70
3 Adsorption of Pb(II), Cu(II), Ni(II), Zn(II), Cr(VI) …
20. A. Itodo, F. Abdulrahman, L. Hassan, S. a. Maigandi, H. Itodo, Intraparticle diffusion and
intraparticulate diffusivities of herbicide on derived activated carbon. Researcher 2(2) (2010),
pp. 74–86
21. M.M. Rao, G.P.C. Rao, K. Seshaiah, N.V. Choudary, M.C. Wang, Activated carbon from Ceiba
pentandra hulls, an agricultural waste, as an adsorbent in the removal of lead and zinc from
aqueous solutions. Waste Manag. 28(5), 849–858 (2008)
22. S. Hao, A. Verlotta, P. Aprea, F. Pepe, D. Caputo, W. Zhu, Optimal synthesis of aminofunctionalized mesoporous silicas for the adsorption of heavy metal ions. Microporous
Mesoporous Mater. 236, 250–259 (2016)
23. K.J. Adarsh, D.G. Madhu, A comparative study on metal adsorption properties of different
forms of chitosan. Int. J. Innov. Res. Sci. Eng. Technol. 3(2), 9609–9617 (2014)
24. X. Luo, Z. Zhang, P. Zhou, Y. Liu, G. Ma, Z. Lei, Synergic adsorption of acid blue 80 and
heavy metal ions (Cu 2+ /Ni 2+ ) onto activated carbon and its mechanisms. J. Ind. Eng. Chem.
27, 164–174 (2015)
25. B. Li, M. Li, J. Zhang, Y. Pan, Z. Huang, H. Xiao, Adsorption of Hg (II) ions from aqueous
solution by diethylenetriaminepentaacetic acid-modified cellulose. Int. J. Biol. Macromol. 122,
149–156 (2019)
26. A. Selvakumar, S. Rangabhashiyam, Biosorption of rhodamine B onto novel biosorbents from
Kappaphycus alvarezii, Gracilaria salicornia and Gracilaria edulis*. Environ. Pollut. 255,
(2019)
27. E. Igberase, P. Osifo, A. Ofomaja, Adsorption of metal ions by microwave assisted grafting
of cross-linked chitosan beads. Equilibrium, isotherm, thermodynamic and desorption studies.
Appl. Organomet. Chem. (2017)
28. M. Doˇ gan, Y. Turhan, M. Alkan, H. Namli, P. Turan, Ö.¨ Demirba¸ s Functionalized sepiolite
for heavy metal ions adsorption. Desalination 230(1–3) (2008), pp. 248–268
29. L. Nouri, I. Ghodbane, O. Hamdaoui, M. Chiha, Batch sorption dynamics and equilibrium for
the removal of cadmium ions from aqueous phase using wheat bran. J. Hazard. Mater. 149(1),
115–125 (2007)
30. C. Dong, F. Zhang, Z. Pang, G. Yang, Efficient and selective adsorption of multi-metal ions
using sulfonated cellulose as adsorbent. Carbohydr. Polym. 151, 230–236 (2016)
31. J.B. Neris, F.H.M. Luzardo, E.G.P. da Silva, F.G. Velasco, Evaluation of adsorption processes of
metal ions in multi-element aqueous systems by lignocellulosic adsorbents applying different
