References

  1. J.J. Zhang, Z.W. Yang, L.S. Wang, L. Chao, Carbon covered Ag and Bi nanoparticles uniformly dispersed in porous carbon matrix: synergistic effect for removal of RhB, Mater. Lett., 275 (2020) 128099, doi: 10.1016/j.matlet.2020.128099.
  2. S. Ahmadi, L. Mohammadi, C.A. Igwegbe, S. Rahdar, A.M. Banach, Application of response surface methodology in the degradation of Reactive Blue 19 using H2O2/MgO nanoparticles advanced oxidation process, Int. J. Ind. Chem., 9 (2018) 241–253.
  3. J. Mittal, Permissible synthetic food dyes in India, Resonance, 25 (2020) 567–577.
  4. O. Hamdaoui, Intensification of the sorption of Rhodamine B from aqueous phase by loquat seeds using ultrasound, Desalination, 271 (2011) 279–286.
  5. S. Rahdar, A. Rahdar, M.N. Zafar, S.S. Shafqat, S. Ahmadi, Synthesis and characterization of MgO supported Fe–Co–Mn nanoparticles with exceptionally high adsorption capacity for Rhodamine B dye, J. Mater. Res. Technol., 8 (2019) 3800–3810.
  6. I. Anastopoulos, I. Pashalidis, A.G. Orfanos, I.D. Manariotis, T. Tatarchuk, L. Sellaoui, A. Bonilla-Petriciolet, A. Mittal, A. Núñez-Delgado, Removal of caffeine, nicotine and amoxicillin from (waste)waters by various adsorbents. A review, J. Environ. Manage., 261 (2020) 110236, doi: 10.1016/j.jenvman.2020.110236.
  7. K. Wang, J.H. Zhao, H.Y. Li, X.Y. Zhang, H.H. Shi, Removal of cadmium(Ⅱ) from aqueous solution by granular activated carbon supported magnesium hydroxide, J. Taiwan Inst. Chem. Eng., 61 (2016) 287–291.
  8. Q. Li, X. Tang, Y.Y. Sun, Y.F. Wang, Y.C. Long, J. Jiang, H. Xu, Removal of Rhodamine B from wastewater by modified Volvariella volvacea: batch and column study, RSC Adv., 5 (2015) 25337–25347.
  9. D. Liu, J.L. Yin, H. Tang, H. Wang, S.S. Liu, T.T. Huang, S.S. Fang, K.X. Zhu, Z.L. Xie, Fabrication of ZIF-67@PVDF ultrafiltration membrane with improved antifouling and separation performance for dye wastewater treatment via sulfate radical enhancement, Sep. Purif. Technol., 279 (2021) 119775, doi: 10.1016/j.seppur.2021.119755.
  10. J. Liu, L.L. He, F.Q. Dong, K.A. Hudson-Edwards, The role of nano-sized manganese coatings on bone char in removing arsenic(V) from solution: implications for permeable reactive barrier technologies, Chemosphere, 153 (2016) 146–154.
  11. P.F. Xu, X.F. Shen, L. Luo, Z. Shi, Z.X. Liu, Z.G. Chen, M.F. Zhu, L.S. Zhang, Preparation of TiO2/Bi2WO6 nanostructured heterojunctions on carbon fibers as a weaveable visible-light photocatalyst/photoelectrode, Environ. Sci.: Nano, 5 (2018) 327–337.
  12. L.-H. Qi, J.-D. Ding, X.-Q. Ma, X.-W. Guan, W. Zhu, H. Yao, Y.-M. Zhang, T.-B. Wei, Q. Lin, An azine-containing bispillar[5]arene-based multi-stimuli responsive supramolecular pseudopolyrotaxane gel for effective adsorption of Rhodamine B, Soft Matter, 15 (2019) 6836–6841.
  13. Y. Shi, Q. Chang, T. Zhang, G. Song, Y. Sun, G. Ding, A review on selective dye adsorption by different mechanisms, J. Environ. Chem. Eng., 10 (2022) 108639, doi: 10.1016/j.jece.2022.108639.
  14. T. Rasheed, Magnetic nanomaterials: greener and sustainable alternatives for the adsorption of hazardous environmental contaminants, J. Cleaner Prod., 362 (2022) 132338, doi: 10.1016/j.jclepro.2022.132338.
