References

  1. J. Li, S. lin Zhou, G.-B. Hong, C.-T. Chang, Hydrothermal preparation of P25–graphene composite with enhanced adsorption and photocatalytic degradation of dyes, Chem. Eng. J., 219 (2013) 486–491.
  2. K. Azam, N. Shezad, I. Shafiq, P. Akhter, F. Akhtar, F. Jamil, S. Shafique, Y.-K. Park, M. Hussain, A review on activated carbon modifications for the treatment of wastewater containing anionic dyes, Chemosphere, 306 (2022) 135566, doi: 10.1016/j.chemosphere.2022.135566.
  3. Y. Xiong, P.J. Strunk, H. Xia, X. Zhu, H.T. Karlsson, Treatment of dye wastewater containing acid orange II using a cell with three-phase three-dimensional electrode, Water Res., 35 (2001) 4226–4230.
  4. G. Abbas Ashraf, M. Hassan, R. Tur Rasool, W. Abbas, L. Zhang, Mesoporous SnMgNd substituted
    M-hexaferrite catalyzed heterogeneous photo-Fenton-like activity for degradation of methylene blue, J. Colloid Interface Sci., 557 (2019) 408–422.
  5. M. Sillanpää, A.H. Mahvi, D. Balarak, A.D. Khatibi, Adsorption of Acid orange 7 dyes from aqueous solution using polypyrrole/ nanosilica composite: experimental and modelling, Int. J. Environ. Anal. Chem., 103 (2020) 212–229.
  6. N. Arora, A. Mehta, A. Mishra, S. Basu, 4-Nitrophenol reduction catalysed by Au-Ag bimetallic nanoparticles supported on LDH: homogeneous vs. heterogeneous catalysis, Appl. Clay Sci., 151 (2018) 1–9.
  7. D. Chebli, A. Bouguettoucha, A. Reffas, C. Tiar, M. Boutahala, H. Gulyas, A. Amrane, Removal of the anionic dye Biebrich scarlet from water by adsorption to calcined and non-calcined Mg–Al layered double hydroxides, Desal. Water Treat., 57 (2016) 22061–22073.
  8. R.G.L. Gonçalves, P.A. Lopes, J.A. Resende, F.G. Pinto, J. Tronto, M.C. Guerreiro, L.C.A. de Oliveira, W. de Castro Nunes, J.L. Neto, Performance of magnetite/layered double hydroxide composite for dye removal via adsorption, Fenton and photo-Fenton processes, Appl. Clay Sci., 179 (2019) 105152, doi: 10.1016/j.clay.2019.105152.
  9. X. Guo, K. Wang, Y. Xu, Tartaric acid enhanced CuFe2O4-catalyzed heterogeneous photo-Fenton-like degradation of methylene blue, Mater. Sci. Eng., B, 245 (2019) 75–84.
  10. W. Gao, S. Zhang, G. Wang, J. Cui, Y. Lu, X. Rong, C. Gao, A review on mechanism, applications and influencing factors of carbon quantum dots based photocatalysis, Ceram. Int., 48 (2022) 35986–35999.
  11. J. Xiao, J. Lai, R. Li, X. Fang, D. Zhang, P. Tsiakaras, Y. Wang, Enhanced ultrasonic-assisted heterogeneous fenton degradation of organic pollutants over a new copper magnetite (Cu-Fe3O4/Cu/C) nanohybrid catalyst, Ind. Eng. Chem. Res., 59 (2020) 12431–12440.
  12. S.D. Shifflett, J. Schubauer-Berigan, Assessing the risk of utilizing tidal coastal wetlands for wastewater management, J. Environ. Manage., 236 (2019) 269–279.
  13. Y.A. Patil, V. Mehta, M. Jachak, R. Bhise, K. Patel, G.S. Shankarling, Facile and rapid synthesis of novel hybrid pigments and their application as colorants in high-performance polymer, J. Mol. Struct., 1273 (2023) 134354, doi: 10.1016/j.molstruc.2022.134354.
  14. J. Xia, Y. Gao, G. Yu, Tetracycline removal from aqueous solution using zirconium-based metal-organic frameworks (Zr-MOFs) with different pore size and topology: adsorption isotherm, kinetic and mechanism studies, J. Colloid Interface Sci., 590 (2021) 495–505.
