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- W4378965564 abstract "Effective capture of antibiotic residues from different fluidic sources is still a challenge in dealing with existence of the chemicals in nature, especially with presence of other pollutants and suspended solids in the systems. Here, we report preparation of a novel macroporous metal−polyphenol/melamine foam (MF) composite ([email protected]) as a filtration matrix. The [email protected] matrix has rapid and effective adsorption to tetracycline (TC) in aqueous systems and could provide 99% TC removal efficiency from wastewater with a maximum capacity (650 mg.g-1) within 30 minutes. The TC adsorption on [email protected] are basically via multiple types of chemical interactions between TC and the functionalized MF surfaces, these mechanisms were confirmed by confocal imaging, XPS and fluorescence spectra. The [email protected] could reach 100% removal of TC at a flow rate 60 mL.h-1 with a dynamic adsorption capacity 600 mg.L-1. Furthermore, the [email protected] showed proper thermal and chemical stability and reusability of up to 20 cycles of reuses, and the recycling process was environmentally friendly. In addition, the [email protected] showed >95% removal efficiency of TC from real milk and dairy manure wastewater through a dynamic adsorption system. The macroporous framework matrix with rapid and efficient removal of antibiotics from milk and wastewater present great potential for practical applications of removing other emerging pollutants from various fluidic streams." @default.
- W4378965564 created "2023-06-02" @default.
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- W4378965564 date "2023-09-01" @default.
- W4378965564 modified "2023-09-23" @default.
- W4378965564 title "Design, preparation, and application of novel multilayer metal-polyphenol composite on macroporous framework melamine foam for effective filtration removal of tetracycline in fluidic systems" @default.
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- W4378965564 doi "https://doi.org/10.1016/j.seppur.2023.124238" @default.
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