References

  1. V. Boonamnuayvitaya, C. Chaiya, W. Tanthapanichakoon, S. Jarudilokkul, Removal of heavy metals by adsorbent prepared from pyrolyzed coffee residues and clay, Sep. Purif. Technol., 35 (2004) 11–22.
  2. A. Azari, B. Kakavandi, R.R. Kalantary, E. Ahmadi, M. Gholami, Z. Torkshavand, M. Azizi, Rapid and efficient magnetically removal of heavy metals by magnetite-activated carbon composite: a statistical design approach, J. Porous Mater., 22 (2015) 1083–1096.
  3. A. Günay, E. Arslankaya, I. Tosun, Lead removal from aqueous solution by natural and pretreated clinoptilolite: adsorption equilibrium and kinetics, J. Hazard. Mater., 146 (2007) 362–371.
  4. M. Radfard, M. Yunesian, R. Nabizadeh, H. Biglari, S. Nazmara, M. Hadi, N. Yousefi, M. Yousefi, A. Abbasnia, A.H. Mahvi, Drinking water quality and arsenic health risk assessment in Sistan and Baluchestan, Southeastern Province, Iran, Human Ecol. Risk Assess., (2018) 1–17, doi: 10.1080/10807039.2018.1458210.
  5. X. Chen, K.F. Lam, S.F. Mak, K.L. Yeung, Precious metal recovery by selective adsorption using biosorbents, J. Hazard. Mater., 186 (2011) 902–910.
  6. A. Alahabadi, M.H. Ehrampoush, M. Miri, H.E. Aval, S. Yousefzadeh, H.R. Ghaffari, E. Ahmadi, P. Talebi, Z.A. Fathabadi, F. Babai, A comparative study on capability of different tree species in accumulating heavy metals from soil and ambient air, Chemosphere, 172 (2017) 459–467.
  7. S. Pal, D. Mal, R. Singh, Cationic starch: an effective flocculating agent, Carbohydr. Polym., 59 (2005) 417–423.
  8. S. Ayub, S. Ali, N. Khan, Adsorption studies on the low cost adsorbent for the removal of Cr (VI) from electroplating wastewater, Environ. Pollut. Control J., 5 (2002) 10–20.
  9. S. Ayub, S. Ali, N. Khan, R. Rao, Extraction of chromium from the wastewater by adsorption, Environ. Pollut. Control J., 2 (1999) 27–31.
  10. M. Ghoochani, N. Rastkari, M. Yunesian, R.N. Nodehi, A. Mesdaghinia, A. Houshiarrad, M. Shamsipour, M.H. Dehghani, What do we know about exposure of Iranians to cadmium? Findings from a systematic review, Environ. Sci. Pollut. Res., 25 (2018) 1–11.
  11. M. Dehghani, F. Changani, The effect of acoustic cavitation on Chlorophyceae from effluent of wastewater treatment plant, Environ. Technol., 27 (2006) 963–968.
  12. N. Kataria,V. Garg, Green synthesis of Fe3O4 nanoparticles loaded sawdust carbon for cadmium (II) removal from water: regeneration and mechanism, Chemosphere, 208 (2018) 818–828.
  13. S.S. Ahluwalia, D. Goyal, Microbial and plant derived biomass for removal of heavy metals from wastewater, Bioresour. Technol., 98 (2007) 2243–2257.
  14. R.M. Kulkarni, K.V. Shetty, G. Srinikethan, Optimization of nickel (II) and cadmium (II) biosorption on brewery sludge using response surface methodology. Mater. Ener. Environ. Eng. , (2017) 121–127, doi: https://doi.org/10.1007/978-981-10-2675-1_14.
  15. International Agency for Research on Cancer (IARC). Beryllium, Cadmium, Mercury and Exposures in the Glass Manufacturing Industry. Monographs on the Evaluation of Carcinogenic Risk to Humans, International Agency for Research on Cancer, Lyon, France, Vol. 58, 1993, pp. 119–237.
  16. M. Jain, V. Garg, K. Kadirvelu, Cadmium (II) sorption and desorption in a fixed bed column using sunflower waste carbon calcium–alginate beads, Bioresour. Technol., 129 (2013) 242–248.
  17. M. Ince, O.K. Ince, An overview of adsorption technique for heavy metal removal from water/wastewater: a critical review, Int. J. Pure Appl. Sci., 3 (2017) 10–19.