  15. S. Wang, C. Yuan, F.F. Zafar, M. Wei, F. Marrakchi, B. Cao, Y. Fu, Facile synthesis of chlorella-derived autogenous N-doped porous biochar for adsorption on tetracycline, Environ. Pollut., 330 (2023) 121717, doi: 10.1016/j.envpol.2023.121717.
  16. H. Atout, A. Bouguettoucha, D. Chebli, J.M. Gatica, H. Vidal, M.P. Yeste, A. Amrane, Integration of adsorption and photocatalytic degradation of methylene blue using TiO2 supported on granular activated carbon, Arabian J. Sci. Eng., 42 (2017) 1475–1486.
  17. R.A. Alvarez-Puebla, C. Valenzuela-Calahorro, J.J. Garrido, Theoretical study on fulvic acid structure, conformation and aggregation, Sci. Total Environ., 358 (2006) 243–254.
  18. M.S. Vasilyeva, V.S. Rudnev, A.A. Zvereva, A. Yu. Ustinov, O.D. Arefieva, V.G. Kuryavyi, G.A. Zverev, FeOx, SiO2, TiO2/Ti composites prepared using plasma electrolytic oxidation as photo-Fenton-like catalysts for phenol degradation, J. Photochem. Photobiol., A, 356 (2018) 38–45.
  19. J.-M. Herrmann, C. Guillard, P. Pichat, Heterogeneous photocatalysis: an emerging technology for water treatment, Catal. Today, 17 (1993) 7–20.
  20. B. Palas, G. Ersöz, S. Atalay, Photo-Fenton-like oxidation of tartrazine under visible and UV light irradiation in the presence of LaCuO3 perovskite catalyst, Process Saf. Environ. Prot., 111 (2017) 270–282.
  21. K. Wang, H. Niu, J. Chen, J. Song, C. Mao, S. Zhang, Y. Gao, Immobilizing LaFeO3 nanoparticles on carbon spheres for enhanced heterogeneous photo-Fenton like performance, Appl. Surf. Sci., 404 (2017) 138–145.
  22. M. Hartmann, S. Kullmann, H. Keller, Wastewater treatment with heterogeneous Fenton-type catalysts based on porous materials, J. Mater. Chem., 20 (2010) 9002–9017.
  23. J. Herney-Ramirez, M.A. Vicente, L.M. Madeira, Heterogeneous photo-Fenton oxidation with pillared clay-based catalysts for wastewater treatment: a review, Appl. Catal., B, 98 (2010) 10–26.
  24. C. Han, G. Huang, D. Zhu, K. Hu, Facile synthesis of MoS2/Fe3O4 nanocomposite with excellent photo-Fenton-like catalytic performance, Mater. Chem. Phys., 200 (2017) 16–22.
  25. X. Han, T. Chen, J. Li, F. Cheng, M. Zhang, M. Guo, Synthesis of (Ni,Mg,Cu)Fe2O4 from nickel sulfide ore: a novel heterogeneous photo-Fenton-like catalyst with enhanced activity in the presence of oxalic acid, J. Photochem. Photobiol., A, 390 (2020) 112308, doi: 10.1016/j.jphotochem.2019.112308.
  26. M. Hassan, H. Olvera-Vargas, X. Zhu, B. Zhang, Y. He, Microbial electro-Fenton: an emerging and energy-efficient platform for environmental remediation, J. Power Sources, 424 (2019) 220–244.
  27. S. Su, Y. Liu, X. Liu, W. Jin, Y. Zhao, Transformation pathway and degradation mechanism of methylene blue through β-FeOOH@ GO catalyzed photo-Fenton-like system, Chemosphere, 218 (2019) 83–92.
  28. S. Bae, D. Kim, W. Lee, Degradation of diclofenac by pyrite catalyzed Fenton oxidation, Appl. Catal., B, 134–135 (2013) 93–102.
  29. T. Zhang, T. Oyama, S. Horikoshi, H. Hidaka, J. Zhao, N. Serpone, Photocatalyzed N-demethylation and degradation of methylene blue in titania dispersions exposed to concentrated sunlight, Sol. Energy Mater. Sol. Cells, 73 (2002) 287–303.
