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Articles

A novel approach for the adsorption of cadmium ions in aqueous solution by dead calcareous skeletons

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Pages 3169-3177 | Received 18 Mar 2013, Accepted 18 Apr 2013, Published online: 07 Jun 2013

References

  • WHO, Cadmium in Drinking-water: Background document for development of WHO guidelines for drinking-water quality, 2011.
  • S.E. Bailey, T.J. Olin, R.M. Bricka, D.D. Adrian, A review of potentially low-cost sorbents for heavy metals. Water Res. 33 (11) (1999) 2469–2479.
  • A. Demirbas, Heavy metal adsorption onto agro-based waste materials: A review. J. Hazard. Mater. 157 (2008) 220–229.
  • M. Chiban, M. Zerbet, G. Carja, F. Sinan, Application of low-cost adsorbents for arsenic removal: A review. J. Environ. Chem. Ecotoxicol. 4 (5) (2012) 91–102.
  • P.N. Dave, N. Pandey, H. Thomas, Adsorption of Cr(VI) from aqueous solutions on tea waste and coconut husk. Indian J. Chemical Technol. 19 (2012) 111–117.
  • N. Meunier, J. Laroulandie, J.F. Blais, R.D. Tyagi, Cocoa shells for heavy metal removal from acidic solutions. Bioresour. Technol. 90 (2003) 255–263.
  • Q. Zhou, Y. Chen, M. Yang, W. Li, L. Deng, Enhanced bioremediation of heavy metal from effluent by sulfate-reducing bacteria with copper-iron bimetallic particles support. Bioresour. Technol. (2013) http://dx.doi.org/10.1016/j.biortech.2013.03.047.
  • T.A. Kurniawan, G.Y.S. Chan, W.-H. Lo, S. Babel, Comparisons of low-cost adsorbents for treating wastewaters laden with heavy metals. Sci. Total Environ. 366 (2005) 409–426.
  • M.N. Saifuddin, P. Kumaran, Removal of heavy metal from industrial waste water using Chitosan coated oil palm shell charcoal. Environ. Biol. 8 (1) (2005) 1–13.
  • N.V. Farinella, G.D. Matos, E.L. Lehmann, M.A.Z. Arruda, Grape bagasse as an alternative natural adsorbent of cadmium and lead for effluent treatment. J. Hazard. Mater. 154 (2008) 1007–1012.
  • N.A. Johan, S.R.M. Kutty, M.H. Isa, N.S. Muhamad, H. Hashim, Adsorption of Copper by using Microwave Incinerated Rice Husk Ash (MIRHA). J. Civil Environ. Eng. 3 (3) (2011) 211–215.
  • B.I. Olu-owolabi, O.U. Pputu, K.O. Adebowale, O. Ogunsolu, O.O. Olujimi, Biosorption of Cd2+ and Pb2+ ions onto mango stone and cocoa pod waste: Kinetic and equilibrium studies. Sci. Res. Essays 7 (15) (2012) 1614–1629.
  • A. Sdiri, T. Higashi, T. Hatta, F. Jamoussi, N. Tase, Evaluating the adsorptive capacity of montmorillonitic and calcareous clays on the removal of several heavy metals in aqueous systems. Chem. Eng. J. 172 (2011) 37–46.
  • K.A. Matthews, W.F. McDonough, A.G. Grottoli, Cadmium measurements in coral skeleton using isotope dilution–inductively coupled plasma–mass spectrometry. Geochem. Geophys. Geosyst. 7 (11) (2006) Q11021, 10.1029/2006GC001352.
  • M.B. Mokhtar, S.M. Praveena, A.Z. Aris, Q.C. Yong, A.P. Lim, Trace metal (Cd, Cu, Fe, Mn, Ni and Zn) accumulation in Scleractinian corals: A record for Sabah, Borneo. Mar. Pollut. Bull. 64 (11) (2012) 2556–2563.
  • M. Prieto, P. Cubillas, A.F. Andez-Gonzalez, Uptake of dissolved Cd by biogenic and abiogenic aragonite: A comparison with sorption onto calcite. Geochim. Cosmochim. Acta 67 (20) (2003) 3859–3869.
