Determination of Heavy Metal Concentration in Soils and Settled Dust of Automobile Workshops at Afikpo in Ebonyi State, Nigeria
DOI:
https://doi.org/10.54536/ajec.v5i3.8462Keywords:
Automobile, Contamination, Heavy Metals, Settled Dust, SoilAbstract
Soil and settled dust contaminated with heavy metals pose a major threat to human health. The objective of this study was to determine the concentration of heavy metals in soil and settled dust from automobile workshops in Afikpo, Ebonyi State, Nigeria. Sixteen soil samples were collected at depths (0-5, 5-10, 10-15, and 15-20 cm) from four randomly selected automobile workshops. Control samples were collected 4 kilometers away from any automotive repair activity. Four dust samples were also collected from parked vehicles at each of the four automobile workshops. Soil and settled dust samples were analyzed for heavy metal concentration, pH, and electrical conductivity. Soil pH differed significantly (P≤0.05), ranging from 4.29 to 5.78 in the workshops and 4.39 to 5.88 in the control. Electrical conductivity differed significantly (P≤0.05) among soil samples from different locations. EC ranged from 46.33 µS/cm to 312.33 µS/cm in the workshops, and 50.33 µS/cm to 80.67 µS/cm in the control. Arsenic and Mercury were not detected in soil and dust samples from both the workshops and the control. Cd concentration differed significantly (P≤0.05), ranging from 20.7 mg/kg to 708.5 mg/kg in the workshops. The concentration of lead (Pb) was higher in all the workshops than in the control, the highest concentration of Pb was 2769.6mg/kg at location D. The concentration of Cd in the dust samples ranged from 48.8 mg/kg to 439.9 mg/kg, while Pb ranged from 1200.8 mg/kg to 2500.6 mg/kg. Heavy metals detected in soil and dust samples from the workshops indicate contamination from anthropogenic waste.
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References
Adelekan, B. A. & Abegunde, K. D. (2011). Heavy metal contamination of soil and groundwater at automobile mechanic villages in Ibadan, Nigeria. International Journal of Physical Sciences, 6(5), 1045–1058.
Adelekan, B. A. & Alawode, A. O. (2011). Concentrations of Municipal refuse dumps and heavy metal concentrations in soil profile and groundwater, Ibadan, Nigeria. Journal of Applied Biological Sciences. 40,2727-2737.https://doi.org/10.1063/1.5110136
Adetunji, O. V. & Odetokun, A. I. (2011). Groundwater Contamination in Agbowo Community, Ibadan, Nigeria: Impact of Septic Tanks Distance to Wells. Malaysian Journal of Malaysian Journal of Microbiology, 7(3),159-166.http://dx.doi.org/10.21161/mjm.33011
Adewole, M.B. & Uchegbu, L.U. (2010). Properties and Plants Uptake within the vicinity of Selected Automobile Workshops in Ile-Ife Southwestern, Nigeria; Ethiopian Journal of Environmental Studies and Management 3(3), 31-35.10.4314/ejesm.v3i3.63962
Akpovata, O. V., Osakwe, S. A., Okoh, B. E. & Otuya, B. O. (2010). Physico-chemical Characteristics and Levels of Some Heavy Metals in Soils around Metal Scrap Dumps in some parts of Delta State, Nigeria. Journal of Applied Sciences and Environmental Management. 14(4), 57–60. http://doi.org/10.4314/jasem.v14i4.63258
Anegbe B, Eguavoen IW, Oviawe AP, Ogbeide O, & Osayande AD. (2016). Profile of heavy metals in soil samples obtained from five auto repair workshops in Benin City, Edo State, Nigeria. Journal of Biological and Environmental Sciences. http://dx.doi.org/10.22161/ijeab/3.2.35
Asamoah-Boateng, E. K. (2009). Physico-Chemical and Microbiological Quality of Surface Waters within the Newmont Ghana Gold Mining Concession Areas. MSc. Thesis Submitted to the Department of Theoretical and Applied Biology, Kwame Nkrumah University of Science and Technology. https://ir.knust.edu.gh/handle/123456789/303
Bai, J., Xiao, R., Cui, B., Zhang, K., Wang, Q., Liu, X., Gao, H., & Huang, L. (2011). Assessment of heavy metal pollution in wetland soils from the young and old reclaimed regions in the Pearl River Estuary, South China. Environmental Pollution, 159(3), 817–824. https://doi.org/10.1016/j.envpol.2010.11.004
Caporale, A. G., & Violante, A. (2016). Chemical processes affecting the mobility of heavy metals and metalloids in soil environments. Current Pollution Reports, 2(1), 15-27. https://doi.org/10.1007/s40726-015-0024-y
