291
Views
0
CrossRef citations to date
0
Altmetric
Shortlisted Papers

Equilibrium and Kinetics of Lead Adsorption onto Tyre Char

, &
Pages 20-28 | Received 13 Apr 2012, Accepted 16 Aug 2012, Published online: 09 Apr 2013

References

  • Alexandre-Franco, M., Fernandez-Gonzalez, C., MacIas-Garcia, A., Gomez-Serrano, V., Uptake of lead by carbonaceous adsorbents developed from tire rubber. Adsorption. Volume 14, No 4–5, pp591–600. (2008).
  • Amarasinghe, B., Williams, R.A., Tea waste as a low cost adsorbent for the removal of Cu and Pb from wastewater. Chemical Engineering Journal. Volume 132, No 1–3, pp299–309. (2007).
  • Anon, Reuse of Scrap Tire Promoted by the Government. China Chemical Reporter. No 23. (2005).
  • Babel, S., Kurniawan, T.A., Low-cost adsorbents for heavy metals uptake from contaminated water: A review. Journal of Hazardous Materials. Volume 97, No 1–3, pp219–243. (2003).
  • Boehm, H.P., Some aspects of the surface chemistry of carbon blacks and other carbons. Carbon. Volume 32, No 5, pp759–769. (1994).
  • Broom, G.P., Squires, R.C., Simpson, M.P.J., Martin, I., The treatment of heavy metal effluents by crossflow microfiltration. Journal of Membrane Science. Volume 87, No 1–2, pp219–230. (1994).
  • Brunauer, S., Emmett, P.H., Teller, E., Adsorption of gases in multimolecular layers. Journal of the American Chemical Society. Volume 60, No 2, pp309–319. (1938).
  • CalRecovery, Inc., Environmental Factors of Waste Tire Pyrolysis, Gasification, and Liquefaction. (1995).
  • Corapcioglu, M.O., Huang, C.P., The surface-acidity and characterisation of some commercial activated carbons. Carbon. Volume 25, No 4, pp569–578. (1987).
  • Corapcioglu, M.O., Huang, C.P., The adsorption of heavy metals onto hydrous activated carbon. Water Research. Volume 21, No 9, pp1031–1044. (1987).
  • Cunliffe, A.M., Williams, P.T., Composition of oils derived from the batch pyrolysis of tyres. Journal of Analytical and Applied Pyrolysis. Volume 44, No 2, pp131–152. (1998).
  • Feng, Q., Lin, Q., Gong, F., Sugita, S., Shoya, M., Adsorption of lead and mercury by rice husk ash. Journal of Colloid and Interface Science. Volume 278, No 1, pp1–8. (2004).
  • Fiol, N., Villaescusa, I., Martinez, M., Miralles, N., Poch, J., Serarols, J., Sorption of Pb(II), Ni(II), Cu(II) and Cd(II) from aqueous solution by olive stone waste. Separation and Purification Technology. Volume 50, No 1, pp132–140. (2006).
  • Freundlich, H.M.F., Concerning adsorption in solutions. Zeitschrift Fur Physikalische Chemie Stochiometrie und Verwandtschaftslehre. Volume 57, No 4, pp385–471. (1906).
  • Gundogdu, A., Ozdes, D., Duran, C., Bulut, V.N., Soylak, M., Senturk, H.B., Biosorption of Pb(II) ions from aqueous solution by pine bark (Pinus brutia Ten.). Chemical Engineering Journal. Volume 153, No 1–3, pp62–69. (2009).
  • Haghseresht, F., Nouri, S., Finnerty, J.J., Lu, G.Q., Effects of surface chemistry on aromatic compound adsorption from dilute aqueous solutions by activated carbon. Journal of Physical Chemistry B. Volume 106, No 42, pp10935–10943. (2002).
  • Ho, Y.S., McKay, G., A kinetic study of dye sorption by biosorbent waste product pith. Resources, Conservation and Recycling. Volume 25, No 3–4, pp171–193. (1999).
  • Ho, Y.S., McKay, G., Pseudo-second order model for sorption processes. Process Biochemistry. Volume 34, No 5, pp451–465. (1999).
  • Ho, Y.S., McKay, G., The kinetics of sorption of divalent metal ions onto sphagnum moss peat. Water Research. Volume 34, No 3, pp735–742. (2000).
  • Ho, Y.S., McKay, G., Application of kinetic models to the sorption of copper (II) on to peat. Adsorption Science and Technology. Volume 20, No 8, pp797–815. (2002).
  • Ho, Y.S., Porter, J.F., McKay, G., Equilibrium isotherm studies for the sorption of divalent metal ions onto peat: Copper, nickel and lead single component systems. Water, Air, and Soil Pollution. Volume 141, No 1–4, pp1–33. (2002).
  • Ko, D.C.K., Mui, E.L.K., Lau, K.S.T., McKay, G., Production of activated carbons from waste tire - process design and economical analysis. Waste Management. Volume 24, No 9, pp875–888. (2004).
  • Kratochvil, D., Volesky, B., Advances in the biosorption of heavy metals. Trends in Biotechnology. Volume 16, No 7, pp291–300. (1998).
  • Kwok, C.M., Removal of arsenic from water using chitosan and nanochitosan. Chemical and Biomolecular Engineering. PhD Thesis. Hong Kong University of Science and Technology. Hong Kong (2009).
  • Lalhruaitluanga, H., Jayaram, K., Prasad, M.N.V., Kumar, K.K., Lead(II) adsorption from aqueous solutions by raw and activated charcoals of Melocanna baccifera Roxburgh (bamboo)-A comparative study. Journal of Hazardous Materials. Volume 175, No 1–3, pp311–318. (2010).