  • A.J. Reichelt-Brushett, G. McOrist, Trace metals in the living and nonliving components of scleractinian corals. Mar. Pollut. Bull. 46 (2003) 1573–1582.
  • S. Patel, Potential of fruit and vegetable wastes as novel biosorbents: Summarizing the recent studies. Rev. Environ. Sci. Biotechnol. 11 (2012) 365–380.
  • L.M. Walter, J.W. Morse. The dissolution kinetics of shallow marine carbonates in seawater: A laboratory study. Geochimica et Cosmochimica Acta 49 (1985) 1503–1513.
  • F.Y. Wang, H. Wang, J.W. Ma, Adsorption of cadmium (II) ions from aqueous solution by a new low-cost adsorbent-Bamboo charcoal. J. Hazard. Mater. 177 (2010) 300–306.
  • S. Wang, L. Li, Z.H. Zhu, Solid-state conversion of fly ash to effective adsorbents for Cu removal from wastewater. J. Hazard. Mater. 139 (2) (2007) 254–259.
  • H. Radnia, A.A. Ghoreyshi, H. Younnesi, G.D. Najafpour, Adsorption of Fe (II) ions from aqueous phase by chitosan adsorbent: Equilibrium, kinetic, and thermodynamic studies. Desalin. Water Treat. 50 (2012) 348–359.
  • D. Yang, D. Jing, H. Gong, L. Zhou, X. Yang, Biosorption of aquatic cadmium (II) by unmodified rice straw. Bioresour. Technol. 114 (2012) 20–25.
  • X. Zuo, R. Balasubramanian, D. Fu, H. Li, Biosorption of copper, zinc and cadmium using sodium hydroxide immersed Cymbopogon schoenanthus L. Spreng (lemon grass). Ecol. Eng. 49 (2012) 186–189.
  • H.A. Aziz, M.N. Adlan, K.S. Ariffin, Heavy metals (Cd, Pb, Zn, Ni, Cu and Cr(III)) removal from water in Malaysia: Post treatment by high quality limestone. Bioresour. Technol. 99 (2007) 1578–1583.
  • K.A. Krishnan, T.S. Anirudhan, Removal of cadmium(II) from aqueous solutions by steamactivated sulphurised carbon prepared from sugar-cane bagasse pith: Kinetic and equilibrium studies. Water SA 29 (2) (2003) 147–156.
  • A. Almasi, M. Omidi, M. Khodadadian, R. Khamutian, M.B. Gholivand, Lead(II) and cadmium(II) removal from aqueous using processed walnut shell: Kinetic and equilibrium study. Toxicol. Environ. Chem. 94 (4) (2012) 660–671.
  • P.S. Kumar, S. Ramalingam, R.V. Abhinaya, S.D. Kirupha, M. Murugesan, S. Sivanesan, Adsorption of metal ions onto the chemically modified agricultural waste. Clean—Soil, Air, Water 40 (2) (2012) 188–197.
  • J. Kour, P.L. Homagai, M.R. Pokhrel, K.N. Ghimire, Adsorptive separation of metal ions with surface modified Desmostachya bipinnata. Nepal J. Sci. Technol. 131 (1) (2012) 101–106.
  • B.-L. Zhu, Z.-M. Xiu, N. Liu, H.-T. Bi, C.-X. Lv, Adsorption of lead and cadmium ions from aqueous solutions by modified oil shale ash. Oil shale 29 (2012) 266–278.
  • S.M. Nomanbhay, K. Palanisamy, Removal of heavy metal from industrial wastewater using chitosan coated oil palm charcoal. Electron. J. Biotechnol. 8 (1) (2005) 43–53.
  • Y. Du, F. Lian, L. Zhu, Biosorption of divalent Pb, Cd and Zn on aragonite and calcite mollusk shells. Environ. Pollut. 159 (2011) 1763–1768.
  • C. Li, P. Champagne, Fixed-bed column study for the removal of cadmium (II) and nickel (II) ions from aqueous solutions using peat and mollusk shells. J. Hazard. Mater. 171 (2009) 872–878.
  • Y. Du, L. Zhu, G. Shan, Removal of Cd2+ from contaminated water by nano-sized aragonite mollusk shell and the competition of coexisting metal ions. J. Colloid Interface Sci. 367 (2012) 378–382.

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