In this study, inductive coupled plasma-optical emission spectroscopy (ICP-OES) is employed for the evaluation of soil pollution for selected metals in the Vanderbijlpark area of South Africa. Soil samples investigated were collected from five different sites in the city based on their proximity to the industrial areas of Vanderbijlpark. Soil samples were collected from close to traffic robots, farms, township schools, Iemas garage and central East 5 (CE5) suburbs. The results obtained show metal levels at the robot decrease in the order Pb > Zn > V > Bi > Ni > Li > As > Sn > Co > Cu > Mo > Sb > Hg > Se; at the farm they decrease in the order Pb > Zn > Bi > Li > Sn > As > V > Cu > Mo > Sb > Ni > Co > Cd > Se > Hg; in the township school they decrease in the order Pb > Zn > Cu > Li > V > Sn > As > Ni > Bi > Mo > Sb > Co > Cd > Se > Hg; at the Iemas garage the decreasing order is Pb > Zn > V > Li > Sn > As > Bi > Cu > Ni > Mo > Co > Cd > Se > Hg > Sb and in the CE5 suburb the decreasing order is Pb > Zn > V > Li > As > Cu > Sn > Ni> Mo > Co > Bi > Cd > Sb > Se > Hg. In all the sample points, the levels of lead (Pb) was found to be high, particularly at the farm and the township school area. However, the concentrations of all other metals at all the sampling points were within the US-EPA maximum allowable limits.
Published in | International Journal of Environmental Monitoring and Analysis (Volume 3, Issue 2) |
DOI | 10.11648/j.ijema.20150302.13 |
Page(s) | 44-49 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2015. Published by Science Publishing Group |
Inductive Coupled Plasma, Optical Emission Spectroscopy, Soil, Heavy Metals
[1] | E. M. Fagbote and E. O Olanipekun, American-Eurasian Journal of Scientific Research. 5 (4), 241 (2010). |
[2] | A. Ene, A. Boşneagă and L. Georgescu, Roman Journal Physics 55 (7-8), 815 (2010). |
[3] | P. K. Bora, S. Chetry, D. K. Sharma and P. M. Saika, Journal of Chemistry, DOI: 10.1155/609203, 1-7 (2013). |
[4] | M. A. Ali, M. M. Rahman and M. N. Amin, Journal of Civil Engineering, the Institute of Engineers, Bangladesh 25 (1), 82 (1997). |
[5] | O. T. Oyelola and A. I. Baatunde, International Journal of Pure and Applied Sciences 2(1): 17 (2008). |
[6] | E. O. Fagbote and E. O. Olanipekun, American-Eurasian Journal of Scientific Research 5 (4), 241 (2010). |
[7] | I. Suciu, C. Cosma, M. Todica, S. D. Bolboaca and L. Jantschi, Journal of Molecular Sciences 9, 434 (2008). |
[8] | K. G. Pujar, S.C. Hiremath, A. S. Pujar, U. S. Pujeri and M. S. Yadawe, Karnataka 2 (1), 76 (2012). |
[9] | M. I. Yahaya, G. C. Ezeh, Y. F. Musa and S. Y. Mohammad, African Journal of Pure and Applied Chemistry 4 (3), 22 (2010). |
[10] | W. De Vries, P. F. A. M. Romkens and G. Schutze, Reviews of Environmental Contamination and Toxicology 191, 91(2007). |
[11] | H. Galas-Gorcher, Food add. Cont. 8, 798 (1991). |
[12] | L. Yi, Y. Hong, D. Wang and Y. Zhu, Geochemical Journal 41, 235 (2007). |
[13] | Y. Ge, D. Macdonald, S. Sauvoé and W. Hendershot, Environ. Model. Softw. 20, 353 (2005). |
[14] | M. Nassef, R. Hannigan, K. A. El Sayed and M. S. Tahawy, Determination of some heavy metals in the environment of Sadat Industrial City. Proceedings of the 2nd Environmental Physics Conference, 18-22 February (2006). |
[15] | US Environmental Protection Agency Standards for the Use or Disposal of Sewage Sludge, Federal Rigister, 58, 210 (1993). |
[16] | H. M. Kingston and L. B. Jassie, Safety Guidelines for Microwave Systems on the Analytical Laboratory, in H. M. Kingston and L. B. Jassie, Introduction to Microwave and Decomposition, Theory and Practice, Washington, ACS (1998). |
[17] | C. Voica, A. Dehelean, A. Iordache and I. Geana, Romanian Reports in Physics 64 (1), 221 (2012). |
[18] | R. Shirdam, Z. Modarres-Tehrani and F. Dastgoshadeh, Rasayan Journal of Chemistry 1 (4), 920 (2008). |
[19] | Z. Hussain and M. Islam, Journal of Scientific Research 40 (2), 47 (2010). |
[20] | V. Ettler, M. Mihaljevič, O. Šebek and T. Grygar, Anal. Chim. Acta 602, 131(2007). |
[21] | A. D. Hewitt and C. W. Reynolds, Atomic Spectroscopy 11, 187 (1990). |
[22] | http:// www.vaaltriangle.co.za. Visited 20 January (2013). |
[23] | C. Moor, T. Lymberopoulou and V. J. Dietrich, Mikrochimica Acta 136, 123 (2001). |
[24] | J. O. Oti Wilberforce, F. I. Nwabue and J. N. Afiukwa, Environment and Pollution 1 (2), 183 (2012). |
[25] | A. Qishlaqi and F. Moore, American-Eurasian Journal of Agriculture and Environmental Sciences 2 (5), 565 (2007). |
[26] | S. J. Moja, J. S. Mnisi, M. M. Nindi and J. O. Okonkwo, Journal of Environmental Sciences and Health, Part A: Toxic/Hazardous substances and Environmental Engineering 48 (1), 99 (2013). |