Dabkowska-Naskret, H. (2004). The mobility of heavy metals in urban soils used for food production in Poland. Land Contamination and Reclamation,12(3), 205212. DOI:10.2462/09670513.648
Davidson, P. W., Myers, G. J., & Weiss, B. (2004). Mercury exposure and child development outcomes. Pediatrics, 113(Supplement_3), 1023–1029. https://doi.org/10.1542/peds.113.S3.1023
Duru, S. C., Echiegu, E. A., Anyadike, C. C., Alaneme, G. U., & Okechukwu, M. E. (2024). Spatial variability of heavy metal concentrations in soil of auto-mechanic workshop clusters in Nsukka, Nigeria. Scientific Reports, 14(1), 9681. https://doi.org/10.1038/s41598-024-60044-3
Eludoyin, O. S., & Ogbe, O. M. (2017). Assessment of Heavy Metal Concentrations in Pawpaw (Carica papaya Linn.) around Automobile Workshops in Port Harcourt Metropolis, Rivers State, Nigeria. Journal of Health and Pollution, 7(14), 48–61. doi:10.5696/2156-9614-7.14.48
Fatima, G., Raza, A. M., Hadi, N., Nigam, N., & Mahdi, A. A. (2019). Cadmium in human diseases: It’s more than just a mere metal. Indian Journal of Clinical Biochemistry, 34(4), 371–378. https://doi.org/10.1007/s12291-019-00839-8
Haghighizadeh, A., Rajabi, O., Nezarat, A., Hajyani, Z., Haghmohammadi, M., Hedayatikhah, S., Asl, S., & Beni, A. A. (2024). Comprehensive analysis of heavy metal soil contamination in mining Environments: Impacts, monitoring Techniques, and remediation strategies. Arabian Journal of Chemistry, 17(6), 105777. https://doi.org/10.1016/j.arabjc.2024.105777
He, Z.L., Zhang, M.K., Lalver, T.D.V., Stoffella, P.J., Yang, X.E., Yu, S. (2004). Transportation of heavy metals in surface runoff from vegetables and citrus. Soil Science Society of America Journal; 68, 1662-1669. http://doi.org/10.2136/sssaj2004.1662
Idugboe, S.O., Tawari-Fufeyin, P., and Midonu, A.A. (2014). Soil pollution in two auto-mechanic villages in Benin City, Nigeria. IOSR Journal of Environmental Science, Toxicology and Food Technology. 8(1), pp. 9–14. http://doi.org/10.9790/2402-08150914
Ishola AB, Okechukwu I, Ashimedua U, Uchechukwu D, Michael E, Moses O. Okwudili, I. H., Vaima, H. M., Itakure A. U. & Ifeanyichukwu, O. K. (2017). Serum level of lead, zinc, cadmium, copper and chromium among occupationally exposed automotive workers in Benin City. International Journal of Environment and Pollution Research; 5 (1), pp. 70–79.
Jiang, M., Zeng, G., Zhang, C., Ma, X., Chen, M., Zhang, J., Lu, L., Yu, Q., Hu, L., & Liu, L. (2013). Assessment of heavy metal contamination in the surrounding soils and surface sediments in Xiawangang River, Qingshuitang District. PLoS ONE, 8(8), e71176. https://doi.org/10.1371/journal.pone.0071176
Jiao, W., Ouyang, W., Hao, F.H., Lin, C.Y. (2015). Anthropogenic impact on diffuse trace metal accumulation in river sediments from agricultural reclamation areas with geochemical and isotopic approaches. Sci. Total Environ. 536, 609–615. 10.1016/j.scitotenv.2015.07.118
Kadem, D. E. D., Rached, O., Krika, A., & Gheribi‐Aoulmi, Z. (2004). Statistical analysis of vegetation incidence on contamination of soils by heavy metals (Pb, Ni, and Zn) in the vicinity of an iron and steel industrial plant in Algeria. Environmetrics, 15(5), 447–462. https://doi.org/10.1002/env.673
Kicińska, A., Pomykała, R., & Izquierdo-Diaz, M. (2022). Changes in soil pH and mobility of heavy metals in contaminated soils. European Journal of Soil Science, 73(1), e13203. https://doi.org/10.1111/ejss.13203
Kodom, K., Preko, K., & Boamah, D. (2012). X-ray fluorescence (XRF) analysis of soil heavy metal pollution from an industrial area in Kumasi, Ghana. Soil and Sediment Contamination: An International Journal, 21(8), 1006–1021. https://doi.org/10.1080/15320383.2012.712073
Liu, H., Zhang, Y., Yang, J., Wang, H., Li, Y., Shi, Y., ... & Hu, W. (2021). Quantitative source apportionment, risk assessment, and distribution of heavy metals in agricultural soils from the southern Shandong Peninsula of China. Science of the Total Environment, 767, 144879. https://doi.org/10.1016/j.scitotenv.2020.144879
Martin, S., & Griswold, W. (2009). Human health effects of heavy metals. Environmental Science & Technology Briefs for Citizens, 15(5), 1–6.
