References

  1. X. Liu, T. Tan, Y. Bai, L. Chou, Restoration performance of regional soil and water resources in China based on index of coupling and improved assessment tool, Alexandria Eng. J., 61 (2021) 5677–5686.
  2. M. Pirsaheb, H. Mohamadisorkali, H. Hossaini, H. Hossini, P. Makhdoumi, The hybrid system successfully to consisting of activated sludge and biofilter process from hospital wastewater: ecotoxicological study, J. Environ. Manage. 276 (2020) 111098, doi: 10.1016/j.jenvman.2020.111098.
  3. I. Metushi, J. Uetrecht, E. Phillips, Mechanism of isoniazidinduced hepatotoxicity: then and now, Br. J. Clin. Pharmacol., 81 (2016) 1030–1036.
  4. E.A. Santos, J.C. Saraiva Gonçalves, M.K. Fleury, A.L. Kritski, M.M. Oliveira, L.S. Velasque, J.R. Lapae E Silva,
    R. de Cássia E Estrela, Relationship of anti-tuberculosis drug-induced liver injury and genetic polymorphisms in CYP2E1 and GST, Braz. J. Infect. Dis., 23 (2019) 381–387.
  5. S. Marwa, M.M. Mohamed, A.M. Munjed, A.H. Mohamed, H. Ashraf Aly, A. Jafar, J. Jinho, A critical review of the recent developments in micro–nano bubbles applications for domestic and industrial wastewater treatment, Alexandria Eng. J., 61 (2022) 6591–6612.
  6. R.R. Nair, P. Demarche, S.N. Agathos, Formulation and characterization of an immobilized laccase biocatalyst and its application to eliminate organic micropollutants in wastewater, New Biotechnol., 30 (2013) 814–823.
  7. H. Sun, D. Ren, R. Kong, D. Wang, H. Jiang, J. Tan, D. Wu, S. Chen, B. Shen, Tuning 1-hexene/n-hexane adsorption on MOF-74 via constructing Co-Mg bimetallic frameworks, Microporous Mesoporous Mater., 284 (2019) 151–160.
  8. J. Pratiwi, J.-Y. Lin, N.N.N. Mahasti, Y.-J. Shih, Y.-H. Huang, Fluidized-bed synthesis of iron-copper bimetallic catalyst (FeIIICuI@SiO2) for mineralization of benzoic acid in blue lightassisted Fenton process, J. Taiwan Inst. Chem. Eng., 119 (2021) 60–69.
  9. T. Sun, M. Gong, Y. Cai, S. Xiao, L. Zhang, Y. Zhang, Z. Xu, D. Zhang, Y. Liu, C. Zhou, MCM-41-supported Fe(Mn)/Cu bimetallic heterogeneous catalysis for enhanced and recyclable photo-Fenton degradation of methylene blue, Res. Chem. Intermed., 46 (2019) 459–474.
  10. S. Asadzadeh-Khaneghah, A. Habibi-Yangjeh, D. Seifzadeh, H. Chand, V. Krishnan, Visible-light-activated g-C3N4 nanosheet/carbon dot/FeOCl nanocomposites: photodegradation of dye pollutants and tetracycline hydrochloride, Colloids Surf., A, 617 (2021) 126424, doi: 10.1016/j.colsurfa.2021.126424.
  11. J. Zhang, G. Zhang, Q. Ji, H. Lan, J. Qu, H. Liu, Carbon nanodotmodified FeOCl for photo-assisted Fenton reaction featuring synergistic in-situ H2O2 production and activation, Appl. Catal., B, 266 (2020) 118665, doi: 10.1016/j.apcatb.2020.118665.
  12. X. Pan, X. Fan, A. Liang, S. Zhang, W. Wang, S. Qu, C. Li, Electron-rich CNTs modified FeOCl/Fe2O3 with improved Fenton catalytic performance, Compos. Commun., 27 (2021) 100811, doi: 10.1016/j.coco.2021.100811.
  13. M.A.N. Khan, P.K. Klu, C. Wang, W. Zhang, R. Luo, M. Zhang, J. Qi, X. Sun, L. Wang, J. Li, Metal-organic framework-derived hollow Co3O4/carbon as efficient catalyst for peroxymonosulfate activation, Chem. Eng. J., 363 (2019) 234–246.
  14. Y. Li, D. Chen, S. Fan, T. Yang, Enhanced visible light assisted Fenton-like degradation of dye via metal-doped zinc ferrite nanosphere prepared from metal-rich industrial wastewater, J. Taiwan Inst. Chem. Eng., 96 (2019) 185–192.
  15. X. Han, H. Zhang, T. Chen, M. Zhang, M. Guo, Facile synthesis of metal-doped magnesium ferrite from saprolite laterite as an effective heterogeneous Fenton-like catalyst, J. Mol. Liq., 272 (2018) 43–52.
  16. F. Liu, H. Yao, S. Sun, W. Tao, T. Wei, P. Sun, Photo-Fenton activation mechanism and antifouling performance of an FeOCl-coated ceramic membrane, Chem. Eng. J., 402 (2020) 125477, doi: 10.1016/j.cej.2020.125477.
  17. M. Nie, Y. Li, L. Li, J. He, P. Hong, K. Zhang, X. Cai, L. Kong, J. Liu, Ultrathin iron-cobalt oxide nanosheets with enhanced H2O2 activation performance for efficient degradation of tetracycline, Appl. Surf. Sci., 535 (2021) 147655, doi: 10.1016/j.apsusc.2020.147655.
