Adsorption Disciplinarian of Metal Ions on Collagen Fiber Immobilized Bayberry Tannin

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Abstract:

Adsorption behavior disciplinarian of the immobilized tannins to metal ions was studied. Experiments showed that adsorption capacities of metal ions lied in ns grouse in the periodic table of elements were relatively low. For the metal ions lied in np grouse in the periodic table of elements, their adsorption capacity increased with the increasing in the radius of metal ions. Adsorption capacities of metal ions having low values in the first transition series in the periodic table of elements, such as Mn(II), Fe(II), Fe(III), Co(II) and Ni(II), were more lower than that of the metal ions having high values, such as Cr(VI), Mn(VII) and V(V). For the metal ions in the second, the third transition series and the actinide series, adsorption capacities were relatively higher than that of metal ions in lanthanide series.

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Periodical:

Advanced Materials Research (Volumes 391-392)

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1031-1035

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December 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] B. Shi and Y. Di: Plant polypgenols (Science Press, Beijing 2000).

Google Scholar

[2] A. Nakajima and Y. Baba: Mechanism of hexavalent chromium adsorption by persimmon tannin gel. Water Res. Vol. 38 (2004), p.2859.

DOI: 10.1016/j.watres.2004.04.005

Google Scholar

[3] X.P. Liao, Z.B. Lu, X. Du and B. Shi: Collagen fiber immobilized myrica rubra tannin and its adsorption of UO22+. Environ Sci Technol. Vol. 38(2004), p.324.

DOI: 10.1021/es034369a

Google Scholar

[4] R. Wang, X.P. Liao, S.L. Zhao and B. Shi: Adsorption bismuth(III) by bayberry tannin immobilized on collagen fiber. J. Chem. Technol. Biotechnol. Vol. 81(2006), p.1301.

DOI: 10.1002/jctb.1571

Google Scholar

[5] W.G. Hu and W.Y. Zhang: Quantify chemistry analytical experimentation (Higher Education Press, Beijing 2004).

Google Scholar

[6] X.P. Liao, Z.B. Lu, M.N. Zhang and B. Shi: Adsorption of Cu(II) from aqueous solution by tannins immobilized on collagen. J. Chem. Technol. Biotechnol. Vol. 79(2004), p.335.

DOI: 10.1002/jctb.974

Google Scholar

[7] X.P. Liao, M. N Zhang and B. Shi: Collagen-fiber-immobilized tannins and their adsorption of Au(III). Ind. Eng. Chem. Res. Vol. 43(2004), p.2222.

DOI: 10.1021/ie0340894

Google Scholar

[8] X.P. Liao, L. Li and B. Shi: Adsorption recovery of thorium(IV) by myrica rubra tannin and larch tannin immobilized onto collagen fibres. J. Radio. Nucl. Chem. Vol. 260(2004), p.619.

DOI: 10.1023/b:jrnc.0000028222.85988.40

Google Scholar

[9] J.E. Huheey: Inorgaganic Chemistry: Principles of Structure and Reactivity. Harper international Publishers, Cambridge, Philadelphia, San Francisco, Condon, Mexico City, Sao Paulo, Sydney(1983).

Google Scholar

[10] A.B. Dai: Coordination Chemistry, Volume 12 of Inorganic Chemistry Serie, Science Press, Beijing (1998).

Google Scholar

[11] T. Moeller: Inorganic Chemistry (John Wiley & Sons Publishers, London 1980).

Google Scholar