Adsorption of Cd(II) and Pb(II) Ions from Aqueous Solution by Activated Carbon

Authors

  • Hayder Mohammed Abdul-Hameed Department of Environmental Engineering/ College of Engineering/ University of Baghdad

Abstract

Heavy metal consider as major environmental pollutants. Many of industrial wastewater effluents contain a wide range of these heavy metals. The adsorption of Cd2+ and Pb2+ metal ions from aqueous solution by activated carbon was studied. The results showed that maximum adsorption capacity occurred at 486.9×10-3 mg/kg for Pb2+ ion and 548.8×10-3 mg/kg for Cd2+ ion. The adsorption in a mixture of the metal ions had a balancing effect on the adsorption capacity of the activated carbon. The adsorption capacity of each metal ion was affected by the presence of other metal ions rather than its presence individually. The study showed the presence of other heavy metals attribute to the reduction in the activated carbon capacity, and the adsorption process was found to obeys the Freundlich isotherm for both ions.

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References

[1] Badmus I. M., Anyate, K. P., "Removal Technique of Pb from Wastewater", (2007), WHO publications.
[2] Benjamin J., "Adsorption of Chromium from Electroplating Industry", (1999), Sci. Journal: 1031-1034.
[3] Diarati I. M., Taliki H. M, "Reduction of Cd Ion Concentration from Electroplating Effluent by Activated Carbon", (2003), Iranian Journal SCI. Vol.3.
[4] Digiano J. B., "Mechanism of Mass Transport in Porous Media", (1996), Chem. J., Vol. 8, P:320-331.
[5] Gavrilescu M., "Removal of Heavy Metals from the Environment by Sorption", (2004), Engineering in Life Sci. 4(3): 219-202.
[6] Ligwa J. C., Addiat A. A., "Bio-remediation of Co(II), Fe(II) ions from Wastewater Using Modified and Unmodified Maize", (2005), Sorption Kinetic and Inter-particulate Diffusivity, J. Biotech.
[7] Ligwa J. C., Addiat A. A., "Maize and Husk as Adsorbent for Removal of Cd, Pb and Zn from Wastewater", (2003), the Physical Sci 2:210-215.
[8] Lucas, A. C., Cocero, R. R., "Bio-Sorption of Heavy Metals Using Natural Materials", (2000), Aggri. SCI Journal, p:1010-1014.
[9] Motoyuki, S., "Adsorption Engineering", (1990), Elesevier Sci. Puplishers, PP:5-61.
[10] Prasert M. N., Parasaut J. E., "Kinetic Study for Adsorption of Cu, Hg from Sodium Hydroxide Factory", (2006), Environmental Journal, Vol.11, P:301-308.
[11] Qader M. A., Akhtars K. N., "Kinetic Analysis for Pb, Cd Adsorption", (2005), Indian Journal of Environmental, Vol. 9, P:951-453.
[12] Robert B. M., Craft J. Z., "Modeling of Surface Phenomena Processes", Turkish Journal of Chemistry, Vol. 7, (2000), P:215-221.
[13] Volesky B., Holan Z., "Bio-sorption of Heavy Metal Biotechnical Prog", (1995), 11:235-250.
[14] Weber J. C., Watter H. C., "Adsorption Isotherms Model", (1974), Chemical, J. P.: 211-214.

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Published

2009-12-01

How to Cite

Adsorption of Cd(II) and Pb(II) Ions from Aqueous Solution by Activated Carbon. (2009). Al-Khwarizmi Engineering Journal, 5(4), 13-17. https://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/578

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