizations: SUNY Binghamton, Dept Chem, Ctr Adv Sensors & Environm Syst CASE, Binghamton, NY 13902 USA; US Dept Homeland Secur, Labs & Sci Serv Directorate, Springfield Lab US Customs & Border Protect, Springfield, VA 22153 USA

The integration of biological building-blocks with synthetic nanomaterials may permit unprecedented ability to detect, disinfect and completely remove pathogens in water. We hereby described the synthesis of biodegradable, interpenetrating polymeric networks of poly (amic) acid (PAA), glutaraldehyde-derivatized PAA (PAA-GA) and chitosan-modified poly (amic) acid (PAA-CS) using phase-inversion procedures. The characterization data from NMR, FT-IR, SEM and cyclic voltammetry confirmed the successful formation of electroactive, bifunctional, glutaraldehyde-linked PAA membranes. Toxicological, electrochemical and mechanical characterization data showed the successful formation of non-toxic, biodegradable, porous, free-standing and mechanically strong membranes. PAA-GA showed the highest modulus of 568.1 Mpa followed by PAA-CS-GA (495.0 Mpa). The optimized membranes were tested against three of the most common drinking water contaminants, namely Escherichia colt, Citrobacter freundii and Staphylococcus epidermidis with 100% removal achieved using dead end filtration and tangential flow filtration. (C) 2014 Elsevier B.V. All rights reserved.