  30. K. Sharma, P. Raizada, A. Hosseini-Bandegharaei, P. Thakur, R. Kumar, V.K. Thakur, V.-H. Nguyen, S. Pardeep, Fabrication of efficient CuO/graphitic carbon nitride based heterogeneous photo-Fenton like catalyst for degradation of 2, 4 dimethyl phenol, Process Saf. Environ. Prot., 142 (2020) 63–75.
  31. D. Lei, J. Xue, X. Peng, S. Li, Q. Bi, C. Tang, L. Zhang, Oxalate enhanced synergistic removal of chromium(VI) and arsenic(III) over ZnFe2O4/g-C3N4: Z-scheme charge transfer pathway and photo-Fenton like reaction, Appl. Catal., B, 282 (2021) 119578, doi: 10.1016/j.apcatb.2020.119578.
  32. H. Yu, G. Liu, R. Jin, J. Zhou, Goethite-humic acid coprecipitate mediated Fenton-like degradation of sulfanilamide: the role of coprecipitated humic acid in accelerating Fe(III)/Fe(II) cycle and degradation efficiency, J. Hazard. Mater., 403 (2021) 124026, doi: 10.1016/j.jhazmat.2020.124026.
  33. X. Chen, R. Zhuan, J. Wang, Assessment of degradation characteristic and mineralization efficiency of norfloxacin by ionizing radiation combined with Fenton-like oxidation, J. Hazard. Mater., 404 (2021) 124172, doi: 10.1016/j.jhazmat.2020.124172.
  34. S. Wu, D. Yang, Y. Zhou, H. Zhou, S. Ai, Y. Yang, Z. Wan, L. Luo, L. Tang, D.C.W. Tsang, Simultaneous degradation of p-arsanilic acid and inorganic arsenic removal using M-rGO/PS Fenton-like system under neutral conditions, J. Hazard. Mater., 399 (2020) 123032, doi: 10.1016/j.jhazmat.2020.123032.
  35. M.L.A. Ramalho, V.S. Madeira, I.L.O. Brasileiro, P.C.R. Fernandes, C.B.M. Barbosa, S. Arias, J.G.A. Pacheco, Synthesis of mixed oxide Ti/Fe2O3 as solar light-induced photocatalyst for heterogeneous photo-Fenton like process, J. Photochem. Photobiol., A, 404 (2021) 112873, doi: 10.1016/j. jphotochem.2020.112873.
  36. A.A. Oladipo, A.O. Ifebajo, M. Gazi, Magnetic LDH-based CoO–NiFe2O4 catalyst with enhanced performance and recyclability for efficient decolorization of azo dye via Fenton-like reactions, Appl. Catal., B, 243 (2019) 243–252.
  37. G. Liu, Y. Zhang, H. Yu, R. Jin, J. Zhou, Acceleration of goethite-catalyzed Fenton-like oxidation of ofloxacin by biochar, J. Hazard. Mater., 397 (2020) 122783, doi: 10.1016/j.jhazmat.2020.122783.
  38. S. Li, C.I. Ezugwu, S. Zhang, Y. Xiong, S. Liu, Co-doped MgAl-LDHs nanosheets supported Au nanoparticles for complete catalytic oxidation of HCHO at room temperature, Appl. Surf. Sci., 487 (2019) 260–271.
  39. 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.
  40. R.G.L. Gonçalves, H.M. Mendes, S.L. Bastos, L.C. D’Agostino, J. Tronto, S.H. Pulcinelli, C.V. Santilli, J.L. Neto, Fenton-like degradation of methylene blue using Mg/Fe and MnMg/Fe layered double hydroxides as reusable catalysts, Appl. Clay Sci., 187 (2020) 105477, doi: 10.1016/j.clay.2020.105477.
  41. H. Wang, M. Jing, Y. Wu, W. Chen, Y. Ran, Effective degradation of phenol via Fenton reaction over CuNiFe layered double hydroxides, J. Hazard. Mater., 353 (2018) 53–61.
  42. J. Bai, Y. Liu, X. Yin, H. Duan, J. Ma, Efficient removal of nitrobenzene by Fenton-like process with Co-Fe layered double hydroxide, Appl. Surf. Sci., 416 (2017) 45–50.