  • Lam, K.L., Lee, C.W., Hui, C.W., Multi-stage waste tyre pyrolysis: An optimization approach. Chemical Engineering Transactions. Volume 21, pp853–858. (2010).
  • Langmuir, I., The constitution and fundamental properties of solids and liquids. Part I. Solids. The Journal of the American Chemical Society. Volume 38, No 2, pp2221–2295. (1916).
  • Lin, C., Huang, C.L., Shern, C.C., Recycling waste tire powder for the recovery of oil spills. Resources, Conservation and Recycling. Volume 52, No 10, pp1162–1166. (2008).
  • Lippens, B.C., de Boer, J.H., Studies on pore systems in catalysts. V. The t method. Journal of Catalysis. Volume 4, No 3, pp319–323. (1965).
  • Macias-Garcia, A., Valenzuela-Calahorro, C., Espinosa-Mansilla, A., Bernalte-Garcia, A., Gomez-Serrano, V., Adsorption of Pb2+in aqueous solution by SO2-treated activated carbon. Carbon. Volume 42, No 8–9, pp1755–1764. (2004).
  • Malik, D.J., Strelko Jr, V., Streat, M., Puziy, A.M., Characterisation of novel modified active carbons and marine algal biomass for the selective adsorption of lead. Water Research. Volume 36, No 6, pp1527–1538. (2002).
  • Matlock, M.M., Howerton, B.S., Atwood, D.A., Chemical precipitation of lead from lead battery recycling plant wastewater. Industrial and Engineering Chemistry Research. Volume 41, No 6, pp1579–1582. (2002).
  • Menendez, J.A., Illan-Gomez, M.J., Leon, C.A.L., Radovic, L.R., On the difference between the isoelectric point and the point of zero charge of carbons. Carbon. Volume 33, No 11, pp1655–1657. (1995).
  • Mohan, D., Singh, K.P., Single- and multi-component adsorption of cadmium and zinc using activated carbon derived from bagasse - An agricultural waste. Water Research. Volume 36, No 9, pp2304–2318. (2002).
  • Mukherjee, S., Borthakur, P.C., Effect of leaching high sulphur subbituminous coal by potassium hydroxide and acid on removal of mineral matter and sulphur. Fuel. Volume 82, No 7, pp783–788. (2003).
  • Nadeem, M., Mahmood, A., Shahid, S.A., Shah, S.S., Khalid, A.M., McKay, G., Sorption of lead from aqueous solution by chemically modified carbon adsorbents. Journal of Hazardous Materials. Volume 138, No 3, pp604–613. (2006).
  • Ng, J.C.Y., Cheung, W.H., McKay, G., Equilibrium studies for the sorption of lead from effluents using chitosan. Chemosphere. Volume 52, No 6, pp1021–1030. (2003).
  • Ofomaja, A.E., Unuabonah, E.I., Oladoja, N.A., Competitive modelling for the biosorptive removal of copper and lead ions from aqueous solution by Mansonia wood sawdust. Bioresource Technology. Volume 101, No 11, pp3844–3852. (2010).
  • Reddad, Z., Gerente, C., Andres, Y., Le Cloirec, P., Adsorption of several metal ions onto a low-cost biosorbent: Kinetic and equilibrium studies. Environmental Science and Technology. Volume 36, No 9, pp2067–2073. (2002).
  • Redlich, O., Peterson, D.L., A useful adsorption isotherm. Journal of Physical Chemistry. Volume 63, No 6, pp1024. (1959).
  • Schulthess, C.P., Sparks, D.L., Backtitration technique for proton isotherm modelling of oxide surfaces. Soil Science Society of America Journal. Volume 50, No 6, pp1406–1411. (1986).
  • Sips, R., On the structure of a catalyst surface. The Journal of Chemical Physics. Volume 16, No 5, pp490–495. (1948).
  • Song, X., Liu, H., Cheng, L., Qu, Y., Surface modification of coconut-based activated carbon by liquid-phase oxidation and its effects on lead ion adsorption. Desalination. Volume 255, No 1–3, pp78–83. (2010).
  • Srivastava, V.C., Mall, I.D., Mishra, I.M., Characterisation of mesoporous rice husk ash (RHA) and adsorption kinetics of metal ions from aqueous solution onto RHA. Journal of Hazardous Materials. Volume 134, No 1–3, pp257–267. (2006).
  • Unlu, N., Ersoz, M., Adsorption characteristics of heavy metal ions onto a low cost biopolymeric sorbent from aqueous solutions. Journal of Hazardous Materials. Volume 136, No 2, pp272–280. (2006).
  • US Environmental Protection Agency, National Primary Drinking Water Regulation. (2009).
  • Warith, M.A., Rao, S.M., Predicting the compressibility behaviour of tire shred samples for landfill applications. Waste Management. Volume 26, No 3, pp268–276. (2006).
  • Zaini, M.A.A., Okayama, R., Machida, M., Adsorption of aqueous metal ions on cattle-manure-compost based activated carbons. Journal of Hazardous Materials. Volume 170, No 2–3, pp1119–1124. (2009).
  • Zuorro, A., Lavecchia, R., Adsorption of Pb(II) on spent leaves of green and black tea. American Journal of Applied Sciences. Volume 7, No 2, pp153–159. (2010).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.