Assessing the Health Risks of Heavy Metal Contamination in Water Sources Utilized for Palm Oil Production in Selected Local Industries in Ondo State, Nigeria

Abstract

This study investigates into the adverse impacts of heavy metal concentration on human health, particularly when present in water used in palm oil production in selected industries in Ondo State, Nigeria. Through wet-digestive analysis, the levels of heavy metals including Copper (Cu), Lead (Pb), Manganese (Mn), Zinc (Zn), and Cadmium (Cd) were assessed in both water samples and palm oil products. The results revealed concentrations of heavy metals in water samples and control ranging from Copper (0.167 – 0.297 and 0.143 mg/L), Lead (0.047 – 0.100 mg/L), Manganese (0.250 – 0.327 mg/L), and Zinc (0.0417 – 0.547 mg/L), while palm oil concentrations ranged from Cu (0.327 - 0.100 mg/L), Ni (0.045 - 0.010 mg/L), Pb (0.207 – 0.100 mg/L), Mn (0.390 - 0.183 mg/L), and Zn (0.697 – 0.453 mg/L). Comparison with World Health Organization (WHO) standards indicated that Pb concentrations in water exceeded permissible limits, suggesting potential contamination in palm oil samples. Additionally, a significant positive correlation (p<0.05) was observed between Pb levels in water and palm oil samples, indicating the transfer of lead contaminants into the palm oil during production. These findings underscore the importance of monitoring and regulating heavy metal concentrations in water sources used in palm oil production to safeguard public health.

Country : Nigeria

1 Ajayi Israel Oluwasanmi2 Aliu A. Hassan3 Olowoyeye O. O4 Ogunmakinwa Joy. O

  1. Science Laboratory Technology Department, Federal Polytechnic, Ile-Oluji, Ondo, Nigeria
  2. Statistics Department, Federal Polytechnic, Ile-Oluji, Ondo, Nigeria
  3. Science Laboratory Technology Department, Federal Polytechnic, Ile-Oluji, Ondo, Nigeria
  4. Science Laboratory Technology Department, Federal Polytechnic, Ile-Oluji, Ondo, Nigeria

