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Original Articles

Removal of Cd2+, Pb2+, and Zn2+ from contaminated water using dolomite powder

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Pages 1178-1192 | Received 06 May 2016, Accepted 17 Mar 2017, Published online: 12 Jun 2017

References

  • Albadarin AB, Mangwandi C, Al-Muhtaseb AH, et al. 2012. Kinetic and thermodynamics of chromium ions adsorption onto low-cost dolomite adsorbent. Chem Eng J 179:193–202
  • Al-Degs YS, El-Barghouthi MI, Issa AA, et al. 2006. Sorption of Zn(II), Pb(II), and Co(II) using natural sorbents: Equilibrium and kinetic studies. Water Res 40:2645–58
  • Alinnor IJ. 2007. Adsorption of heavy metal ions from aqueous solution by fly ash. Fuel 86:853–857
  • Bruanuer S, Emmett PH, Teller E. 1938. Adsorption of gases in multi molecular layers. J Am Chem Soc 60:309–16
  • Cadena F, Rizvi R, Peters RW. 1990. Feasibility studies for the removal of heavy metals from solution using tailored bentonite. In Hazardous and Industrial Wastes, Proceedings of the Twenty-Second Mid-Atlantic Industrial Waste Conference, pp. 77–94. Drexel University
  • Calugaru IL, Neculita CM, Genty T, et al. 2016. Performance of thermally activated dolomite for the treatment of Ni and Zn in contaminated neutral drainage. J Haz Mat 310:48–55
  • Chotpantarat S, Ong SK, Sutthirat C, Osathaphan K. 2011. Effect of pH on transport of Pb2+, Mn2+, Zn2+ and Ni2+ through lateritic soil: Column experiments and transport modeling. J Environ Sci-China 23:640–8
  • Chotpantarat S, Ong SK, Sutthirat C, Osathaphan K. 2012. Competitive modeling of sorption and transport of Pb2+, Ni2+, Mn2+, and Zn2+ under binary and multi-metal systems in lateritic soil columns. Geoderma 189–190:278–87
  • Coles CA, Yong RN. 2002. Aspects of kaolinite characterization and retention of Pb and Cd. Appl Clay Sci 22:39–45
  • Department of Public Health and Human Services. 2008. Division of Toxicology and Environmental Medicine ToxFAQs™, Toxicological Profile for Canmium (Draft for Public Comment), Agency for Toxic Substances and Disease Registry (ATSDR). Public Health Service, Atlanta, Georgia
  • Deshkar AM, Bokade SS, Dara SS. 1990. Modified Hardwickia Binata bark for adsorption of mercury (II) from water. Water Res 24:1011–6
  • Du Y, Lian F, Zhu L. 2011. Biosorption of divalent Pb, Cd and Zn on aragonite and calcite mollusk shells. Environ Pollut 159:1763–8
  • Fu F, Wang Q. 2011. Removal of heavy metal ions from wastewaters: A review. J Environ Manage 92:407–18
  • Gadsden JA. 1975. Infrared Spectra of Minerals and Related Inorganic Compounds. The Butterworth Group, England
  • Gunasekaran Anbalagan. 2007. Spectroscopic study of phase transition in dolomite mineral. J Raman Spectrosc 38(7):846–52
  • Gupta VK, Ali I, Saleh TA, et al. 2012. Chemical treatment technologies for waste-water recycling – an overview. RSC Adv 2:6380–8
  • Gupta VK, Kumar R, Nayak A, et al. 2013. Adsorptive removal of dyes from aqueous solution onto carbon nanotubes: A review. Adv Coll Interf Sci 193–194:24–34
  • Gupta VK, Nayak A, Agarwal S. 2015. Bioadsorbents for remediation of heavy metals: Current status and their future prospects. Environ Eng Res 20:001–18
  • Hajjaji M, Kacim S, Alami A, et al. 2001. Chemical and mineralogical characterization of a clay taken from the Moroccan Meseta and a study of the interaction between its fine fraction and methylene blue. Appl Clay Sci 20:1–12
  • Irani M, Amjadi M, Mousavian MA. 2011. Comparative study of lead sorption onto natural perlite, dolomite and diatomite. Chem Eng J 178:317–23
  • Karaca S, Gurses A, Ejder M, IkyIldIz MA. 2006. Adsorptive removal of phosphate from aqueous solutions using raw and calcinated dolomite. J Hazard Mater 128:273–9
  • Kwon JS, Yun ST, Lee JH, et al. 2010. Removal of divalent heavy metals (Cd, Cu, Pb, and Zn) and arsenic (III) from aqueous solutions using scoria: kinetics and equilibria of sorption. J Hazard Mater 174:307–13
  • Leppert D. 1990. Heavy metal sorption with clinoptilolite zeolite: alternatives for treating contaminated soil and water. Mining Eng 42:604–8