[27] | HR (Home Remedies). Nickel benefits, deficiency symptoms and food sources. http://www.best-home-remedies.com/minerals/nickel.htm. Visited 15 January (2013). |
[28] | M. Kalay and M. Canli, Turk J Zool. 24, 429 (2000). |
[29] | Y. Von Schirnding, A. Mathee, P. Robertson and M. Kibel, S. A. Med. J. 91 (10), 870 (2001). |
[30] | M. J. Friedrich, JAMA 283 (23), 3057 (2000). |
APA Style
F. M. Mtunzi, E. D. Dikio, S. J. Moja. (2015). Evaluation of Heavy Metal Pollution on Soil in Vaderbijlpark, South Africa. International Journal of Environmental Monitoring and Analysis, 3(2), 44-49. https://doi.org/10.11648/j.ijema.20150302.13
ACS Style
F. M. Mtunzi; E. D. Dikio; S. J. Moja. Evaluation of Heavy Metal Pollution on Soil in Vaderbijlpark, South Africa. Int. J. Environ. Monit. Anal. 2015, 3(2), 44-49. doi: 10.11648/j.ijema.20150302.13
AMA Style
F. M. Mtunzi, E. D. Dikio, S. J. Moja. Evaluation of Heavy Metal Pollution on Soil in Vaderbijlpark, South Africa. Int J Environ Monit Anal. 2015;3(2):44-49. doi: 10.11648/j.ijema.20150302.13
@article{10.11648/j.ijema.20150302.13, author = {F. M. Mtunzi and E. D. Dikio and S. J. Moja}, title = {Evaluation of Heavy Metal Pollution on Soil in Vaderbijlpark, South Africa}, journal = {International Journal of Environmental Monitoring and Analysis}, volume = {3}, number = {2}, pages = {44-49}, doi = {10.11648/j.ijema.20150302.13}, url = {https://doi.org/10.11648/j.ijema.20150302.13}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijema.20150302.13}, abstract = {In this study, inductive coupled plasma-optical emission spectroscopy (ICP-OES) is employed for the evaluation of soil pollution for selected metals in the Vanderbijlpark area of South Africa. Soil samples investigated were collected from five different sites in the city based on their proximity to the industrial areas of Vanderbijlpark. Soil samples were collected from close to traffic robots, farms, township schools, Iemas garage and central East 5 (CE5) suburbs. The results obtained show metal levels at the robot decrease in the order Pb > Zn > V > Bi > Ni > Li > As > Sn > Co > Cu > Mo > Sb > Hg > Se; at the farm they decrease in the order Pb > Zn > Bi > Li > Sn > As > V > Cu > Mo > Sb > Ni > Co > Cd > Se > Hg; in the township school they decrease in the order Pb > Zn > Cu > Li > V > Sn > As > Ni > Bi > Mo > Sb > Co > Cd > Se > Hg; at the Iemas garage the decreasing order is Pb > Zn > V > Li > Sn > As > Bi > Cu > Ni > Mo > Co > Cd > Se > Hg > Sb and in the CE5 suburb the decreasing order is Pb > Zn > V > Li > As > Cu > Sn > Ni> Mo > Co > Bi > Cd > Sb > Se > Hg. In all the sample points, the levels of lead (Pb) was found to be high, particularly at the farm and the township school area. However, the concentrations of all other metals at all the sampling points were within the US-EPA maximum allowable limits.}, year = {2015} }
TY - JOUR T1 - Evaluation of Heavy Metal Pollution on Soil in Vaderbijlpark, South Africa AU - F. M. Mtunzi AU - E. D. Dikio AU - S. J. Moja Y1 - 2015/03/02 PY - 2015 N1 - https://doi.org/10.11648/j.ijema.20150302.13 DO - 10.11648/j.ijema.20150302.13 T2 - International Journal of Environmental Monitoring and Analysis JF - International Journal of Environmental Monitoring and Analysis JO - International Journal of Environmental Monitoring and Analysis SP - 44 EP - 49 PB - Science Publishing Group SN - 2328-7667 UR - https://doi.org/10.11648/j.ijema.20150302.13 AB - In this study, inductive coupled plasma-optical emission spectroscopy (ICP-OES) is employed for the evaluation of soil pollution for selected metals in the Vanderbijlpark area of South Africa. Soil samples investigated were collected from five different sites in the city based on their proximity to the industrial areas of Vanderbijlpark. Soil samples were collected from close to traffic robots, farms, township schools, Iemas garage and central East 5 (CE5) suburbs. The results obtained show metal levels at the robot decrease in the order Pb > Zn > V > Bi > Ni > Li > As > Sn > Co > Cu > Mo > Sb > Hg > Se; at the farm they decrease in the order Pb > Zn > Bi > Li > Sn > As > V > Cu > Mo > Sb > Ni > Co > Cd > Se > Hg; in the township school they decrease in the order Pb > Zn > Cu > Li > V > Sn > As > Ni > Bi > Mo > Sb > Co > Cd > Se > Hg; at the Iemas garage the decreasing order is Pb > Zn > V > Li > Sn > As > Bi > Cu > Ni > Mo > Co > Cd > Se > Hg > Sb and in the CE5 suburb the decreasing order is Pb > Zn > V > Li > As > Cu > Sn > Ni> Mo > Co > Bi > Cd > Sb > Se > Hg. In all the sample points, the levels of lead (Pb) was found to be high, particularly at the farm and the township school area. However, the concentrations of all other metals at all the sampling points were within the US-EPA maximum allowable limits. VL - 3 IS - 2 ER -