References

  1. M. Wang, L. Zhang, G. Zhang, T. Pang, X. Zhang, D. Cai, Z. Wu, In situ degradation of antibiotic residues in medical intravenous infusion bottles using high energy electron beam irradiation, Sci. Rep., 7 (2017) 39928.
  2. I. Sires, E. Brillas, Remediation of water pollution caused by pharmaceutical residues based on electrochemical separation and degradation technologies: a review, Environ. Int., 40 (2012) 212–229.
  3. Y. Sun, W. Zheng, S. Fu, R.P. Singh, Immobilization of iron phthalocyanine on 4-aminopyridine grafted polystyrene resin as a catalyst for peroxymonosulfate activation in eliminating tetracycline hydrochloride, Chem. Eng. J., 391 (2020) 123611.
  4. H.U. Rasheed, X. Lv, S. Zhang, W. Wei, N. ullah, J. Xie, Ternary MIL-100(Fe)@Fe3O4/CA magnetic nanophotocatalysts (MNPCs): magnetically separable and Fenton-like degradation of tetracycline hydrochloride, Adv. Powder Technol., 29 (2018) 3305–3314.
  5. J. De Coster, W. Vanherck, L. Appels, R. Dewil, Selective electrochemical degradation of 4-chlorophenol at a Ti/RuO2-IrO2 anode in chloride rich wastewater, J. Environ. Manage., 190 (2017) 61–71.
  6. V. Poza-Nogueiras, E. Rosales, M. Pazos, M.A. Sanroman, Current advances and trends in electro-Fenton process using heterogeneous catalysts - a review, Chemosphere, 201 (2018) 399–416.
  7. A. Babuponnusami, K. Muthukumar, A review on Fenton and improvements to the Fenton process for wastewater treatment, J. Environ. Chem. Eng., 2 (2014) 557–572.
  8. L. Xu, J. Wang, Fenton-like degradation of 2,4-dichlorophenol using Fe3O4 magnetic nanoparticles, Appl. Catal. B, 123–124 (2012) 117–126.
  9. F. Ghanbari, C.A. Martínez-Huitle, Electrochemical advanced oxidation processes coupled with peroxymonosulfate for the treatment of real washing machine effluent: a comparative study, J. Electroanal. Chem., 847 (2019) 113182.
  10. I.M. Ahmed, M.S. Gasser, Adsorption study of anionic reactive dye from aqueous solution to Mg–Fe–CO3 layered double hydroxide (LDH), Appl. Surf. Sci., 259 (2012) 650–656.
  11. Y. Huang, Y. Yang, X. Wang, X. Yuan, N. Pi, H. Yuan, X. Liu, C. Ni, Heterogeneous Fenton-like degradation of methoxychlor in water using two different FeS@hydrotalcites (LHDs) and Fe3O4 @LHDs catalysts prepared via an in situ growth method, Chem. Eng. J., 342 (2018) 142–154.
  12. N. Fernández-Sáez, D.E. Villela-Martinez, F. Carrasco-Marín, A.F. Pérez-Cadenas, L.M. Pastrana-Martínez, Heteroatomdoped graphene aerogels and carbon-magnetite catalysts for the heterogeneous electro-Fenton degradation of acetaminophen in aqueous solution, J. Catal., 378 (2019) 68–79.
  13. C. Sun, S.-T. Yang, Z. Gao, S. Yang, A. Yilihamu, Q. Ma, R.-S. Zhao, F. Xue, Fe3O4/TiO2/reduced graphene oxide composites as highly efficient Fenton-like catalyst for the decoloration of methylene blue, Mater. Chem. Phys., 223 (2019) 751–757.
  14. A. Wang, J. Qu, J. Ru, H. Liu, J. Ge, Mineralization of an azo dye Acid Red 14 by electro-Fenton’s reagent using an activated carbon fiber cathode, Dyes Pigm., 65 (2005) 227–233.
  15. B. Bektasoglu, M. Ozyurek, K. Guclu, R. Apak, Hydroxyl radical detection with a salicylate probe using modified CUPRAC spectrophotometry and HPLC, Talanta, 77 (2008) 90–97.
