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- W3047919501 abstract "To enhance the cleaning efficiency of the ultrafiltration membrane for wastewater, nano spinel CoFe2O4 was synthesized on diatomite via hydrothermal reaction strategy to prepare nano spinel CoFe2O4 deposited diatomite (CF/Dt) particles for activating peroxymonosulfate (PMS), and then used as a functional layer to form CF/Dtcatalytic separation membrane (CF/Dt-M) to remove small and medium molecular pollutants by precise separation and catalytical oxidation. CF/Dt particles and CF/Dt-M were characterized by SEM. The CF/Dt-M was used to deeply clean simulated wastewater containing oil and rhodamine B for investigating its separation and catalytic oxidation performances. The results show that nano spinel CoFe2O4 particles with diameter of 20–100 nm are deposited on the surface of diatomite, and the thickness of CF/Dt-M functional layer is 44 μm. After cleaning simulated wastewater using CF/Dt-M, concentration of oil, RhB and COD in permeate reduces from 57 mg L−1, 20 mg L−1, 231 mg·L−1 to 8 mg·L−1, 0 mg L−1 and 47 mg L−1, respectively. Water yield of CF/Dt-M is 658 L m−2 h−1 under 0.06 MPa. Nano spinel CoFe2O4 in CF/Dt-M can efficiently activate a small amount of PMS to release a lot of SO4•-, making CF/Dt-M perform properties of precise separation and catalytic oxidation. Therefore, CF/Dt-M is a promising candidate extensively applied for cleaning wastewater." @default.
- W3047919501 created "2020-08-13" @default.
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- W3047919501 date "2020-12-01" @default.
- W3047919501 modified "2023-10-14" @default.
- W3047919501 title "Nano spinel CoFe2O4 deposited diatomite catalytic separation membrane for efficiently cleaning wastewater" @default.
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- W3047919501 doi "https://doi.org/10.1016/j.memsci.2020.118559" @default.
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