  18. H.A. Hegazi, Removal of heavy metals from wastewater using agricultural and industrial wastes as adsorbents. HBRC J., 9 (2013) 276–282.
  19. WHO. Guideline for Drinking Water Quality. Geneva. World Health Organization. 2011
  20. A. Tripathi, M.R. Ranjan, Heavy metal removal from wastewater using low cost adsorbents. J. Bioremediat. Biodegrad., 6 (2015) 5
  21. M. Agarwal, K. Singh, Heavy metal removal from wastewater using various adsorbents: a review. J. Water Reuse Desal., 7 (2017) 387–419.
  22. N. Nasseh, L. Taghavi, B. Barikbin, A.R. Harifi-Mood, The removal of Cr (VI) from aqueous solution by almond green hull waste material: kinetic and equilibrium studies, J. Water Reuse Desal., 7 (2017) 449–460.
  23. S. Dowlatshahi, H. Torbati, A. Reza, M. Loloei, Adsorption of copper, lead and cadmium from aqueous solutions by activated carbon prepared from saffron leaves, J. Environ. Health. Eng. Manage. 1 (2014) 37–44.
  24. A. Jahangard, M. Sohrabi, Z. Beigmohammadi, Sorption of lead (II) ions on activated coconut husk, Iran. J. Toxicol., 10 (2016) 23–29.
  25. E. Ahmadi, M. Gholami, M. Farzadkia, R. Nabizadeh, A. Azari, Study of moving bed biofilm reactor in diethyl phthalate and diallyl phthalate removal from synthetic wastewater, Bioresour. Technol., 183 (2015) 129–135.
  26. A.K. Meena, K. Kadirvelu, G. Mishra, C. Rajagopal, P. Nagar, Adsorptive removal of heavy metals from aqueous solution by treated sawdust (Acacia arabica), J. Hazard. Mater., 150 (2008) 604–611.
  27. E. Rice, R. Baird, A. Eaton, S. Lenore, Standard Methods: For the Examination Water and Wastewater 22nd ed. American Public Health Association, American Water Works Association, Water Environmental Federation, 2012.
  28. A. Mohammadi, A. Alinejad, B. Kamarehie, S. Javan, A. Ghaderpoury, M. Ahmadpour, M. Ghaderpoori, Metalorganic framework Uio-66 for adsorption of methylene blue dye from aqueous solutions. Int. J. Environ. Sci. Technol., 14 (2017) 1959–1968.
  29. J. Jaafari, M.G. Ghozikali, A. Azari, M.B. Delkhosh, A.B. Javid, A.A. Mohammadi, S. Agarwal, V.K. Gupta, M. Sillanpää, A.G. Tkachev, A.E. Burakov Adsorption of p-cresol on Al2O3 coated multi-walled carbon nanotubes: response surface methodology and isotherm study, J. Ind. Eng. Chem., 57 (2018) 396–404.
  30. M.M. Rao, A. Ramesh, G.P.C. Rao, K. Seshaiah, Removal of copper and cadmium from the aqueous solutions by activated carbon derived from Ceiba pentandra hulls, J. Hazard. Mater., 129 (2006) 123–129.
  31. D.G. Kinniburgh, J.K. Syers, M.L. Jackson, Specific adsorption of trace amounts of calcium and strontium by hydrous oxides of iron and aluminum. Soil Sci. Soc. Am. J., 39 (1975) 464–470.
  32. I. Osasona, K. Aiyedatiwa, J. Johnson, O.L. Faboya, Activated carbon from spent brewery barley husks for cadmium ion adsorption from aqueous solution, Indones. J. Chem., 18 (2018) 145–152.
  33. B. Subramanyam, A. Das, Linearised and non-linearised isotherm models optimization analysis by error functions and statistical means. J. Environ. Health Sci. Eng., 12 (2014) 92.
  34. C.H. Bolster, G.M. Hornberger, On the use of linearized Langmuir equations. Soil Sci. Soc. Am. J., 71 (2007) 1796–1806.
  35. A. Sigdel, W. Jung, B. Min, M. Lee, U. Choi, T. Timmes, S.-J. Kim, C.-U. Kang, R. Kumar, B.-H. Jeon, Concurrent removal of cadmium and benzene from aqueous solution by powdered activated carbon impregnated alginate beads. Catena, 148 (2017) 101–107.
  36. D. Mohan, K.P. Singh, Single-and multi-component adsorption of cadmium and zinc using activated carbon derived from bagasse—an agricultural waste. Water Res., 36 (2002) 2304–2318.