isotherms: a critical review. Chem. Eng. J. 357 (2019), pp. 404–420
32. J. Shen, Z. Duvnjak, Adsorption kinetics of cupric and cadmium ions on corncob particles.
Process Biochem. 40(11), 3446–3454 (2005)
33. A.A. Taha, M.A. Shreadah, A.M. Ahmed, H. Fathy, Multi-component adsorption of Pb (II), Cd
(II), and Ni (II) onto Egyptian Na-activated bentonite; equilibrium, kinetics, thermodynamics,
and application for seawater desalination. Biochem. Pharmacol. 4(1), 1166–1180 (2016)
34. W.S.W. Ngah, S. Ab Ghani, A. Kamari, Adsorption behaviour of Fe(II) and Fe(III) ions in
aqueous solution on chitosan and cross-linked chitosan beads. Bioresour. Technol. 96(4) (2005),
pp. 443–450
3 Adsorption of Pb(II), Cu(II), Ni(II), Zn(II), Cr(VI) …
20. A. Itodo, F. Abdulrahman, L. Hassan, S. a. Maigandi, H. Itodo, Intraparticle diffusion and
intraparticulate diffusivities of herbicide on derived activated carbon. Researcher 2(2) (2010),
pp. 74–86
21. M.M. Rao, G.P.C. Rao, K. Seshaiah, N.V. Choudary, M.C. Wang, Activated carbon from Ceiba
pentandra hulls, an agricultural waste, as an adsorbent in the removal of lead and zinc from
aqueous solutions. Waste Manag. 28(5), 849–858 (2008)
22. S. Hao, A. Verlotta, P. Aprea, F. Pepe, D. Caputo, W. Zhu, Optimal synthesis of aminofunctionalized mesoporous silicas for the adsorption of heavy metal ions. Microporous
Mesoporous Mater. 236, 250–259 (2016)
23. K.J. Adarsh, D.G. Madhu, A comparative study on metal adsorption properties of different
forms of chitosan. Int. J. Innov. Res. Sci. Eng. Technol. 3(2), 9609–9617 (2014)
24. X. Luo, Z. Zhang, P. Zhou, Y. Liu, G. Ma, Z. Lei, Synergic adsorption of acid blue 80 and
heavy metal ions (Cu 2+ /Ni 2+ ) onto activated carbon and its mechanisms. J. Ind. Eng. Chem.
27, 164–174 (2015)
25. B. Li, M. Li, J. Zhang, Y. Pan, Z. Huang, H. Xiao, Adsorption of Hg (II) ions from aqueous
solution by diethylenetriaminepentaacetic acid-modified cellulose. Int. J. Biol. Macromol. 122,
149–156 (2019)
26. A. Selvakumar, S. Rangabhashiyam, Biosorption of rhodamine B onto novel biosorbents from
Kappaphycus alvarezii, Gracilaria salicornia and Gracilaria edulis*. Environ. Pollut. 255,
(2019)
27. E. Igberase, P. Osifo, A. Ofomaja, Adsorption of metal ions by microwave assisted grafting
of cross-linked chitosan beads. Equilibrium, isotherm, thermodynamic and desorption studies.
Appl. Organomet. Chem. (2017)
28. M. Doˇ gan, Y. Turhan, M. Alkan, H. Namli, P. Turan, Ö.¨ Demirba¸ s Functionalized sepiolite
for heavy metal ions adsorption. Desalination 230(1–3) (2008), pp. 248–268
29. L. Nouri, I. Ghodbane, O. Hamdaoui, M. Chiha, Batch sorption dynamics and equilibrium for
the removal of cadmium ions from aqueous phase using wheat bran. J. Hazard. Mater. 149(1),
115–125 (2007)
30. C. Dong, F. Zhang, Z. Pang, G. Yang, Efficient and selective adsorption of multi-metal ions
using sulfonated cellulose as adsorbent. Carbohydr. Polym. 151, 230–236 (2016)
31. J.B. Neris, F.H.M. Luzardo, E.G.P. da Silva, F.G. Velasco, Evaluation of adsorption processes of
metal ions in multi-element aqueous systems by lignocellulosic adsorbents applying different
isotherms: a critical review. Chem. Eng. J. 357 (2019), pp. 404–420
32. J. Shen, Z. Duvnjak, Adsorption kinetics of cupric and cadmium ions on corncob particles.
Process Biochem. 40(11), 3446–3454 (2005)
33. A.A. Taha, M.A. Shreadah, A.M. Ahmed, H. Fathy, Multi-component adsorption of Pb (II), Cd
(II), and Ni (II) onto Egyptian Na-activated bentonite; equilibrium, kinetics, thermodynamics,
and application for seawater desalination. Biochem. Pharmacol. 4(1), 1166–1180 (2016)
34. W.S.W. Ngah, S. Ab Ghani, A. Kamari, Adsorption behaviour of Fe(II) and Fe(III) ions in
aqueous solution on chitosan and cross-linked chitosan beads. Bioresour. Technol. 96(4) (2005),
pp. 443–450