  16. H.T. Van, L.H. Nguyen, T.K. Hoang, T.T. Nguyen, T.N.H. Tran, T.B.H. Nguyen, X.H. Vu, M.T. Pham, T.P. Tran, T.T. Pham, H.D. Nguyen, H.-P. Chao, C.-C. Lin, X.C. Nguyen, Heterogeneous Fenton oxidation of paracetamol in aqueous solution using iron slag as a catalyst: degradation mechanisms and kinetics, Environ. Technol. Innov., 18 (2020) 100670.
  17. M. Ghasemi, A. Khataee, P. Gholami, R.D. Cheshmeh Soltani, Template-free microspheres decorated with Cu-Fe-NLDH for catalytic removal of gentamicin in heterogeneous electro- Fenton process, J. Environ. Manage., 248 (2019) 109236.
  18. L. Adlnasab, M. Ezoddin, M.A. Karimi, N. Hatamikia, MCM- 41@Cu–Fe–LDH magnetic nanoparticles modified with cationic surfactant for removal of Alizarin Yellow from water samples and its determination with HPLC, Res. Chem. Intermed., 44 (2018) 3249–3265.
  19. Z. Wu, X. Yuan, H. Zhong, H. Wang, L. Jiang, G. Zeng, H. Wang, Z. Liu, Y. Li, Highly efficient adsorption of Congo red in single and binary water with cationic dyes by reduced graphene oxide decorated NH2-MIL-68(Al), J. Mol. Liq., 247 (2017) 215–229.
  20. X. Wu, B. Li, X. Wen, Synthesis and adsorption properties of hierarchical Fe3O4@MgAl-LDH magnetic microspheres, J. Nanopart. Res., 19 (2017) 131.
  21. R. Han, W. Li, W. Pan, M. Zhu, D. Zhou, F.-s. Li, 1D Magnetic Materials of Fe3O4 and Fe with high performance of microwave absorption fabricated by electrospinning method, Sci. Rep., 4 (2014) 7493.
  22. K. Morimoto, K. Tamura, H. Yamada, T. Sato, M. Suzuki, Determination and reduction of Fe(III) incorporated into Mg–Fe layered double hydroxide structures, Appl. Clay Sci., 121–122 (2016) 71–76.
  23. L. Adlnasab, N. Shekari, A. Maghsodi, Optimization of arsenic removal with Fe3O4@Al2O3@Zn-Fe LDH as a new magnetic nano adsorbent using Box-Behnken design, J. Environ. Chem. Eng., 7 (2019) 102974.
  24. G. Zeng, Y. Liu, L. Tang, G. Yang, Y. Pang, Y. Zhang, Y. Zhou, Z. Li, M. Li, M. Lai, X. He, Y. He, Enhancement of Cd(II) adsorption by polyacrylic acid modified magnetic mesoporous carbon, Chem. Eng. J., 259 (2015) 153–160.
  25. Y.-J. Lin, D.-Q. Li, D.G. Evans, X. Duan, Modulating effect of Mg–Al–CO3 layered double hydroxides on the thermal stability of PVC resin, Polym. Degrad. Stab., 88 (2005) 286–293.
  26. J. Ni, J. Xue, L. Xie, J. Shen, G. He, H. Chen, Construction of magnetically separable NiAl LDH/Fe3O4–RGO nanocomposites with enhanced photocatalytic performance under visible light, Phys. Chem. Chem. Phys., 20 (2018) 414–421.
  27. Y. Xie, X. Yuan, Z. Wu, G. Zeng, L. Jiang, X. Peng, H. Li, Adsorption behavior and mechanism of Mg/Fe layered double hydroxide with Fe3O4-carbon spheres on the removal of Pb(II) and Cu(II), J. Colloid Interface Sci., 536 (2019) 440–455.
  28. N. Chubar, V. Gerda, O. Megantari, M. Mičušík, M. Omastova, K. Heister, P. Man, J. Fraissard, Applications versus properties of Mg–Al layered double hydroxides provided by their syntheses methods: alkoxide and alkoxide-free sol–gel syntheses and hydrothermal precipitation, Chem. Eng. J., 234 (2013) 284–299.
  29. X.Y. Chen, B.H. Liu, Z.P. Li, Fe3O4/C composites synthesized from Fe-based xerogels for anode materials of Li-ion batteries, Solid State Ionics, 261 (2014) 45–52.