  15. D.A. Yaseen, M. Scholz, Textile dye wastewater characteristics and constituents of synthetic effluents: a critical review, Int. J. Environ. Sci. Technol., 16 (2019) 1193–1226.
  16. J. Liu, S.Z. Wei, H.L. Zhang, Y.M. Deng, J. Baeyens, R. Dewil, N. Sweygers, L. Appels, Adsorption of acid fuchsine dye from wastewater by Mg-ferrite particles, J. Environ. Manage., 317 (2022) 115427, doi: 10.1016/j.jenvman.2022.115427.
  17. H. Daraei, A. Mittal, Investigation of adsorption performance of activated carbon prepared from waste tire for the removal of methylene blue dye from wastewater, Desal. Water Treat., 90 (2017) 294–298.
  18. C. Arora, P. Kumar, S. Soni, J. Mittal, A. Mittal, B. Singh, Efficient removal of malachite green dye from aqueous solution using Curcuma caesia based activated carbon, Desal. Water Treat., 195 (2020) 341–352.
  19. W.B. Yang, Y.P. Lu, F.F. Zheng, X.X. Xue, N. Li, D.M. Liu, Adsorption behavior and mechanisms of norfloxacin onto porous resins and carbon nanotube, Chem. Eng. J., 179 (2012) 112–118.
  20. S. Soni, P.K. Bajpai, D. Bharti, J. Mittal, C. Arora, Removal of crystal violet from aqueous solution using iron-based metal organic framework, Desal. Water Treat., 205 (2020) 386–399.
  21. Y.M. Hunge, A.A. Yadav, S.-W. Kang, H. Kim, Photocatalytic degradation of tetracycline antibiotics using hydrothermally synthesized two-dimensional molybdenum disulfide/titanium dioxide composites, J. Colloid Interface Sci., 606 (2022) 454–463.
  22. D. Hao, Y.F. Chen, Y. Zhang, N. You, Nanocomposites of zero-valent iron@biochar derived from agricultural wastes for adsorptive removal of tetracyclines, Chemosphere, 284 (2021) 131342, doi: 10.1016/j.chemosphere.2021.131342.
  23. M.R. Fat’hi, A. Asfaram, A. Hadipour, M. Roosta, Kinetics and thermodynamic studies for removal of acid blue 129 from aqueous solution by almond shell, J. Environ. Health Sci. Eng., 12 (2014) 62,
    doi: 10.1186/2052-336X-12-62.
  24. E. Sharifpour, E. Alipanahpour Dil, A. Asfaram, M. Ghaedi, A. Goudarzi, Optimizing adsorptive removal of malachite green and methyl orange dyes from simulated wastewater by Mn-doped CuO-nanoparticles loaded on activated carbon using CCD-RSM: mechanism, regeneration, isotherm, kinetic, and thermodynamic studies, Appl. Organomet. Chem., 33 (2019) e4768, doi: 10.1002/aoc.4768.
  25. P. Arabkhani, A. Asfaram, M. Ateia, Easy-to-prepare graphene oxide/sodium montmorillonite polymer nanocomposite with enhanced adsorption performance, J. Water Process Eng., 38 (2020) 101651, doi: 10.1016/j.jwpe.2020.101651.
  26. M. Sharma, J. Singh, S. Basu, Efficient metal ion adsorption and photodegradation of Rhodamine-B by hierarchical porous Fe-Ni@SiO2 monolith, Microchem. J., 145 (2019) 708–717.
  27. J. Balamurugan, S.G. Peera, M. Guo, T.T. Nguyen, N.H. Kim, J.H. Lee, A hierarchical 2D Ni–Mo–S nanosheet@nitrogen doped graphene hybrid as a Pt-free cathode for high-performance dye sensitized solar cells and fuel cells, J. Mater. Chem. A, 5 (2017) 17896–17908.
  28. L. Yao, J.J. Yang, P.X. Zhang, L.B. Deng, In situ surface decoration of Fe3C/Fe3O4/C nanosheets: towards bi-functional activated carbons with supercapacitance and efficient dye adsorption, Bioresour. Technol., 256 (2018) 208–215.
