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- W4385382660 abstract "Sonocatalysis has emerged as a promising technology for addressing environmental pollution issues. However, the efficacy of sonocatalytic processes is primarily hindered by challenges related to the sluggish flow rate of photogenerated electrons. The manuscript presents a novel approach to address this issue by developing an improved Z-scheme NiFe2O4/MXene/Bi2WO6 (NMB) composite that exhibits exceptional sonocatalytic activity for ciprofloxacin (CIP) degradation. In particular, the NiFe2O4/MXene(5 wt%)/Bi2WO6 composite displayed the highest CIP (at 10 mg/L) degradation efficiency (97.39 %) within 60 min under ultrasonic irradiation. The exceptional sonocatalytic activity for the composite was attributed to the synergistic interaction of the Z-scheme heterojunction charge transfer route and the electron mediator Ti3C2-MXene, which enhanced light collection capacity, separated photogenerated carriers efficiently, and exhibited high redox activity. The scavenging experiments revealed that the sonocatalytic degradation of CIP was driven by holes (h+) and hydroxyl radicals (•OH), with the former playing a dominant role. The present research demonstrates the outstanding sonocatalytic stability of the catalyst, as well as its uncomplicated recuperation process, through a series of recycling experiments. The findings indicate that the developed NMB Z-scheme composite shows promise for sonocatalytic treatment of antibiotics in industrial wastewater, particularly in high turbidity or low transparency cases, while also opening avenues for developing efficient and cost-effective catalysts for wastewater treatment due to its recyclability and remarkable performance." @default.
- W4385382660 created "2023-07-30" @default.
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- W4385382660 date "2023-11-01" @default.
- W4385382660 modified "2023-10-14" @default.
- W4385382660 title "Recyclable MXene-bridged Z-scheme NiFe2O4/MXene/Bi2WO6 heterojunction with enhanced charge separation for efficient sonocatalytic removal of ciprofloxacin" @default.
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- W4385382660 doi "https://doi.org/10.1016/j.scitotenv.2023.165833" @default.
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