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Nanoconfined heterogeneous catalysis triggered by copper oxide supported metal–organic framework UiO-66-NH2/peroxymonosulfate for rapidly removing bisphenol A in water

  • Jiayun Liu,
  • Zhiyi Lai,
  • Kaiyong Wang,
  • Xinyu Zhang,
  • Jianning Wu,
  • Shengchao Yang,
  • Zhiyong Liu,
  • Guihua Meng,
  • Xuhong Guo

摘要

CuO@UiO-66-NH2 was constructed using a hydrothermal method and used for the enhanced peroxymonosulfate (PMS) activation and bisphenol A (BPA) degradation. The results showed that under the optimal conditions, the degradation rate of BPA (6 mg/L) was 95.08%, and the leaching amount of copper ions was 0.42 mg/L. After five cycles, the degradation rate of the catalyst still exceeded 90%, indicating that the catalyst has good stability. Through quenching experiments, CuO@UiO-66-NH2/PMS catalytic system includes both free radical and non-free radical pathways, among which the non-free radical 1O2 is the main reactive oxygen species for degrading BPA. The intermediate of the reaction was identified through liquid chromatography-mass spectrometry (LC–MS) in the experiment, and the degradation mechanism and pathway of the catalyst were proposed.