References

  1. T.B. Zhou, J. Lu, Y. Zhou, Y.D. Liu, Recent advances for dyes removal using novel adsorbents: a review, Environ. Pollut., 252 (2019) 352–365.
  2. P.S. Kumar, S. Ramalingam, V. Sathyaselvabala, S.D. Kirupha, A. Murugesan, S. Sivanesan, Removal of Cd(II) from aqueous solution by agricultural waste cashew nut shell, Korean J. Chem. Eng., 29 (2012) 756–768.
  3. H. Paudyal, B. Pangeni, K. Inoue, H. Kawakita, K. Ohto, K.N. Ghimire, S. Alam, Adsorptive removal of trace concentration of fluoride ion from water by using dried orange juice residue, Chem. Eng. J., 223 (2013) 844–853.
  4. R. Münze, C. Hannemann, P. Orlinskiy, R. Gunold, A. Paschke, K. Foit, M. Liess, Pesticides from wastewater treatment plant effluents affect invertebrate communities, Sci. Total Environ., 599–600 (2017) 387–399.
  5. W. Li, B.N. Mu, Y.Q. Yang, Feasibility of industrial-scale treatment of dye wastewater via bioadsorption technology, Bioresour. Technol., 277 (2019) 157–170.
  6. L. Vutskits, A. Briner, P. Klauser, E. Gascon, A.G. Dayer, Adverse effects of methylene blue on the central nervous system, Anesthesiology, 108 (2008) 684–692.
  7. P.S. Pamidimukkala, H. Soni, Efficient removal of organic pollutants with activated carbon derived from palm shell: spectroscopic characterisation and experimental optimisation, J. Environ. Chem. Eng., 6 (2018) 3135–3149.
  8. Y. Sun, J.P. Zhang, G. Yang, Z.H. Li, Removal of pollutants with activated carbon produced from K2CO3 activation of lignin from reed black liquors, Chem. Biochem. Eng., 20 (2006) 429–435.
  9. M.T. Yagub, T.K. Sen, S. Afroze, H.M. Ang, Dye and its removal from aqueous solution by adsorption: a review, Adv. Colloid Interface Sci., 209 (2014) 172–184.
  10. R.P. Han, L.J. Zhang, C. Song, M.M. Zhang, H.M. Zhu, L.J. Zhang, Characterization of modified wheat straw, kinetic and equilibrium study about copper ion and methylene blue adsorption in batch mode, Carbohydr. Polym., 79 (2010) 1140–1149.
  11. X. Xu, B.Y. Gao, B. Jin, Q.Y. Yue, Removal of anionic pollutants from liquids by biomass materials: a review, J. Mol. Liq., 215 (2016) 565–595.
  12. T. Zhou, W.Z. Lu, L.F. Liu, H.M. Zhu, Y.B. Jiao, S.S. Zhang, R.P. Han, Effective adsorption of light green anionic dye from solution by CPB modified peanut in column mode, J. Mol. Liq., 211 (2015) 909–914.
  13. Y. Shang, J.H. Zhang, X. Wang, R.D. Zhang, W. Xiao, S.S. Zhang, R.P. Han, Use of polyethyleneimine-modified wheat straw for adsorption of Congo red from solution in batch mode, Desal. Water Treat., 57 (2015) 8872–8883.
  14. W.S. Wan Ngah, M.A.K.M. Hanafiah, Removal of heavy metal ions from wastewater by chemically modified plant wastes as adsorbents: a review, Bioresour. Technol., 99 (2008) 3935–3948.
  15. R.D. Zhang, J.H. Zhang, X.N. Zhang, C.C. Dou, R.P. Han, Adsorption of Congo red from aqueous solutions using cationic surfactant modified wheat straw in batch mode: kinetic and equilibrium study, J. Taiwan Inst. Chem. Eng., 45 (2014) 2578–2583.
  16. J.Y. Song, W.H. Zou, Y.Y. Bian, F.Y. Su, R.P. Han, Adsorption characteristics of methylene blue by peanut husk in batch and column modes, Desalination, 265 (2011) 119–125.
  17. Y.F. Gu, M.Y. Liu, M.M. Yang, W.L. Wang, S.S. Zhang, R.P. Han, Adsorption of light green anionic dye from solution using polyethyleneimine-modified carbon nanotubes in batch mode, Desal. Water Treat., 138 (2019) 368–378.
  18. P. Xu,. M. Zeng, D.L. Huang, C. Feng, S. Hu, M.H. Zhao, Z.F. Liu, Use of iron oxide nanomaterials in wastewater treatment: a review, Sci. Total Environ., 424 (2012) 110–120.
  19. R. Sivashankar, A.B. Sathya, K. Vasantharaj, V. Sivasubramanian, Magnetic composite an environmental super adsorbent for dye sequestration – a review, Environ. Nanotechnol. Monit. Manage., 1–2 (2014) 36–49.
  20. B. Jiang, L. Lian, Y. Xing, N.N. Zhang, Y.T. Chen, P. Lu, D.Y. Zhang, Advances of magnetic nanoparticles in environmental application: environmental remediation and (bio) sensors as case studies, Environ. Sci. Pollut. Res., 25 (2018) 30863–30879.