  43. M. Daud, A. Hai, F. Banat, M.B. Wazir, M. Habib, G. Bharath, M.A. Al-Harthi, A review on the recent advances, challenges and future aspect of layered double hydroxides (LDH) – containing hybrids as promising adsorbents for dyes removal, J. Mol. Liq., 288 (2019) 110989, doi: 10.1016/j.molliq.2019.110989.
  44. A.-L. Johnston, E. Lester, O. Williams, R.L. Gomes, Understanding layered double hydroxide properties as sorbent materials for removing organic pollutants from environmental waters, J. Environ. Chem. Eng., 9 (2021) 105197, doi: 10.1016/j.jece.2021.105197.
  45. G. Rathee, N. Singh, R. Chandra, Simultaneous elimination of dyes and antibiotic with a hydrothermally generated NiAlTi layered double hydroxide adsorbent, ACS Omega, 5 (2020) 2368–2377.
  46. 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.
  47. N.S. Jamaluddin, N.H. Alias, S. Samitsu, N.H. Othman, J. Jaafar, F. Marpani, W.J. Lau, Y.Z. Tan, Efficient chromium(VI) removal from wastewater by adsorption-assisted photocatalysis using MXene, J. Environ. Chem. Eng., 10 (2022) 108665, doi: 10.1016/j.jece.2022.108665.
  48. T. Song, Q. Luo, F. Gao, B. Zhao, X. Hao, Z. Liu, Adsorption and electro-assisted method removal of boron in aqueous solution by nickel hydroxide, J. Ind. Eng. Chem., 118 (2023) 372–382.
  49. H. Niu, H. Yang, L. Tong, A.R. Kamali, The adsorption characteristics and performance of gold onto elemental carbon extracted from refractory carbonaceous gold concentrate, Colloids Surf., A, 658 (2023) 130635, doi: 10.1016/j.colsurfa.2022.130635.
  50. D.D.A. Buelvas, L.P. Camargo, I.K.I. Salgado, B.L.S. Vicentin, D.F. Valezi, L.H. Dall’Antonia, C.R.T. Tarley, E.D. Mauro, Study and optimization of the adsorption process of methylene blue dye in reusable polyaniline-magnetite composites, Synth. Met., 292 (2023) 117232, doi: 10.1016/j.synthmet.2022.117232.
  51. E. He, N. Liu, Y. Zhou, Z. Wang, X. Lu, L. Yu, Adsorption properties and mechanism of zinc acrylic carbon nanosphere aggregates for perfluorooctanoic acid from aqueous solution, Environ. Pollut., 316 (2023) 120540, doi: 10.1016/j.envpol.2022.120540.
  52. Ch. J. Mate, S. Mishra, Synthesis of borax cross-linked Jhingan gum hydrogel for remediation of Remazol Brilliant Blue R (RBBR) dye from water: adsorption isotherm, kinetic, thermodynamic and biodegradation studies, Int. J. Biol. Macromol., 151 (2020) 677–690.
  53. Y. He, L. Zhang, X. An, G. Wan, W. Zhu, Y. Luo, Enhanced fluoride removal from water by rare earth (La and Ce) modified alumina: adsorption isotherms, kinetics, thermodynamics and mechanism, Sci. Total Environ., 688 (2019) 184–198.
  54. H.A. Ahmad, S.S. Ahmed, O. Amiri, Simple synthesis of CeFeO3 nanostructures as an efficient visible-light-driven photocatalyst in degradation of Congo red dye: mechanism investigation, Int. J. Hydrogen Energy, 48 (2023) 3878–3892.
  55. D. Wang, Q. Zhu, Y. Su, J. Li, A. Wang, Z. Xing, Preparation of MgAlFe-LDHs as a deicer corrosion inhibitor to reduce corrosion of chloride ions in deicing salts, Ecotoxicol. Environ. Saf., 174 (2019) 164–174.
  56. A.E. Nemr, O. Abdelwahab, A. El-Sikaily, A. Khaled, Removal of direct blue-86 from aqueous solution by new activated carbon developed from orange peel, J. Hazard. Mater., 161 (2009) 102–110.
  57. Z. Manaa, D. Chebli, A. Bouguettoucha, H. Atout, A. Amrane, Low-cost photo-Fenton-like process for the removal of synthetic dye in aqueous solution at circumneutral pH, Arabian J. Sci. Eng., 44 (2019) 9859–9867.