  18. X. Shi, C. Cui, L. Zhang, J. Zhang, G. Liu, FeOCl/Ln (Ln = La or Y): efficient photo-Fenton catalysts for ibuprofen degradation, New J. Chem., 43 (2019) 16273–16280.
  19. L. Jiang, L. Zhang, C. Cui, J. Zhang, G. Liu, J. Song, Efficient degradation of phenol using Sn4+ doped FeOCl as photo-Fenton catalyst, Mater. Lett., 240 (2019) 30–34.
  20. S. Qu, W. Wang, X. Pan, C. Li, Improving the Fenton catalytic performance of FeOCl using an electron mediator, J. Hazard. Mater., 384 (2019) 121494, doi: 10.1016/j.jhazmat.2019.121494.
  21. D. Lu, Z. Chen, Q. Yang, S. Han, Efficient novel FeOCl/C with high singlet oxygen generation for TCH degradation, Chem. Phys. Lett., 800 (2022) 139664, doi: 10.1016/j.cplett.2022.139664.
  22. J. Wei, X. Feng, X. Hu, J. Yang, C. Yang, B. Liu, Cu(II) doped FeOCl as an efficient photo-Fenton catalyst for phenol degradation at mild pH, Colloids Surf., A 631 (2021) 127754, doi: 10.1016/j.colsurfa.2021.127754.
  23. L. Wang, H. Yang, L. Kang, M. Wu, Y. Yang, Highly dispersed of Ag/AgCl nanoparticles on exfoliated FeOCl nanosheets as photo-Fenton catalysts for pollutants degradation via accelerating Fe(II)/Fe(III) cycle, Chemosphere, 296 (2022) 134039, doi: 10.1016/j.chemosphere.2022.134039.
  24. W. Pei, J. Chen, D. You, Q. Zhang, M. Li, Y. Lu, Z. Fu, Y. He, Enhanced photovoltaic effect in Ca and Mn co-doped BiFeO3 epitaxial thin films, Appl. Surf. Sci., 530 (2020) 147194, doi: 10.1016/j.apsusc.2020.147194.
  25. S. Guan, R. Li, X. Sun, T. Xian, H. Yang, Construction of novel ternary Au/LaFeO3/Cu2O composite photocatalysts for RhB degradation via photo-Fenton catalysis, Mater. Technol., 36 (2020) 603–615.
  26. S. Qu, C. Li, X. Sun, J. Wang, H. Luo, S. Wang, J. Ta, D. Li, Enhancement of peroxymonosulfate activation and utilization efficiency via iron oxychloride nanosheets in visible light, Sep. Purif. Technol., 224 (2019) 132–141.
  27. E. Jara, J.A. Barreda-Argueso, J. Gonzalez, F. Rodriguez, R. Valiente, Origin of the piezochromism in Cs2CuCl4: electronphonon and crystal-structure correlations, Phys. Rev. B: Condens. Matter, 99 (2019) 134106,
    doi: 2469-9950/2019/99(13)/134106(9).
  28. J. Luo, M. Sun, C.L. Ritt, X. Liu, Y. Pei, J.C. Crittenden, M. Elimelech, Tuning Pb(II) adsorption from aqueous solutions on ultrathin iron oxychloride (FeOCl) nanosheets, Environ. Sci. Technol., 53 (2019) 2075–2085.
  29. Y. Zhu, R. Zhu, L. Yan, H. Fu, Y. Xi, H. Zhou, G. Zhu, J. Zhu, H. He, Visible-light Ag/AgBr/ferrihydrite catalyst with enhanced heterogeneous photo-Fenton reactivity via electron transfer from Ag/AgBr to ferrihydrite, Appl. Catal., B, 239 (2018) 280–289.
  30. J. Wang, Y. Li, Q. Jiang, S. Tong, Study on why FeOCl has high Fenton activity in wide range of initial pH and its corresponding stability, Process Saf. Environ. Prot., 172 (2023) 652–658.
  31. J. Chen, H. Wu, J. Liu, Y. Su, H. Li, P. Lin, Y. Chen, W. Xiao, D. Cao, Sb-doped FeOCl nanozyme-based biosensor for highly sensitive colorimetric detection of glutathione, Anal. Bioanal. Chem., 415 (2023) 1205–1219.
  32. D. Zhao, X. Liu, M. Peng, Y. Cheng, W. Zhang, L. Hu, L. Mao, Preparation of ternary composite (WS2-FeOCl-PANI) and its performance as auxiliary electrode in electrokinetic remediation of simulated Cr(VI) contaminated soil, J. Environ. Chem. Eng., 9 (2021) 106748, doi: 10.1016/j.jece.2021.106748.
  33. X. Liu, W. Zhang, M. Peng, G. Zhai, L. Hu, L. Mao, The role of S and Mo doping on the dissociation of water molecule on FeOCl surface: experimental and theoretical analysis, Chem. Eng. J., 426 (2021) 131353, doi: 10.1016/j.cej.2021.131353.
  34. J. Zhang, M. Yang, Y. Lian, M. Zhong, J. Sha, G. Liu, X. Zhao, S. Liu, Ce3+ self-doped CeOx/FeOCl: an efficient Fenton catalyst for phenol degradation under mild conditions, Dalton Trans., 48 (2019) 3476–3485.