  21. M.Y. Liu, J.J. Dong, W.L. Wang, M.M. Yang, Y.F. Gu, R.P. Han, Study of methylene blue adsorption from solution by magnetic graphene oxide composites, Desal. Water Treat., 147 (2019) 398–408.
  22. Y.Y. Hu, R.P. Han, Selective and efficient removal of anionic dyes from solution by zirconium(IV) hydroxide coated magnetic materials, J. Chem. Eng. Data, 64 (2019) 791–799.
  23. S. Laurent, D. Forge, M. Port, A. Roch, C. Robic, L.V. Elst, Magnetic iron oxide nanoparticles: synthesis, stabilization, vectorization, physicochemical characterizations, and biological applications, Chem. Rev., 108 (2008) 2064–2110.
  24. J. Zhou, Y. Liu, X. Zhou, J. Ren, C. Zhong, Removal of mercury ions from aqueous solution by thiourea-functionalized magnetic biosorbent: preparation and mechanism study, J. Colloid Interface Sci., 507 (2007) 107–118.
  25. X. Zhou, J. Zhou, Y. Liu, J. Guo, J. Ren, F. Zhou, Preparation of iminodiacetic acid-modified magnetic biochar by carbonization, magnetization and functional modification for Cd(II) removal in water, Fuel, 233 (2018) 469–479.
  26. Y. Zong, H. Xin, J. Zhang, X. Li, F. Feng, X. Deng, One-pot, template- and surfactant-free solvothermal synthesis of highcrystalline Fe3O4 nanostructures with adjustable morphologies and high magnetization, J. Magn. Magn. Mater., 423 (2017) 321–326.
  27. J. Liu, Y. Yu, S. Zhu, J. Yang, J. Song, W. Fan, Synthesis and characterization of a magnetic adsorbent from negativelyvalued iron mud for methylene blue adsorption, PLoS One, 13 (2018) e0191229.
  28. M.M. Yang, X.Y. Li, W.L. Wang, S.S. Zhang, R.P. Han, Adsorption of methyl blue from solution by carboxylic multi-walled carbon nanotubes in batch mode, Desal. Water Treat., 159 (2019) 365–376.
  29. B. Volesky, Biosorption and me, Water Res., 41 (2007) 4017–4029.
  30. Y.S. Ho, G. McKay, Pseudo-second-order model for sorption process, Process Biochem., 34 (1999) 451–465.
  31. C.W. Cheung, J.F. Porter, G. McKay, Sorption kinetics for the removal of copper and zinc from effluents using bone char, Sep. Purif. Technol., 19 (2000) 55–64.
  32. W.J. Weber Jr., J.C. Morris, Kinetic of adsorption on carbon from solution, J. Sanitary Eng. Div., 89 (1962) 31–59.
  33. I. Langmuir, The constitution and fundamental properties of solids and liquids, J. Am. Chem. Soc., 38 (1916) 2221–2295.
  34. V. Rocher, A. Bee, J.M. Siaugue, V. Cabuil, Dye removal from aqueous solution by magnetic alginate beads crosslinked with epichlorohydrin, J. Hazard. Mater., 178 (2010) 434–439.
  35. N. Besharati, N. Alizadeh, S. Shariati, Removal of cationic dye methylene blue (MB) from aqueous solution by coffee and peanut husk modified with magnetite iron oxide nanoparticles, J. Mex. Chem. Soc., 62 (2018) 110–124.
  36. Z. Aksu, Determination of the equilibrium, kinetic and thermodynamic parameters of the batch biosorption of nickel(II) ions onto Chlorella vulgaris, Process Biochem., 38 (2002) 89–99.
  37. R.P. Han, Y. Wang, Q. Sun, L.L. Wang, J.Y. Song, X.T. He, C.C. Dou, Malachite green adsorption onto natural zeolite and reuse by microwave irradiation, J. Hazard. Mater., 175 (2010) 1056–1061.
  38. B.L. Zhao, W. Xiao, Y. Shang, H.M. Zhu, R.P. Han, Adsorption of light green anionic dye using cationic surfactant-modified peanut husk in batch mode, Arabian J. Chem., 10 (2017) S3595–S3602.
  39. Y.F. Gu, M.M. Yang, W.L. Wang, R.P. Han, Phosphate adsorption from solution by zirconium loaded carbon nanotubes in batch mode, J. Chem. Eng. Data, 64 (2019) 2849–2858.
  40. Y.N. Shang, X. Xu, B.Y. Gao, Q.Y. Yue, Highly selective and efficient removal of fluoride from aqueous solution by Zr-La dual-metal hydroxide anchored bio-sorbents, J. Cleaner Prod., 199 (2018) 36–46.
  41. S. Dawood, T.K. Sen, Removal of anionic dye Congo red from aqueous solution by raw pine and acid-treated pine cone powder as adsorbent: equilibrium, thermodynamic, kinetics, mechanism and process design, Water Res., 46 (2012) 1933–1946.
  42. S.S. Chen, K. Wen, X.T. Zhang, R.Z. Zhang, R.P. Han, Adsorption of Neutral red onto MIL-100(Fe) from solution: characterization, equilibrium, kinetics, thermodynamic and process design, Desal. Water Treat., 177 (2020) 197–208.