Heavy Metals in Some Fruits and Cereals in Minna Markets, Nigeria

Authors

  • Simon Olonkwoh Salihu Department of Chemistry, School of Natural and Applied Sciences, Federal University of Technology, Minna, Nigeria
  • John Olusanya Jacob Department of Chemistry, School of Natural and Applied Sciences, Federal University of Technology, Minna, Nigeria
  • Matthew Tikpangi Kolo Department of Physics, School of Natural and Applied Sciences, Federal University of Technology, Minna, Nigeria
  • Bukola Joseph Osundiran Department of Chemistry, School of Natural and Applied Sciences, Federal University of Technology, Minna, Nigeria
  • John Emmanuel Department of Chemistry, School of Natural and Applied Sciences, Federal University of Technology, Minna, Nigeria

DOI:

https://doi.org/10.3923/pjn.2014.722.727

Keywords:

Absorption spectroscopy, cereals, fruits, metals, minna and markets

Abstract

Food production and safety can be used as a measure of a nation’s economic growth and stability as well as the responsiveness of government to the need of its people. In Nigeria, fruits and cereals are grown and distributed to all parts of the country through retails. They are a source of energy and minerals to humans in particular. Trace elements do not provide calorie but play an important role in the metabolic regulations of the human body systems if present in required amounts. They are co-enzymes and co-factors in human system which play different roles in growth, metabolism and immune system development. They can however bio-accumulate over a period of time in vital human organs-lungs, kidney, heart, liver and the brain causing serious damages and death. Worldwide food quality is monitored through metal analysis. This study was carried out in Minna, Nigeria, located 9°36’ 50N; 6°33’25E with nearly 300,000 inhabitants. The trace metals Fe, Pb, Cr, Mn, Cu and Zn were analysed from Rice (Oryza sativa), Maize (Zea maize), Guinea corn (Sorghum bicolor) and Millet (Panicum miliaceum) and edible parts of Banana (Musa spp), Orange (Citrus auratium), Pineapple (Ananas comossus), Watermelon (Citrullus lanatus) and Apple (Malus domestica). Fe was 18.400-252.160 and 1.120-20.800 mg/kg in fruits. In cereals, Cr was not detectable while Pb (1.154 mg/kg) was found only in maize. Fe content was considerably low in cereals compare to fruits. Compare to research elsewhere, similarities and dis-similarities in metals concentration were observed.

References

Salama, A.K. and M.A. Radwan, 2005. Heavy metals (Cd, Pb) and trace elements (Cu, Zn) contents in some foodstuffs from the Egyptian market. Emirate J. Food Agric., 17: 34-42.

Aremu, M.O., A. Olanisokin and S.A. Ahmed, 2006. Assessment of some heavy metal content in some selected agricultural products planted along some roads In Nasarawa State, Nigeria. J. Eng. Applied Sci., 1: 199-204.

Chang, A.C., A.L. Page, J.E. Warneke and E. Grgurevic, 1984. Sequential extraction of soil heavy metals following a sludge application. J. Environ. Qual., 13: 33-38.

Elbagermi, M.A., H.G.M. Edwards and A.I. Alajtal, 2012. Monitoring of heavy metal content in fruits and vegetables collected from production and market sites in the Misurata area of Libya. ISRN Anal. Chem.

Hokin, B., M. Adams, J. Ashton and H. Louie, 2004. Analysis of the cobalt content in Australian foods. Asia Pac. J. Clin. Nutr., 13: 284-288.

Inoti, K.J., K. Fanuel, O. George and O. Paul, 2012. Assessment of heavy metal concentrations in urban grown vegetables in Thika Town, Kenya. Afr. J. Food Sci., 6: 41-46.

Ismail, F., M.R. Anjum, A.N. Mamon and T.G. Kazi, 2011. Trace metal contents of vegetables and fruits of Hyderabad retail market. Pak. J. Nutr., 10: 365-372.

Korfali, S.I., T. Hawi and M. Mroueh, 2013. Evaluation of heavy metals content in dietary supplements in Lebanon. Chem Cent J., Vol. 7.

Krejpcio, Z., S. Sionkowski and J. Bartela, 2005. Safety of fresh fruits and juices available on the Polish market as determined by heavy metal residues. Polish J. Environ. Stud., 14: 877-881.

Mahdavian, S.E. and R.K. Somashekar, 2008. Heavy metals and safety of fresh fruits in Bangalore city, India-a case study. Kathmandu Univ. J. Sci. Eng. Technol., 4: 17-27.

Musa, U., S.S. Hati and A. Mustapha, 2012. Levels of Fe and Zn in Staple Cereals: Micronutrient deficiency implications in rural Northeast Nigeria. Food Publ. Health, 2: 28-33.

NRC., 1989. Recommended Dietary Allowances. 10th Edn., National Academic Press, Washington, DC., USA., ISBN: 9780309046336, Pages: 302.

Shar, G.Q., T.G. Kazi, F.A. Shah, A.H. Shar and F.M. Soomro, 2011. Variable uptake and accumulation of essential and heavy metals in maize (Zea mays L.) grains of six maize varieties. Aust. J. Basic Applied Sci., 5: 117-121.

Sobukola, O.P., O.M. Adeniran, A.A. Odedairo and O.E. Kajihausa, 2010. Heavy metal levels of some fruits and leafy vegetables from selected markets in Lagos, Nigeria. Afr. J. Food Sci., 4: 389-393.

WHO., 1998. Guidelines for Drinking-Water Quality. Vol. 2, Health Criteria and Other Supporting Information. World Health Organization, Geneva.

Zahir, E., I.I. Naqvi and S.M. Uddin, 2009. Market basket survey of selected metals in fruits from Karachi City (Pakistan). J. Basic Applied Sci., 5: 47-52.

NSF International, 2003. Dietary supplement-standard 173, metal contaminant accepted level. NSF International, USA., September 3, 2003.

USEPA., 1996. Method 3060A: Alkaline digestion for hexavalent chromium. United States Environmental Protection Agency, USA., December 1996.

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Published

15.11.2014

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Section

Research Article

How to Cite

Salihu, S. O., Jacob, J. O., Kolo, M. T., Osundiran, B. J., & Emmanuel, J. (2014). Heavy Metals in Some Fruits and Cereals in Minna Markets, Nigeria. Pakistan Journal of Nutrition, 13(12), 722–727. https://doi.org/10.3923/pjn.2014.722.727