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Investigation of Selected Heavy Metals Level in Top Soils Around Ajaokuta Steel Company, North Central Nigeria
Corresponding Author(s) : Olatunde S. Olatunji
Asian Journal of Chemistry,
Vol. 26 No. 10 (2014): Vol 26 Issue 10
Abstract
The concentration of selected heavy metals in top soils around Ajaokuta Steel Company was investigated in order to evaluate the environmental status level of the metals. Top soil samples were randomly collected around Ajaokuta Steel Company between 2003 and 2005. The samples were sorted; air dried, pulverized to < 2 mm grain size and digested using standard methods. The soil digest solutions were quantified for Cd, Cr, Mn, Ni, Cu, Zn and Pb using flame atomic absorption spectrometry. The mean concentrations (mg/kg) of the heavy metals were; Zn, 56.30 ± 11.94; Cu, 42.90 ± 5.84; Pb, 15.62 ± 3.06; Cr, 14.33 ± 2.38; Ni, 11.48 ± 2.13; Mn, 6.53 ± 1.68; and Cd, 0.13 ± 0.16, with soil concentration distribution in the order Zn > Cu > Pb > Cr > Ni > Mn > Cd. The soils were slightly acidic with mean pH 6.54 ± 0.67 and mean organic carbon levels of 2.03 ± 0.72 %. Significant correlation (p < 0.05) exists between the concentration of heavy metals in soils and organic carbon levels, with correlation coefficient for Mn; g = 0.51 and Cr; g = 0.63. The transport/availability of metals in soils is strongly influenced by pH and organic carbon levels, and this forms the basis of their fixation with plant growth nutrients. The retention of metals in soil organic matter proceeds by complexation. The stability of the metal-organic carbon complexes depends on the organic carbon type, nature of the complex formed and the degree of stearic effect.
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References
B. Guibert, J. Laganier and M. Volle. Retrieved January 30, 2013 from http://ec.europa.eu/eurostat/ramon/other_documents/index.cfm?TargetUrl (1971).
A.J. Field, J. Macroecon., 31, 173 (2009); doi:10.1016/j.jmacro.2007.08.008.
I.H. Gonzalez and J. Kaminski, Gospodarka Surowcami Mineralnymi, 27, 1 (2011).
GSA, Chapter 4: Mining and processing operations, Report of the Government of South Australia (2011).
R.I.L. Guthrie and J.J. Jonas, ASM Handbook, ASM International, vol. 1, p. 107 (1990).
K.M. Greaney, An Assessment of Heavy Metal Contamination in the Marine Sediments of Las Perlas Archipelago Gulf of Panama, A Master of Science Thesis submitted to the School of Life Sciences, Heriot-Watt University, Edinburgh (2005).
T.E. Norgate and W.J. Rankin, In Proceedings, Minprex 2000, International Conference on Minerals Processing and Extractive Metallurgy, pp. 133-138 (2000).
F.E.P.A. Nigeria, Federal Ministry of Environment of Nigeria Environmental Impact Assessment sectorial guidelines (Manufacturing Industries). 138pp (1995).
F. Sallaku and S. ShaIIari, Méditerranéennes: Série A. Séminaires Médierranéens; 57, 55 (2003).
H.T. Shacklette and J.G. Boerngen, Retrieved March 31, 2013 http://pubs.usgs.gov/pp/1270/pdf/PP1270_508.pdf (1984).
C.R. Evanko and D.A. Dzombak, Retrieved November 26, 2012 from http://www.gwrtac.org (1997).
R. Lauwerys, H. Roels, P. Genet, G. Toussaint, A. Bouckaert and S. de Cooman, Am. J. Ind. Med., 7, 171 (1985); doi:10.1002/ajim.4700070208.
H.R. Casdorph, Toxic metal Syndrome, Avery Publishing Group, London (1995).
A. Bignert and E. Nyberg, Lead Concentrations in Fish Liver, Swedish Museum or Natural History, p. 35 (2002).
ATSDR, Agency for Toxic Substances and Disease Registry, U. S. Public Health services, Toxicology Profile for Mercury: March and April 1999 Media Advisory on elemental mercury vapour/inhalation/ chronic & MRL: methyl mercury/oral/acute; Retrieved April 21, 2006 from http://atsdr.cdc.gov:8080/97list.html (1999).
