References

  1. Z. Wang, Y. Li, X. Xie, Z. Wang, Bifunctional MnFe2O4/chitosan modified biochar composite for enhanced Methyl orange removal based on adsorption and photo-Fenton process, Colloids Surf., A, 613 (2021) 126104, doi: 10.1016/j. colsurfa.2020.126104.
  2. H. Yang, H. Yuan, Q. Hu, W. Liu, D. Zhang, Synthesis of mesoporous C/MoS2 for adsorption of Methyl orange and photo-catalytic sterilization, Appl. Surf. Sci., 504 (2020) 144445, doi: 10.1016/j.apsusc.2019.144445.
  3. A. Ajmal, I. Majeed, R.N. Malik, H. Idriss, M.A. Nadeem, Principles and mechanisms of photocatalytic dye degradation on TiO2 based photocatalysts: a comparative overview, RSC Adv., 4 (2014) 37003–37026.
  4. H.P. Mota, R.F.N. Quadrado, T.A.L. Burgo, B.A. Iglesias, A.R. Fajardo, Polysaccharide/Fe(III)-porphyrin hybrid film as catalyst for oxidative decolorization of toxic azo dyes: an approach for wastewater treatment, Arabian J. Chem., 13 (2020) 5923–5938.
  5. A.K. Prajapati, M.K. Mondal, Comprehensive kinetic and mass transfer modeling for Methylene blue dye adsorption onto CuO nanoparticles loaded on nanoporous activated carbon prepared from waste coconut shell, J. Mol. Liq., 307 (2020) 112949, doi: 10.1016/j.molliq.2020.112949.
  6. T. Rasheed, M. Bilal, F. Nabeel, M. Adeel, H.M.N. Iqbal, Environmentally-related contaminants of high concern: potential sources and analytical modalities for detection, quantification, and treatment, Environ. Int., 122 (2019) 52–66.
  7. K. Shahul Hameed, P. Muthirulan, M. Meenakshi Sundaram, Adsorption of chromotrope dye onto activated carbons obtained from the seeds of various plants: equilibrium and kinetics studies, Arabian J. Chem., 10 (2017) S2225–S2233.
  8. J. Mittal, A. Mariyam, F. Sakina, R.T. Baker, A.K. Sharma, A. Mittal, Batch and bulk adsorptive removal of anionic dye using metal/halide-free ordered mesoporous carbon as adsorbent, J. Cleaner Prod., 321 (2021) 129060, doi: 10.1016/j. jclepro.2021.129060.
  9. M. Landarani, M. Arab Chamjangali, B. Bahramian, Preparation and characterization of a novel chemically modified PVC adsorbent for Methyl orange removal: optimization, and study of isotherm, kinetics, and thermodynamics of adsorption process, Water Air Soil Pollut., 231 (2020) 513,
    doi: 10.1007/s11270-020-04874-7.
  10. W. Deligeer, Y.W. Gao, S. Asuha, Adsorption of Methyl orange on mesoporous γ-Fe2O3/SiO2 nanocomposites, Appl. Surf. Sci., 257 (2011) 3524–3528.
  11. A. Mittal, A. Malviya, D. Kaur, J. Mittal, L. Kurup, Studies on the adsorption kinetics and isotherms for the removal and recovery of Methyl orange from wastewaters using waste materials, J. Hazard. Mater., 148 (2007) 229–240.
  12. 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.
  13. C. Arora, S. Soni, S. Sahu, J. Mittal, P. Kumar, P.K. Bajpai, Iron based metal organic framework for efficient removal of Methylene blue dye from industrial waste, J. Mol. Liq., 284 (2019) 343–352.
  14. B. Chen, H. Zhao, S. Chen, F. Long, B. Huang, B. Yang, X. Pan, A magnetically recyclable chitosan composite adsorbent functionalized with EDTA for simultaneous capture of anionic dye and heavy metals in complex wastewater, Chem. Eng. J., 356 (2019) 69–80.
  15. A. Mariyam, J. Mittal, F. Sakina, R.T. Baker, A.K. Sharma, A. Mittal, Efficient batch and fixed-bed sequestration of a basic dye using a novel variant of ordered mesoporous carbon as adsorbent, Arabian J. Chem., 14 (2021) 103186, doi: 10.1016/j. arabjc.2021.103186.
  16. 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, 261 (2020) 110236, doi: 10.1016/j.jenvman.2020.110236.
  17. J. Mittal, R. Ahmad, M.O. Ejaz, A. Mariyam, A. Mittal, A novel, eco-friendly bio-nanocomposite (Alg-Cst/Kal) for the adsorptive removal of crystal violet dye from its aqueous solutions, Int. J. Phytorem., 24 (2021) 1–12, doi:10.1080/15226514.2021.1977778.
  18. 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.
  19. A. Mariyam, J. Mittal, F. Sakina, R.T. Baker, A.K. Sharma, Fixedbed adsorption of the dye chrysoidine R on ordered mesoporous carbon, Desal. Water Treat., 229 (2021) 395–402.
