99
Views
12
CrossRef citations to date
0
Altmetric
Articles

Fe(III) removal by activated carbon produced from Egyptian rice straw by chemical activation

, &
Pages 3159-3168 | Received 24 Dec 2012, Accepted 09 Apr 2013, Published online: 07 Aug 2013

References

  • J.S. Mattson, H.B. Mark, Activated Carbon. Dekker, New York, NY, 1971.
  • F.S. Baker, C.E. Miller, A.J. Repic, E.D. Tolles, Activated carbon. Kirk-Othmer Encycolpedia of Chemical Technology 4 (1992) 1015–1037.
  • A.A. El-Hendawy, Influence of HNO3 oxidation on the structured and adsorptive properties of corncob activated carbon. Carbon 41 (2003) 713–722.
  • D. Cuhadaroglu, O.A. Uygun, Production and characterization of activated carbon from a bituminous coal by chemical activation. Afr. J. Biotechnnol. 7 (20) (2008) 3703–3710.
  • L. Khezamiet, A. Chetouani, B. Taouk, R. Capart, Production and characterization of activated carbon from wood components in powder: Cellulose, lignin, xylan. Powder Technol. 157 (2005) 48–56.
  • C. Srinivasakannan, M.Z. Abu Bakar, Production of activated carbon from rubber wood sawdust. Biomass Bioenergy 27 (1) (2004) 89–96.
  • N. Pasadakis, G. Romanos, V. Perdikatsis, A.E. Foscolos, The production of activated carbons using Greek lignites by physical and chemical activation methods: A Comparative Study. Energy Sources 33 (8) (2011) 713–723.
  • M.Z. Hussein, R.S.H. Tarmizi, Z. Zainal, R. Ibrahim, M. Badri, Preparation and characterization of activated carbons from oil palm coconut shells. Carbon 34 (1996) 1447–1449.
  • M.K. Gratuito, B.T. Panyathanmaporn, R.A. Chumnanklang, N. Sirinuntawittaya, A. Dutta, Production of activated carbon from coconut shell: Optimization using response surface methodology. Bioresour. Technol. 99 (2008) 4887–4895.
  • Z. Al-Qodah, R. Shawabkah, Production and characterization of granular activated carbon from activated sludge. Brazil. J. Chem. Eng. 26 (2009) 127–136.
  • J.W. Kim, M.H. Sohn, D.S. Kim, S.M. Sohn, Y.S. Kwon, Production of granular activated carbon from waste walnut shell and its adsorption characteristics for Cu(2+) ion. J Hazard Mater. 85 (3) (2001) 301–315.
  • N. Buasri, C. Chaiyut, C. Nakweang, Preparing Activated Carbon from Palm Shell for Biodiesel Fuel Production. Chiang Mai J. Sci. 38 (4) (2011) 572–578.
  • R.R. Bansode, J.N. Losso, W.E. Marshall, R.M. Rao, R.J. Portier, Pecan shell-based granular activated carbon for treatment of chemical oxygen demand (COD) in municipal wastewater. Bioresour. Technol. 94 (2004) 129–135.
  • S.A. Dastgheib, D.A. Rockstraw, Pecan shell activated carbon: Synthesis, characterization, and application for the removal of copper from aqueous solution. Carbon 39 (2001) 1849–1855.
  • Y.A.S. Alhamed, Activated Carbon from Dates’ Stone by ZnCl2 activation. JKAU: Eng. Sci. 17 (2006) 75–100.
  • Bhatti, K. Qureshi, R.A. Kazi, A. Ansari, Preparation and characterisation of chemically activated almond shells by optimization of adsorption parameters for removal of chromium vi from aqueous solutions. World Academy of Sci. Eng. Technol. 34 (2007) 199–204.
  • E.F. Jaguaribe, L.L. Medeiros, M.C.S. Barreto, L.P. Araujo, The performance of activated carbons from sugarcane bagasse, babassu, and coconut shells in removing residual chlorine. Brazil. J. Chem. Eng. 22 (2005) 41–47.
  • M. El Zayat, E. Smith, Removal of heavy metals by using activated carbon produced from cotton stalks. Can. J. Environ. Construction Civil Eng. 1 (4) (2010) 71–79.