Mitra, S., Chakraborty, A. J., Tareq, A. M., Emran, T. B., Nainu, F., Khusro, A., Idris, A.M., Khandaker, M.U., Osman, H., Alhumaydhi, F.A., & Simal-Gandara, J. (2022). Impact of heavy metals on the environment and human health: Novel therapeutic insights to counter the toxicity. Journal of King Saud University-Science, 34(3),101865. https://doi.org/10.1016/j.jksus.2022.101865
Nwachukwu, M. A., Feng, H., & Achilike (2010). Integrated Studies for Automobile Waste Management and Environmentally Friendly Mechanic Villages in the Imo River Basin, Nigeria. African Journal of Environmental Science and Technology, 4(4), 234–249.
Oguntimehin, I., & Ipinmoroti, K. (2008). Profile of heavy metals from automobile workshops in Akure, Nigeria. J. Environ. Sci. Technol, 1(7), 19–26. DOI: 10.3923/jest.2008.19.26
Okonkwo, E. E. & Ikegwu, J. (2020). A study of Ozizza archaeological and ethnographical sites and features in Ebonyi State of Nigeria: research methodological discussion. Heliyon, 6(3), https://doi.org/10.1016/j.heliyon.2020.e03583
Okoro, I.A, Oriaku, C.I and Ejike, E.N. (2007). Lead characterization of street dust in some cities in south eastern Nigeria. Research Journal of Applied Sciences. 2(1), pp. 39–42.
Onder, S., Dursun, S., Gezgin, S., & Demirbas, A. (2007). Determination of Heavy Metal Pollution in Grass and Soil of City Center Green Areas (Konya, Turkey). Polish Journal of Environmental Studies, 16(1), 145.
Puyate, Y. T., & Rim-Rukeh, A., J. K. (2007). Metal pollution assessment and particle size distribution of bottom sediment of Orogundo River, Agbor, Delta State, Nigeria. Journal of Applied Science and Resources. 3(12), 2056 – 2061
Schwartz, G., Eshel, G., & Ben-Dor, E. (2011). Reflectance spectroscopy as a tool for monitoring contaminated soils. In S. Pascucci (Ed.), Soil Contamination. InTech. https://doi.org/10.5772/23661
Sherene, T. (2010). Mobility and Transport of Heavy Metals in Polluted Soil Environment. Biological Forum—An International Journal, 2, 112–121. https://doi.org/10.1007/s12040-013-0273-3
Simone, M., Fernando, G. & Maria de Lourdes P. (2012). Heavy Metals and Human Health. In book: Environmental Health - Emerging Issues and Practice. http://doi.org/10.5772/29869
The National Environmental Standards and Regulations Enforcement Agency (NESREA). (2007). Heavy Metals: https://nesrea.gov.ng. (Report)
U.S Environmental Protection Agency (E.P.A). (2006). Cadmium Compounds. http://www.eps.gov. (Report)
United Nations Environment Program (UNEP). (2008). Heavy Metals: http://www.cep.unep.org/
Wang, F., Xiang, L., Leung, K. S. Y., Elsner, M., Zhang, Y., Guo, Y., Pan, B., Sun, H., An, T., Ying, G., Brooks, B.W.... & Tiedje, J. M. (2024). Emerging contaminants: a One Health perspective. The Innovation, 5(4). https://doi.org/10.1016/j.xinn.2024.100612
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