  30. Y. Guo, Z. Gong, C. Li, B. Gao, P. Li, X. Wang, B. Zhang, X. Li, Efficient removal of uranium (VI) by 3D hierarchical Mg/Fe-LDH supported nanoscale hydroxyapatite: a synthetic experimental and mechanism studies, Chem. Eng. J., 392 (2020) 123682.
  31. P. Salimi, O. Norouzi, S.E.M. Pourhosseini, Two-step synthesis of nanohusk Fe3O4 embedded in 3D network pyrolytic marine biochar for a new generation of anode materials for lithium-ion batteries, J. Alloys Compd., 786 (2019) 930–937.
  32. N. Wang, T. Zheng, G. Zhang, P. Wang, A review on Fentonlike processes for organic wastewater treatment, J. Environ. Chem. Eng., 4 (2016) 762–787.
  33. A.T. Smith, A.M. LaChance, S. Zeng, B. Liu, L. Sun, Synthesis, properties, and applications of graphene oxide/reduced graphene oxide and their nanocomposites, Nano Mater. Sci., 1 (2019) 31–47.
  34. S.O. Ganiyu, M. Zhou, C.A. Martínez-Huitle, Heterogeneous electro-Fenton and photoelectro-Fenton processes: a critical review of fundamental principles and application for water/wastewater treatment, Appl. Catal. B, 235 (2018) 103–129.
  35. E. Brillas, S. Garcia-Segura, Benchmarking recent advances and innovative technology approaches of Fenton, photo-Fenton, electro-Fenton, and related processes: a review on the relevance of phenol as model molecule, Sep. Purif. Technol., 237 (2020) 116337.
  36. S.O. Ganiyu, T.X. Huong Le, M. Bechelany, N. Oturan, S. Papirio, G. Esposito, E. van Hullebusch, M. Cretin, M.A. Oturan, Electrochemical mineralization of sulfamethoxazole over wide pH range using FeIIFeIII LDH modified carbon felt cathode: degradation pathway, toxicity and reusability of the modified cathode, Chem. Eng. J., 350 (2018) 844–855.
  37. Y. Zhu, R. Zhu, Y. Xi, J. Zhu, G. Zhu, H. He, Strategies for enhancing the heterogeneous Fenton catalytic reactivity: a review, Appl. Catal. B, 255 (2019) 117739.
  38. P. Zhong, Q. Yu, J. Zhao, S. Xu, X. Qiu, J. Chen, Degradation of bisphenol A by Fe-Al layered double hydroxides: a new synergy of homo- and heterogeneous Fenton systems, J. Colloid Interface Sci., 552 (2019) 122–133.
  39. W. Qiao, H. Bai, T. Tang, J. Miao, Q. Yang, Recovery and utilization of phosphorus in wastewater by magnetic Fe3O4/Zn-Al-Fe-La layered double hydroxides(LDHs), Colloids Surf., A, 577 (2019) 118–128.
  40. Q. Wang, S. Tian, J. Long, P. Ning, Use of Fe(II)Fe(III)-LDHs prepared by co-precipitation method in a heterogeneous-Fenton process for degradation of Methylene Blue, Catal. Today, 224 (2014) 41–48.
  41. J. Casado, Towards industrial implementation of Electro-Fenton and derived technologies for wastewater treatment: a review, J. Environ. Chem. Eng., 7 (2019) 102823.
  42. Y. Zhang, S. Zuo, M. Zhou, L. Liang, G. Ren, Removal of tetracycline by coupling of flow-through electro-Fenton and in-situ regenerative active carbon felt adsorption, Chem. Eng. J., 335 (2018) 685–692.
  43. L. Tang, C. Feng, Y. Deng, G. Zeng, J. Wang, Y. Liu, H. Feng, J. Wang, Enhanced photocatalytic activity of ternary Ag/g-C3N4/NaTaO3 photocatalysts under wide spectrum light radiation: the high potential band protection mechanism, Appl. Catal. B, 230 (2018) 102–114.
  44. T. Luo, H. Feng, L. Tang, Y. Lu, W. Tang, S. Chen, J. Yu, Q. Xie, X. Ouyang, Z. Chen, Efficient degradation of tetracycline by heterogeneous electro-Fenton process using Cu-doped Fe@Fe2O3: mechanism and degradation pathway, Chem. Eng. J., 382 (2020) 122970.