  29. H.J. Wei, J. Liu, Y. Liu, L. Wang, L.L. Li, F. Wang, X.Y. Ren, F.Z. Ren, Hollow Co-Fe LDH as an effective adsorption/catalytic bifunctional sulfur host for high-performance Lithium–Sulfur batteries, Compos. Commun., 28 (2021) 100973, doi: 10.1016/j.coco.2021.100973.
  30. J.-L. Liu, Y. Huang, J.-J. Wang, Surface-adsorbed phosphate boosts bifunctionally electrocatalytic activity of Ni0.9Fe0.1S for hydrogen production, J. Colloid Interface Sci., 617 (2022) 525–532.
  31. J.-X. Guo, S.-Y. Wu, S.-Y. Zhong, G.-J. Zhang, G.-Q. Shen, X.-Y. Yu, Janus WSSe monolayer adsorbed with transition-metal atoms (Fe, Co and Ni): excellent performance for gas sensing and CO catalytic oxidation, Appl. Surf. Sci., 565 (2021) 150558, doi: 10.1016/j.apsusc.2021.150558.
  32. X.M. Li, J.X. Shi, X.X. Luo, Enhanced adsorption of Rhodamine B from water by Fe-N co-modified biochar: preparation, performance, mechanism and reusability, Bioresour. Technol., 343 (2022) 126103, doi: 10.1016/j.biortech.2021.126103.
  33. V.K. Gupta, S. Agarwal, R. Ahmad, A. Mirza, J. Mittal, Sequestration of toxic Congo red dye from aqueous solution using ecofriendly guar gum/activated carbon nanocomposites, Int. J. Biol. Macromol., 158 (2020) 1310–1318.
  34. A. Mariyam, J. Mittal, F. Sakina, R.T. Baker, A.K. Sharma, Fixed-bed adsorption of the dye Chrysoidine R on ordered mesoporous carbon, Desal. Water Treat., 229 (2021) 395–402.
  35. E. Abedi, M.J. Amiri, M. Sayadi, The potential use of ultrasoundassisted bleaching in removing heavy metals and pigments from soybean oil using kinetic, thermodynamic and equilibrium modeling, Environ. Sci. Pollut. Res., 28 (2021) 49833–49851.
  36. Z.G. Ren, F. Chen, B. Wang, Z.X. Song, Z.Y. Zhou, D. Ren, Magnetic biochar from alkali-activated rice straw for removal of Rhodamine B from aqueous solution, Environ. Eng. Res., 25 (2019) 536–544.
  37. T.T. Yang, Y.M. Xu, Q.Q. Huang, Y.B. Sun, X.F. Liang, L. Wang, L.J. Zhao, Adsorption characteristics and the removal mechanism of two novel Fe-Zn composite modified biochar for Cd(II) in water, Bioresour. Technol., 333 (2021) 125078, doi: 10.1016/j.biortech.2021.125078.
  38. A. He, D. He, Z. Deng, Adsorption performance of Congo red onto magnetic Ni0.4Co0.2Zn0.4Fe2O4 nanoparticles prepared via the rapid combustion process, J. Nanosci. Nanotechnol., 19 (2019) 5914–5920.
  39. E. Mahmoudi, S. Azizkhani, A.W. Mohammad, L.Y. Ng, A. Benamor, W.L. Ang, M. Ba-Abbad, Simultaneous removal of Congo red and cadmium(II) from aqueous solutions using graphene oxide–silica composite as a multifunctional adsorbent, J. Environ. Sci., 98 (2020) 151–160.
  40. H. Chen, Y.Q. Zheng, B. Cheng, J.G. Yu, C.J. Jiang, Chestnut husklike nickel cobaltite hollow microspheres for the adsorption of Congo red, J. Alloys Compd., 735 (2018) 1041–1051.
  41. R. Miandad, R. Kumar, M.A. Barakat, C. Basheer, A.S. Aburiazaiza, A.S. Nizami, M. Rehan, Untapped conversion of plastic waste char into carbon-metal LDOs for the adsorption of Congo red, J. Colloid Interface Sci., 511 (2018) 402–410.