IRJIET, Volume 8, Issue 10, October 2024 pp. 52-58

doi.org/10.47001/IRJIET/2024.810009

References

  1. Adepoju-Bello, A.A., Osagiede, S.A and Oguntibeju, O.O. (2012). Evaluation of the concentration of some toxic metals in dietary red palm oil. Journal of Bioanalytical and Biomedical, 4:092-095.
  2. Anthemidis, A.N., Arvantiidis, V. and Stratis. J.A. (2005). On-one emusion formation and multi-element analysis of edible oils by inductively coupled plasma atomic emission spectrometry. Analytical chemical Acts, 537: 271-278.
  3. Azab, Y.A., Mandour, R. A., Ibrahim, W, Kenawy, I., El-Menshawy. A and El-Zyat.,   Mostafa. (2010). Chemical evaluation of some heavy metals in surface drinking water in Dakahlyia Governorate and warning from their toxicity. Mansoura J. Forensic Med. Clin. Toxicol. XVIII (2), 69-80.
  4. Dahiya, S., Karpe, R., Hegede, A. G and Sharma, R. M (2005). Lead, cadmium and nickel in chocolate candies from suburban areas of Mumbai, India. Journal of Food Composition and Analysis, 18: 517 – 522.
  5. Geller, M.D., Ntziachristos, L., Mamakos, A., Samaras, Z., Schmitz, D.A., Froines, J.R. and Sioutas, C. (2006). Physicochemical and redox characteristics of particulate matter (PM) emitted from gasoline and diesel passenger cars. Journal of Atmospheric Environment, 40:6988–7004.
  6. Ideriah, T.J.K., Omuaru, V.O.T and Osaisai, C.B (2007). Concentration of heavy metals in leachates and water around solid waste dumpsites in Port Harcourt, Nigeria Journal of Current Top Toxicology., 4: 45-50.
  7. Ikem, A and Egiebor, N.O (2005). Assessment of trace elements in canned fishes (mackerel, tuna, salmon, sardines and herrings) marketed in Georgia and Alabama (United States of America). Journal of Food Composition and Analysis, Volume 18: 771 – 787.
  8. Jarup, L (2003). Hazards of heavy metal contamination. British Medical Bulletin, 68(1): 167 – 182.
  9. Joint Monitoring Programme, (JMP), (2012). Estimated data from WHO/UNICEF Joint Monitoring Programme (JMP) for Water Supply and Sanitation. Progress on Sanitation and Drinking-Water, 2012 Update.
  10. Kanumakala, S., Boneh, A and Zacharin, M (2002). Pamidronate treatment improves bone mineral density in children with menkes disease. Journal of Inherited Metabolic Disease, 25: 391 – 398.
  11. Nnorom, I.C., Alagbaoso, J.E., Amaechi, U.H., Kanu, C. and Ewuzie U. (2014). Determination of Beneficial and Toxic Metals in Fresh Palm Oil (Elaeisguineensis Jacq.) from South Eastern Nigeria: Estimation of Dietary Intake Benefits and Risks. Journal of Scientific Research & Reports, 3(16):2216-2226.
  12. Nnorom, N. (2012). Plantation owners’ forum of Nigeria (POFON) raises alarm over removal of tariff on imported palm oil. Vanguard Wednesday 05 September 2012. Pp. 36.
  13. Nwaugo, V.O., Chinyere, G.C. and Inyang, C.U. (2008). Effects of palm oil will effluents (POME) on soil bacterial flora and enzyme activities in Egbama. Plant product Research Journal, 12: 10-13.
  14. Ohimain, E.I., Seiyaboh, E.I., Izah, S.C., Oghenegueke, E.V. and Parewarabo, G.T. (2012). Gaseous emissions from a semi-mechanized oil palm processing mill in Bayelsa State, Nigeria. Continental Journal of water, Air and soil Revolution, 4(1): 15-25.
  15. Oluyemi, E. A., Adekunle, A. S., Adenuga, A. A. and Makinde, W. O. (2010). Physico-chemical properties and heavy metal content of water sources in Ife North Local Government Area of Osun State, Nigeria. African Journal of Environmental Science and Technology, 4(10) 691-697.
  16. Ruqia, N., Muslim, K., Muhammed, M., Hameed, U.R., Naveed, R. and Surrija, S. (2015). Accumulation of Heavy Metals (Ni, Cu, Cd, Cr, Pb, Zn, Fe) in the soil, water and plants and analysis of physico-chemical parameters of soil and water Collected from Tanda Dam kohat. Pharmaceutical Science and Research. 7 (3). 89-97.
  17. Shanker, K. A. (2008). Mode of action and toxicity of trace elements. In: Trace Elements: Nutritional Benefits, Environmental Contamination, and Health Implications. John Wiley & Sons, Inc, pp.525-555.
  18. Singh, R., Sram, R.J., Binkova, B., Kalina, I., Popov, T.A., Georgieva, T., Garte, S., Taioli, E. and Farmer, P.B. (2007). The relationship between biomarkers of oxidative DNA damage, polycyclic aromatic hydrocarbon DNA adducts antioxidant status and genetic susceptibility following exposure to environmental air pollution in humans. Mutation Research, 620: 83-92.
  19. Sunday, O. E., Kalu, U.N. and Christiana, N.E. (2015). Polycyclic aromatic hydrocarbons (PAHs) contamination in palm oil samples from major markets of ohafia agricultural zone, abia state, Nigeria. European Journal of Physical and Agricultural Sciences, 3(3), 45-59.
  20. Suppin, D., Zahlbruchker, R., Krapfenbauer – Coemak, C. H., Hazan – Hawer, C.H and Smulders, F. J.M (2005). Mercury, lead and cadmium content of fresh and canned fish coleected Ideriah, T.J.K., Omuaru, V.O.T and Osaisai, C.B (2007). Concentration of heavy metals in leachates and water around solid waste dumpsites in Port Harcourt, Nigeria Journal of Current Top Toxicology., 4: 45-50.
  21. Zhu, F.,Fan, W., Wang, X., Qub, L. and Yao, S., (2011). Health risk assessment of eight heavy metals in nine varieties of edible vegetable oils consumed in China. Journal of Food and Chemical Toxicology, 49:3081–3085.