Versatile mixed-matrix membranes based on AMCD-ZIF and PVC for sustainable water remediation
Fatima Youness, Assil Koubeissy, Rana A. Bilbeisi

TL;DR
A new membrane made of AMCD-ZIF and PVC efficiently removes heavy metals and anions from water, offering a sustainable and reusable solution for water purification.
Contribution
The study extends the application of AMCD-ZIF/PVC membranes to remove heavy metals and anions, demonstrating high efficiency and scalability.
Findings
The membrane achieved high adsorption capacities for Pb(ii), Ag(i), and Cd(ii) in rapid filtration.
It removed anionic contaminants like nitrate and nitrite with high efficiency in real contaminated water.
The membrane maintained performance across multiple regeneration cycles.
Abstract
Heavy metal ions and inorganic anions in water sources pose serious environmental and health hazards, necessitating versatile and scalable treatment solutions. In this study, we employ a mixed-matrix membrane based on amine-carboxamide-modified zeolitic imidazolate frameworks (AMCD-ZIF) embedded in electrospun polyvinyl chloride (PVC) nanofibers for the removal of diverse water pollutants. The incorporation of AMCD into PVC nanofibers had been previously optimized for the removal of organic dyes and crude oil from water. Building on this optimized hybrid membrane, we extend its application to the removal of toxic heavy metals and inorganic anions. The functionalized membranes exhibited high adsorption capacities—up to 1666.7 mg g−1 for Pb(ii), 400 mg g−1 for Ag(i), and 666.7 mg g−1 for Cd(ii)—and demonstrated preferential uptake of Pb(ii) in competitive metal systems. Under rapid…
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Taxonomy
TopicsMembrane Separation Technologies · Membrane Separation and Gas Transport · Extraction and Separation Processes