  42. J. Mohanta, B. Dey, S. Dey, Highly porous iron-zirconium binary oxide for efficient removal of Congo red from water, Desal. Water Treat., 189 (2020) 227–242.
  43. L. Ren, H.X. Lin, F.C. Meng, F. Zhang, One-step solvothermal synthesis of Fe3O4@carbon composites and their application in removing of Cr(VI) and Congo red, Ceram. Int., 45 (2019) 9646–9652.
  44. J. Liu, N. Wang, H.L. Zhang, J. Baeyens, Adsorption of Congo red dye on FexCo3–xO4 nanoparticles, J. Environ. Manage., 238 (2019) 473–483.
  45. M.K. Purkait, A. Maiti, S. DasGupta, S. De, Removal of Congo red using activated carbon and its regeneration, J. Hazard. Mater., 145 (2007) 287–295.
  46. J.J. Zhang, X.L. Yan, X.Y. Hu, R. Feng, M. Zhou, Direct carbonization of Zn/Co zeolitic imidazolate frameworks for efficient adsorption of Rhodamine B, Chem. Eng. J., 347 (2018) 640–647.
  47. B. Debnath, M. Majumdar, M. Bhowmik, K.L. Bhowmik, A. Debnath, D.N. Roy, The effective adsorption of tetracycline onto zirconia nanoparticles synthesized by novel microbial green technology, J. Environ. Manage., 261 (2020) 110235, doi: 10.1016/j.jenvman.2020.110235.
  48. E.C.N. Lopes, F.S.C. dos Anjos, E.F.S. Vieira, A.R. Cestari, An alternative Avrami equation to evaluate kinetic parameters of the interaction of Hg(II) with thin chitosan membranes, J. Colloid Interface Sci., 263 (2003) 542–547.
  49. Z. Wang, J.F. Su, X.F. Hu, A. Ali, Z.Z. Wu, Isolation of biosynthetic crystals by microbially induced calcium carbonate precipitation and their utilization for fluoride removal from groundwater, J. Hazard. Mater., 406 (2021) 124748, doi: 10.1016/j.jhazmat.2020.124748.
  50. J.X. Wu, X.L. Yan, L. Li, J.H. Gu, T. Zhang, L.L. Tian, X.T. Su, Z. Lin, High-efficiency adsorption of Cr(VI) and RhB by hierarchical porous carbon prepared from coal gangue, Chemosphere, 275 (2021) 130008, doi: 10.1016/j.chemosphere.2021.130008.
  51. A. Waheed, M. Mansha, I.W. Kazi, N. Ullah, Synthesis of a novel 3,5-diacrylamidobenzoic acid based
    hyper-cross-linked resin for the efficient adsorption of Congo red and Rhodamine B, J. Hazard. Mater., 369 (2019) 528–538.
  52. H. Feng, Y. Nan Liang, C. Po Hu, X. Hu, Highly selective adsorption and efficient recovery of cationic micropollutants from aqueous solution via ultrathin indium vanadate nanoribbons, Sep. Purif. Technol., 293 (2022) 120952, doi: 10.1016/j.seppur.2022.120952.
  53. R.W. Abadi, C.M. Setiawan, S.P. Santoso, V. Bundjaja, A.E. Angkawijaya, Y.-F. Jiang, C. Julius Wijaya, S. Ismadji, E. Susiany Retnoningtyas, F.E. Soetaredjo, J.N. Putro, M. Yuliana, Polystyrene-templated hollow mesoporous magnetite as a bifunctional adsorbent for the removal of Rhodamine B via simultaneous adsorption and degradation, J. Environ. Chem. Eng., 10 (2022) 108194, doi: 10.1016/j.jece.2022.108194.
  54. J. Wu, J.W. Yang, G.H. Huang, C.H. Xu, B.F. Lin, Hydrothermal carbonization synthesis of cassava slag biochar with excellent adsorption performance for Rhodamine B, J. Cleaner Prod., 251 (2020) 119717, doi: 10.1016/j.jclepro.2019.119717.
  55. M.-F. Hou, C.-X. Ma, W.-D. Zhang, X.-Y. Tang, Y.-N. Fan, H.-F. Wan, Removal of Rhodamine B using iron-pillared bentonite, J. Hazard. Mater., 186 (2011) 1118–1123.