  20. A. Mariyam, J. Mittal, F. Sakina, R.T. Baker, A.K. Sharma, Adsorption behaviour of Chrysoidine R dye on a metal/halidefree variant of ordered mesoporous carbon, Desal. Water Treat., 223 (2021) 425–433.
  21. J. Mittal, Recent progress in the synthesis of layered double hydroxides and their application for the adsorptive removal of dyes: a review, J. Environ. Manage., 295 (2021) 113017, doi:10.1016/j.jenvman.2021.113017.
  22. 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.
  23. P. Saharan, V. Kumar, J. Mittal, V. Sharma, A.K. Sharma, Efficient ultrasonic assisted adsorption of organic pollutants employing bimetallic-carbon nanocomposites, Sep. Sci. Technol., 56 (2021) 2895–2908.
  24. A.H. Jawad, A.S. Abdulhameed, M.S. Mastuli, Mesoporous crosslinked chitosan-activated charcoal composite for the removal of thionine cationic dye: comprehensive adsorption and mechanism study, J. Polym. Environ., 28 (2020) 1095–1105.
  25. A.H. Jawad, M.A. Nawi, M.H. Mohamed, L.D. Wilson, Oxidation of chitosan in solution by photocatalysis and product characterization, J. Polym. Environ., 25 (2017) 828–835.
  26. A.S. Abdulhameed, A.K.-T. Mohammad, A.H. Jawad, Modeling and mechanism of reactive orange 16 dye adsorption by chitosan-glyoxal/TiO2 nanocomposite: application of response surface methodology, Desal. Water Treat., 164 (2019) 346–360.
  27. M.A. Nawi, A.H. Jawad, S. Sabar, W.S. Wan Ngah, Photocatalytic-oxidation of solid state chitosan by immobilized bilayer assembly of TiO2-chitosan under a compact household fluorescent lamp irradiation, Carbohydr. Polym., 83 (2011) 1146–1152.
  28. P. Senthil Kumar, R. Sivaranjanee, U. Vinothini, M. Raghavi, K. Rajasekar, K. Ramakrishnan, Adsorption of dye onto raw and surface modified tamarind seeds: isotherms, process design, kinetics and mechanism, Desal. Water Treat., 52 (2014) 2620–2633.
  29. O.I. Sahin, B. Saygi-Yalcin, D. Saloglu, Adsorption of ibuprofen from wastewater using activated carbon and graphene oxide embedded chitosan–PVA: equilibrium, kinetics, and thermodynamics and optimization with central composite design, Desal. Water Treat., 179 (2020) 396–417.
  30. T. Anitha, P. Senthil Kumar, K. Sathish Kumar, K. Sriram, J. Feroze Ahmed, Biosorption of lead(II) ions onto nano-sized chitosan particle blended polyvinyl alcohol (PVA): adsorption isotherms, kinetics and equilibrium studies, Desal. Water Treat., 57 (2016) 13711–13721.
  31. A. Maleki, E. Pajootan, B. Hayati, Ethyl acrylate grafted chitosan for heavy metal removal from wastewater: equilibrium, kinetic and thermodynamic studies, J. Taiwan Inst. Chem. Eng., 51 (2015) 127–134.
  32. M.-S. Chiou, P.-Y. Ho, H.-Y. Li, Adsorption of anionic dyes in acid solutions using chemically cross-linked chitosan beads, Dyes Pigm., 60 (2004) 69–84.
  33. N. Salehi, A. Moghimi, H. Shahbazi, Preparation of cross-linked magnetic chitosan with
    methionine-glutaraldehyde for removal of heavy metals from aqueous solutions, Int. J. Environ. Anal. Chem., (2020) 1–17, doi: 10.1080/03067319.2020.1753718.
  34. O.S. Amuda, A.A. Giwa, I.A. Bello, Removal of heavy metal from industrial wastewater using modified activated coconut shell carbon, Biochem. Eng. J., 36 (2007) 174–181.
  35. B. Tanhaei, A. Ayati, E. Iakovleva, M. Sillanpää, Efficient carbon interlayed magnetic chitosan adsorbent for anionic dye removal: synthesis, characterization and adsorption study, Int. J. Biol. Macromol., 164 (2020) 3621–3631.
  36. D.G. Trikkaliotis, A.K. Christoforidis, A.C. Mitropoulos, G.Z. Kyzas, Adsorption of copper ions onto
    chitosan/poly(vinyl alcohol) beads functionalized with poly(ethylene glycol), Carbohydr. Polym., 234 (2020) 115890, doi: 10.1016/j. carbpol.2020.115890.
  37. T.H.T. Vu, M.H. Nguyen, M.D. Nguyen, Synthesis of acidic heterogeneous catalysts with high stability based on graphene oxide/activated carbon composites for the esterification of lactic acid, J. Chem., 2019 (2019) 7815697, doi: 10.1155/2019/7815697.