  • Martin-Dupont F, Gloaguen V, Guilloton M, et al. 2006. Study of the chemical interaction between barks and heavy metal cations in the sorption process. J Environ Sci Health Part A 41:149–60
  • Naseem R, Tahir SS. 2001. Removal of Pb(II) from aqueous solution by using bentonite as an adsorbent. Water Res 35:3982–6
  • Oyaro N, Juddy O, Murago ENM, Gitong E. 2007. The contents of Pb, Cu, Zn and Cd in meat in Nairobi, Kenya. J Food Agric Environ 5:119–21
  • Pehlivan E, Cetin S, Yanık BH. 2006. Equilibrium studies for the sorption of zinc and copper from aqueous solutions using sugar beet pulp and fly ash. J Hazard Mater 135:193–9
  • Pehlivan E, Ozkan AM, Dinc S, Parlayici S. 2009. Adsorption of Cu2+ and Pb2+ ion on dolomite powder. J Hazard Mater 167:1044–9
  • Pokrovsky OS, Schott J, Thomas F. 1999. Dolomite surface speciation and reactivity in aquatic systems. Geochim Cosmochim Acta 63:3133–43
  • Rorrer GL, Hsien TY, Way JD. 1993. Synthesis of porous-magnetic chitosan beads for removal of cadmium ions from waste water. Ind Eng Chem Res 32:2170–8
  • Roy D, Greenlaw PN, Roy D, et al. 1993. Adsorption of heavy metals by green algae and ground rice hulls. J Environ Sci Health A 28:37–50
  • Saleh TA, Gupta VK. 2012. Photo-catalyzed degradation of hazardous dye methyl orange by use of a composite catalyst consisting of multi-walled carbon nanotubes and titanium dioxide. J Coll Interf Sci 371:101–6
  • Saleh TA, Gupta VK. 2014. Processing methods, characteristics and adsorption behavior of tire derived carbons: A review. Adv Coll Interf Sci 211:92–100
  • Santona L, Castaldi P, Melis P. 2006. Evaluation of the interaction mechanisms between red muds and heavy metals. J Hazard Mater 136:324–9
  • Sari A, Tuzen M, Soylak M. 2007. Adsorption of Pb(II) and Cr(III) from aqueous solution on Celtek clay. J Hazard Mater 144:41–6
  • Sdiri AT, Higashi T, Jamouss F. 2014. Adsorption of copper and zinc onto natural clay in single and binary systems. Int J Environ Sci Technol 11:1081–92
  • Sharifipour F, Hojati S, Landi A, Cano FA. 2015. Kinetics and thermodynamics of lead adsorption from aqueous solutions onto Iranian sepiolite zeolite. Int J Environ Res 9(3):1001–10
  • Srivastava SK, Singh AK, Sharma A. 1994. Studies on the uptake of lead and zinc by lignin obtained from black liquor – a paper industry waste material. Environ Technol 15:353–61
  • Tan KH. 1995. Soil Sampling, Preparation, and Analysis, Marcel Dekker Inc, New York
  • Thakur SK, Tomar NK, Pandeya SB. 2006. Influence of phosphate on cadmium sorption by calcium carbonate. Geoderma 130:240–9
  • Usman ARA. 2008. The relative adsorption selectivities of Pb, Cu, Zn, Cd and Ni by soils developed on shale in New Valley, Egypt. Geoderma 144:334–43
  • Van Raij BV, Peech M. 1972. Electrochemical properties of some oxisols and alfisols of the tropics. Soil Sci Soc Am Pro 36:587–93
  • Wahab MA, Jellali S, Jedidi N. 2010. Ammonium biosorption onto sawdust: FTIR analysis, kinetics and adsorption isotherms modeling. Bioresource Technol 101:5070–5
  • Walker GM, Hanna JA, Allen SJ. 2005. Treatment of hazardous shipyard wastewater using dolomitic sorbents. Water Res 39:2422–8
  • Warren J. 2000. Dolomite: occurrence, evolution and economically important associations. Earth-Sci Rev 52:1–81
  • Wongsasuluk P, Chotpantarat S, Siriwong W, et al. 2014. Heavy metal contamination and human health risk assessment in drinking water from shallow groundwater wells in an agricultural area at Ubon Ratchathani Province, Thailand. Environ Geochem Hlth 36(1):169–82
  • Yamkate N. 2013. Adsorption efficiency of Cd, Pb, and Zn on dolomite power from P.C.Nisth Mine, Suratthani province. Master thesis, Chulalongkorn University, Bangkok
  • Yavuz Ö, Guzel R, Aydin F, et al. 2007. Removal of cadmium and lead from aqueous solution by calcite. Pol J Environ Stud 16:467–71
  • Zhou Y, Haynes RJ. 2010. Sorption of heavy metal by inorganic and organic components of solid wastes: significance to use of wastes as low-cost adsorbents and immobilizing agents. Environ Sci Technol 40:909–77

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