  56. W. Xiao, Z.N. Garba, S.C. Sun, I. Lawan, L.W. Wang, M. Lin, Z.H. Yuan, Preparation and evaluation of an effective activated carbon from white sugar for the adsorption of Rhodamine B dye, J. Cleaner Prod., 253 (2020) 119989, doi: 10.1016/j.jclepro.2020.119989.
  57. K. Shakir, A.F. Elkafrawy, H.F. Ghoneimy, S.G.E. Beheir, M. Refaat, Removal of Rhodamine B (a basic dye) and thoron (an acidic dye) from dilute aqueous solutions and wastewater simulants by ion flotation, Water Res., 44 (2010) 1449–1461.
  58. Y.Y. Zhang, H.J. Han, X.H. Wang, M. Zhang, Y.G. Chen, C.X. Zhai, H. Song, J.T. Deng, J. Sun, C.L. Zhang, Utilization of NaP zeolite synthesized with different silicon species and NaAlO2 from coal fly ash for the adsorption of Rhodamine B, J. Hazard. Mater., 415 (2021) 125627, doi: 10.1016/j.jhazmat.2021.125627.
  59. X. Li, J. Xu, X. Luo, J. Shi, Efficient adsorption of dyes from aqueous solution using a novel functionalized magnetic biochar: synthesis, kinetics, isotherms, adsorption mechanism, and reusability, Bioresour. Technol., 360 (2022) 127526, doi: 10.1016/j.biortech.2022.127526.
  60. Y.Y. Xie, X.Z. Yuan, Z.B. Wu, G.M. Zeng, L.B. 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.
  61. H.J. Su, Z.Q. Fang, P.E. Tsang, J.Z. Fang, D.Y. Zhao, Stabilisation of nanoscale zero-valent iron with biochar for enhanced transport and in-situ remediation of hexavalent chromium in soil, Environ. Pollut., 214 (2016) 94–100.
  62. A. Chowdhury, A.A. Khan, S. Kumari, S. Hussain, Superadsorbent Ni–Co–S/SDS nanocomposites for ultrahigh removal of cationic, anionic organic dyes and toxic metal ions: kinetics, isotherm and adsorption mechanism, ACS Sustainable Chem. Eng., 7 (2019) 4165–4176.
  63. S.P. Keerthana, R. Yuvakkumar, G. Ravi, S. Pavithra, M. Thambidurai, C. Dang, D. Velauthapillai, Pure and
    Ce-doped spinel CuFe2O4 photocatalysts for efficient Rhodamine B degradation, Environ. Res., 200 (2021) 111528, doi: 10.1016/j. envres.2021.111528.
  64. Y. Zhang, Q.Y. Wang, R. Li, Z.C. Lou, Y.J. Li, A novel phenolic foam-derived magnetic carbon foam treated as adsorbent for Rhodamine B: characterization and adsorption kinetics, Crystals, 10 (2020) 159, doi: 10.3390/cryst10030159.
  65. W. Huang, M. Zhang, Y.H. Wang, J. Chen, J.Q. Zhang, Biochars prepared from rabbit manure for the adsorption of Rhodamine B and Congo red: characterisation, kinetics, isotherms and thermodynamic studies, Water Sci. Technol., 81 (2020) 436–444.
  66. D. Xie, M. Zhang, F.L. Cheng, H.B. Fan, S.L. Xie, P. Liu, J.P. Tu, Hierarchical MoS2@polypyrrole core-shell microspheres with enhanced electrochemical performances for lithium storage, Electrochim. Acta, 269 (2018) 632–639.
  67. S.F. Jia, S.F. Song, X.D. Zhao, Selective adsorption and separation of dyes from aqueous solution by a zirconium-based porous framework material, Appl. Organomet. Chem., 35 (2021) e6314, doi: 10.1002/aoc.6314.
  68. L.P. Hoang, H.T. Van, T.T.H. Nguyen, V.Q. Nguyen, P. Quang Thang, Coconut shell activated carbon/CoFe2O4 composite for the removal of Rhodamine B from aqueous solution, J. Chem., 2020 (2020) e9187960, doi: 10.1155/2020/9187960.