  • P. Chiravoot, A. Duangdao, A. Duangduen, S. Viboon, Physicochemical properties of carbons prepared from physic nut waste by phosphoric acid and potassium hydroxide activations. Mater. Sci. Forum 561–565 (2007) 1719–1722.
  • P. Gao, Z.H. Liu, G. Xue, B. Han, M.H. Zhou, Preparation and characterization of activated carbon produced from rice straw by (NH4)2HPO4 activation. Bioresour. Technol. 102 (3) (2011) 3645–3648.
  • N. Yahaya, E.M. Pakir, M.F. Latiff, M.I. Abustan, M.A. Ahmad, Effect of preparation conditions of activated carbon prepared from rice husk by ZnCl2 activation for removal of Cu (II) from aqueous solution. Int. J. Eng. Technol. IJET-IJENS 10 (6) (2010) 27–31.
  • N. Yeddou, A. Bensmaili, Equilibrium and kinetic modeling of iron adsorption by egg shells in a batch system: effect of temperature. Desalination 206 (2007) 127–134.
  • G. Karthikeyan, A.N. Muthulakshmi, K. Anbalagan, Adsorption studies of iron (III) on chitin. J. Chem. Sci. 117 (2005) 663–672.
  • Z.A. Al-Anber, M.A.S. Al-Anber, Thermodynamics and kinetic studies of iron(iii) adsorption by Olive Cake in a batch system. J. Mex. Chem. Soc. 52 (2) (2008) 108–115.
  • K.N. Ghimire, K. Inoue, K. Ohto, Heavy metal removal from contaminated scallop waste for feed and fertilizer application. Bioresour. Technol. 99 (2008) 2436–2441.
  • C. Aharoni, D.L. Sparks, Kinetics of soil chemical reactions—a theoretical treatment. in: D.L. Sparks, D.L. Suarez (Eds.) Rate of Soil Chemical Processes. Soil Science Society of America, Madison, WI, 1991, pp. 1–18.
  • C. Aharoni, M. Ungarish, Kinetics of activated chemisorption. Part 2. Theoretical models. J. Chem. Soc., Faraday Trans. 73 (1977) 456–464.
  • X.S. Wang, Y. Qin, Equilibrium sorption isotherms for of Cu2+ on rice bran. Process Biochem. 40 (2005) 677–680.
  • G. Akkaya, A. Ozer, Adsorption of acid red 274 (AR 274) on Dicranella varia: Determination of equilibrium and kinetic model parameters. Process Biochem. 40 (11) (2005) 3559–3568.
  • C.I. Pearce, J.R. Lioyd, J.T. Guthrie, The removal of color from textile wastewater using whole bacterial cells: A review. Dyes Pigm. 58 (2003) 179–196.
  • M.M. Dubinin, Modern state of the theory of volume filling of micropore adsorbents during adsorption of gases and steams on carbon adsorbents. Zhurnal Fizicheskoi Khimii [Russ. J. Phys. Chem. A] 39 (1965) 1305–1317.
  • M.M. Dubinin, The potential theory of adsorption of gases and vapors for adsorbents with energetically non-uniform surface. Chem. Rev. 60 (1960) 235–266.
  • L.V. Radushkevich, Potential theory of sorption and structure of carbons. Zhurnal Fizicheskoi Khimii [Russ. J. Phys. Chem. A] 23 (1949) 1410–1420.
  • S. Lagergren, Zur theorie der sogenannten adsorption geloster stoffe. Svenska Vetenskapsakademiens. Handlingar 24 (4) (1898) 1–39.
  • Y.S. Ho, G. McKay, D.A.J. Wase, C.F. Foster, Study of the sorption of di-valent metal ions on to peat. Adsorpt. Sci. Technol. 18 (2000) 639–650.
  • S.H. Chien, W.R. Clayton, Application of Elovich equation to the kinetics of phosphate release and sorption on soils. Soil Sci. Soc. Am. J. 44 (1980) 265–268.
  • W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon from solution. J. Sanity Eng. Div. Am. Soc. Civil Eng. 89 (1963) 31–59.
  • K. Srinivasan, N. Balasubramanian, T.V. Ramakrishan, Studies on chromium removal by rice husk carbon. Indian J. Environ. Health 30 (1988) 376–387.

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.