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Efficient removal of polystyrene nanoplastics from complex water system through multiple driving forces with MOF-based composite
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A review on micro and nano plastics removal from aqueous environment through bionanomaterials
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This review evaluates emerging bionanomaterials — including layered double hydroxides, magnetic nano-Fe3O4, carbon-based adsorbents, and electrospun nanofiber membranes — as green remediation tools for removing micro- and nanoplastics from water, with some achieving up to 90% removal efficiency. Developing effective, scalable, and environmentally benign removal technologies is urgent given that conventional water treatment plants are poorly equipped to intercept the smallest plastic particles that pose the greatest risk to human health.
Efficient removal of polystyrene nanoplastics from complex water system through multiple driving forces with MOF-based composite
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Researchers integrated the metal-organic framework UIO-66 into melamine foam to create a composite adsorbent (UMF) that removes polystyrene nanoplastics from water with 65.5 mg/g capacity, maintaining over 81% efficiency after 25 reuse cycles and across a broad pH range, through multiple simultaneous binding mechanisms.
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