P.C. Onianwa, Soil Sed. Contam., 10, 577 (2001); doi:10.1080/20015891109446.
E.O. McLean, Methods of Soil Analysis, Part 2, Agronomy. American Society of Agronomy Inc., Madison, Winconsin, USA, vol. 17, pp. 199-224 (1982).
A. Walkley and I.A. Black, Soil Sci., 63, 251 (1947); doi:10.1097/00010694-194704000-00001.
P.M. Taylor, L. Stuart and F. Dustine, Heavy metal contamination of Mt. Isa–implication for the ecosystem (Isoconferences). Retrieved December, 23, 2005 from www. isoconferences.org.au (2002).
K. Fijalkowski, M. Kacprzak, A. Grobelak and A. Placek, Inżynieria i Ochrona Środowiska, 15, 81 (2012).
O.S. Olatunji, O.S. Fatoki, B.J. Ximba and B.O. Opeolu, World Environ., 3, 37 (2013).
N.E. Korte, J. Skopp, W.H. Fuller, E.E. Niebla and B.A. Alesli, Soil Sci., 122, 350 (1976).
G.F. Lee, Role of hydrous metal oxides in the transport of heavy metals in the environment session IV transport mechanism 2. Institute for Environmental Sciences, University of Texas, Dallas. Seminar paper 18 p. (1975).
M.E. Essington, Soil and Water Chemistry, CRC Press, Boca Raton, FL (2004).
W.L. Lindsay, Chemical Equilibra in Soils, John Wiley & Sons, New York (1979).
A. Lenart and K. Wolny-Koładka, Bull. Environ. Contam. Toxicol., 90, 85 (2013); doi:10.1007/s00128-012-0869-3.
O.E. Kile, R.L. Wershaw and C.T. Chiou, Environ. Sci. Technol., 33, 2053 (1999); doi:10.1021/es980816o.
O.J. Ogunsola, A.F. Oluwole, I.B. Obioh, O.I. Asubiojo, F.A. Akeredolu, O.A. Akanle and N.M. Spyrou, Nucl. Instrum. Methods Phys. Res. B, 79, 404 (1993); doi:10.1016/0168-583X(93)95373-D.
EEC, Agricultural Soil and the Environment (1993); Retrieved July 26, 2004 from www.ec.europa.eu/agriculture/publi/fact/envir/2003_en pdf.
E. Remon, J.-L. Bouchardon, B. Cornier, B. Guy, J.-C. Leclerc and O. Faure, Environ. Pollut., 137, 316 (2005); doi:10.1016/j.envpol.2005.01.012.
B.J. Alloway, Heavy Metals in Soil, Blackie Academic & Professional London (1995).
A. Kabata-Pendias and H. Pendias, Trace Element in Soils and Plants, edn 3, p. 492 (2000).
J.L. Gardea-Torresday, L. Polette, K.J. Tiemann, J. Bibb and J.H. Gonzalez, Plant Cell Physiol., 97, 632 (2000).
K. Bunzl, M. Trautmannsheimer and P. Schramel, J. Environ. Qual., 28, 1168 (1999); doi:10.2134/jeq1999.00472425002800040017x.
A. Boularbah, C. Schwartz, G. Bitton, W. Aboudrar, A. Ouhammou and J.L. Morel, Chemosphere, 63, 811 (2006); doi:10.1016/j.chemosphere.2005.07.076.
N.E. Okoronkwo, S.A. Odemelam and O.A. Ano, Afr. J. Biotechnol., 5, 1241 (2006).
T.J.K. Ideriah, V.O.T. Omuaru and U.P. Adiukwu, Afr. J. Ecol., 44, 388 (2006); doi:10.1111/j.1365-2028.2006.00632.x.
A. Kabata-Pendias and H. Pendias, Trace Element in Soils and Plants, CRC Press, Boca Raton, FL, p. 425 (1984).