  38. E.A.N. Simonetti, L. de Simone Cividanes, B.C. da Silva Fonseca, A.P.B.R. de Freitas, A. dos R. Coutinho,
    G.P. Thim, TiO2–carbon composite using coconut waste as carbon source: sonocatalysis and adsorption evaluation, Surf. Interfaces, 12 (2018) 124–134.
  39. G.E. Sharaf El-Deen, S.E.A. Sharaf El-Deen, Kinetic and isotherm studies for adsorption of Pb(II) from aqueous solution onto coconut shell activated carbon, Desal. Water Treat., 57 (2016) 28910–28931.
  40. A. Chaipuang, C. Phungpanya, C. Thongpoon, K. Watla-iad, P. Inkaew, T. Machan, O. Suwantong, Synthesis of copper(II) ion-imprinted polymers via suspension polymerization, Polym. Adv. Technol., 29 (2018) 3134–3141.
  41. A. Yang, P. Yang, C.P. Chin-pao Huang, Preparation of graphene oxide–chitosan composite and adsorption performance for uranium, J. Radioanal. Nucl. Chem., 313 (2017) 371–378.
  42. L.P. Hoang, H.T. Van, T.T. Hang Nguyen, V.Q. Nguyen, P.Q. Thang, Coconut shell activated carbon/CoFe2O4 composite for the removal of rhodamine B from aqueous solution, J. Chem., 2020 (2020) 9187960, doi:10.1155/2020/9187960.
  43. H. Zang, Y. Li, Y. Li, L. Chen, Q. Du, K. Zhou, H. Li, Y. Wang, L. Ci, Adsorptive removal of cationic dye from aqueous solution by graphene oxide/cellulose acetate composite, J. Nanosci. Nanotechnol., 19 (2019) 4535–4542.
  44. H.N. Tran, S.-J. You, A. Hosseini-Bandegharaei, H.-P. Chao, Mistakes and inconsistencies regarding adsorption of contaminants from aqueous solutions: a critical review, Water Res., 120 (2017) 88–116.
  45. H.J. Choi, Assessment of the adsorption kinetics, equilibrium and thermodynamic for Pb(II) removal using a hybrid adsorbent, eggshell and sericite, in aqueous solution, Water Sci. Technol., 79 (2019) 1922–1933.
  46. R.K. Ramakrishnan, V.V.T. Padil, S. Wacławek, M. Černík, R.S. Varma, Eco-friendly and economic, adsorptive removal of cationic and anionic dyes by bio-based karaya gum—chitosan sponge, Polymers (Basel), 13 (2021) 1–20.
  47. N.S. Abdul Mubarak, T.W. Chuan, H.P. Khor, A.H. Jawad, L.D. Wilson, S. Sabar, Immobilized Fe-loaded chitosan film for Methyl orange dye removal: competitive ions, reusability, and mechanism, J. Polym. Environ., 29 (2021) 1050–1062.
  48. F. Gu, J. Geng, M. Li, J. Chang, Y. Cui, Synthesis of chitosan− ignosulfonate composite as an adsorbent for dye and metal ions removal from wastewater, ACS Omega, 4 (2019) 21421–21430.
  49. D. Banerjee, U. Sarkar, S. Chakraborty, D. Roy, Removal of a cationic bisbiguanide using functionalized activated carbons (FACs), Process Saf. Environ. Prot., 92 (2014) 957–972.
  50. M.T. Aswani, M.V. Pavan Kumar, A novel water hyacinth based biosorbent for 2,4-dichlorophenoxyacetic acid (2,4-D) removal from aqueous solution, Desal. Water Treat., 165 (2019) 163–176.
  51. I.A.W. Tan, A.L. Ahmad, B.H. Hameed, Adsorption isotherms, kinetics, thermodynamics and desorption studies of 2,4,6-trichlorophenol on oil palm empty fruit bunch-based activated carbon, J. Hazard. Mater., 164 (2009) 473–482.
  52. W. Chen, J. Luan, X. Yu, X. Wang, X. Ke, Preparation of coreshell structured polystyrene@graphene oxide composite microspheres with high adsorption capacity and its removal of dye contaminants, Environ. Technol. (United Kingdom), 42 (2021) 3840–3851.
  53. H. Dai, Y. Huang, H. Huang, Eco-friendly polyvinyl alcohol/ carboxymethyl cellulose hydrogels reinforced with graphene oxide and bentonite for enhanced adsorption of Methylene blue, Carbohydr. Polym., 185 (2018) 1–11, doi: 10.1016/j. carbpol.2017.12.073.
  54. W. Zhu, X. Jiang, F. Liu, F. You, C. Yao, Preparation of chitosangraphene oxide composite aerogel by hydrothermal method and its adsorption property of Methyl orange, Polymers (Basel), 12 (2020) 2169, doi:10.3390/polym12092169.