References

  1. ABRI, Australian Battery Recycling Initiative, 2019. Available at: http://www.batteryrecycling.org.au/home
  2. D.W. Connell, C. Birkinshaw, T.F. Dwyer, Heavy metal adsorbents prepared from the modification of cellulose: a review, Bioresour. Technol., 99 (2008) 6709–6724.
  3. S.S. Banerjee, D.H. Chen, Fast removal of copper ions by gum arabic modified magnetic nano-adsorbent, J. Hazard. Mater., 147 (2007) 792–799.
  4. X. Chen, J.V. Wright, J.L. Conca, L.M. Peurrung, Effects of pH on heavy metal sorption on mineral apatite, Environ. Sci. Technol., 31 (1997) 624–631.
  5. J. Gao, H. Gu, B. Xu, Multifunctional magnetic nanoparticles: design, synthesis, and biomedical applications, Acc. Chem. Res., 42 (2009) 1097–1107.
  6. E. Deliyanni, D. Bakoyannakis, A. Zouboulis, K. Matis, Sorption of As(V) ions by akaganéite-type nanocrystals, Chemosphere, 50 (2003) 155–163.
  7. R. Kamaraj, P. Ganesan, S. Vasudevan, Use of hydrous titanium dioxide as potential sorbent for the removal of manganese from water, J. Electrochem. Sci. Eng., 4 (2014) 187–201.
  8. P. Ganesan, R. Kamaraj, G. Sozhan, S. Vasudevan, Oxidized multiwalled carbon nanotubes as adsorbent for the removal of manganese from aqueous solution, Environ. Sci. Pollut. Res., 20 (2013) 987–996.
  9. P. Ganesan, R. Kamaraj, S. Vasudevan, Application of isotherm, kinetic and thermodynamic models for the adsorption of nitrate ions on graphene from aqueous solution, J. Taiwan Inst. Chem. Eng., 44 (2013) 808–814.
  10. E. Taghdir, M. Aghaie, V. Hadadi, Adsorption study of Cr(III), Ni(II) and Zn(II) ions onto the multi-walledcarbon nanotubes, Russ. J. Phys. Chem. B, 9 (2015) 399–405.
  11. H. Sadegh, A. Gomaa, A.S. Hamdy Makhlouf, K.F. Chong, N.S. Alharbi, S. Agharwal, V.K. Gupta, MWCNTs-Fe3O4 nanocomposite for Hg(II) high adsorption efficiency, J. Mol. Liq., 258 (2018) 345–353.
  12. P. Ganesan, J. Lakshmi, G. Sozhan, S. Vasudevan, Removal of manganese from water by electrocoagulation: adsorption, kinetics and thermodynamic studies, Can. J. Chem. Eng., 91 (2013) 448–458.
  13. S. Vasudevan, J. Lakshmi, G. Sozhan, Simultaneous removal of Co, Cu, and Cr from water by electrocoagulation, Toxicol. Environ. Chem., 94 (2012) 1930–1940.
  14. S. Vasudevan, J. Lakshmi, G. Sozhan, Studies on the removal of arsenate from water through electrocoagulation using direct and alternating current, Desal. Water Treat., 48 (2012) 163–173.
  15. N.M. Mahmoodi, F. Najafi, A. Neshat, Poly(amidoamine-coacrylic acid) copolymer: synthesis, characterization and dye removal ability, Ind. Crops Prod., 42 (2013) 119–125.
  16. B. Hayati, A. Maleki, N, Farhood, G. Fardin, M. Gordon, G. Vinod Kumar, N. Marzban, H.P. Shivaraju, Heavy metal adsorption using PAMAM/CNT nanocomposite from aqueous solution in batch and continuous fixed bed systems, Chem. Eng. J., 346 (2018) 258–270.
  17. N. Jarrah, N.D. Muazu, M. Zubair, M. Al-Harthi, Enhanced adsorptive performance of Cr(VI) onto layered double hydroxide-bentonite composite: isotherm, kinetic and thermodynamic studies, Sep. Sci. Technol., (2019) 1–13.
  18. L. Duan, H. Ning, W. Tongqing, W. Hong, L. Lixia, S. Yue, X. Xianmei, Removal of copper and lead from aqueous solution by adsorption onto cross-linked chitosan/montmorillonite nanocomposites in the presence of hydroxyl-aluminum oligomeric cations: equilibrium, kinetic, and thermodynamic studies, Chem. Eng. Commun., 203 (2016) 28–36.
  19. M. Ebadi, H. Shagholani, H. Jahangiri, High efficient nanocomposite for removal of heavy metals (Hg2+ and Pb2+) from aqueous solution, J. Nanostruct., 6 (2016) 23–27.
  20. S. Hashemian, H. Saffari, S. Ragabion, Adsorption of cobalt(II) from aqueous solutions by Fe3O4/bentonite nanocomposite, Water Air Soil Pollut., 226 (2015) 2212.
  21. S. Samadi, R. Motallebi, M. Nasiri Nasrabadi, Synthesis, characterization and application of Lanthanide metal-ion doped TiO2/bentonite nanocomposite for removal of Lead(II) and Cadmium(II) from aquatic media, J. Water Environ. Nanotechnol., 1 (2016) 35–44.
  22. P.K. Jaseela, J. Garvasis, A. Joseph, Selective adsorption of methylene blue (MB) dye from aqueous mixture of MB and methyl orange (MO) using mesoporous titania (TiO2) – poly vinyl alcohol (PVA) nanocomposite, J. Mol. Liq., 286 (2019) 110908.
  23. A. Andelescu, M.A. Nistor, S.G. Muntean, M.E. Rădulescu- Grad, Adsorption studies on copper, cadmium, and zinc ion removal from aqueous solution using magnetite/carbon nanocomposites, Sep. Sci. Technol., 53 (2018) 2352–2364.
  24. M. Eskandari, M.Z. Khatir, A.K. Darban, M. Meshkini, Decreasing Ni, Cu, Cd, and Zn heavy metal using magnetitebentonite nanocomposites and adsorption isotherm study, Mater. Res. Express, 5 (2018) 45030.
  25. A. Masoumi, M. Ghaemy, A.N. Bakht, Removal of metal ions from water using poly(MMA-co-MA)/modified-Fe3O4 magnetic nanocomposite: isotherm and kinetic study, Ind. Eng. Chem. Res., 53 (2014) 8188–8197.
  26. J. Shan, C. Kim, Z. Zhang, L. Wang, T. Sun, Adsorption of BSA on carbon-coated Fe3O4 microspheres activated with 1-ethyl- 3-(3-dimethylaminopropyl)-carbodiimide hydrochloride, J. Wuhan Univ. Technol. Sci. Ed., 33 (2018) 1–8.
  27. J.R. Imanova, A.A. Azizov, A.M. Nabiev, F.G. Khalilova, R.M. Alosmanov, Adsorption of cadmium ions isotherm from water into polymer nanocomposite, Chem. Probl., 2018 (2018) 73–77.