Heavy Metals Accumulation in Vegetables from Irrigated Farmlands in Tudun Wada Zaria Metropolis, Kaduna State, Nigeria
Abstract
The levels of some heavy metals were investigated on five (5) selected vegetable samples, two leafy vegetables: Spinach (Amarantus spp), Lettuce (Lactuca sativa L.); two solanaceous vegetables: Tomato (Lycopersicum esculentum), Ball (Red) pepper (Capsicum annuum Linn) and one root vegetable: Onion (Allium cep L.) that were freshly harvested within two different irrigated farmland in Tudun-Wada, Zaria Local Government Area of Kaduna state. The levels of the heavy metals, (Pb, Cd, Cr, Cu, Zn and Fe) were analyzed using Atomic Absorption Spectrophotometer (AAS) (Buck model 210 VGP). In all the samples analyzed, Cd and Cr were not detected. The levels of heavy metals analyzed, the results ranged from Pb (0.056 ± 0.009 mg/kg to 0.095 ± 0.010 mg/kg), Cu (0.314 ± 0.043 mg/kg to 0.632 ± 0.022 mg/kg), Zn (1.090 ± 0.170 mg/kg to 8.341 ± 4.070 mg/kg) and Fe (9.926±2.226mg/kg to 23.660±4.135mg/kg). The order of the metal contamination in the vegetables was Fe>Zn>Cu>Pb. The results were below the WHO/FAO threshold values. The consumption of these vegetables as food may not pose possible health hazards to a human at the time of the study.
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Adah, C.A., Abah, J., Ubwa, S.T. and Ekele, S. (2013). Soil Availability and Uptake of Some Heavy Metlas by Three Staple Vegetables Commonly Cultivated Along the South Bank of River Benue, Makurdi, Nigeria. International Journal of Environment and Bioenergy, 8(2): 56-67.
Akan, J.C., Kolo, B.G., Yikala, B.S. and Ogugbuaja, V.O. (2013). Determination of Some Heavy Metals in Vegetable Samples From Biu Local Government Area, Borno State, North Eastern Nigeria. International Journal of Environmental Monitoring and Analysis. Vol.1, No.2, pp. 40-46. doi: 10.11648/j.ijema.20130102.11
Alexander, P. and Ubandoma, W.H. (2014). Determination of Some Heavy Metals in Selected Edible Vegetables Grown Along River Yedzaram in Uba Area Adamawa State, Nigeria. African Journal of Pure and Applied Chem. Vol. 8(4), pp 78-82.
Bagdatlioglu, N., Nergiz, C. and Ergomul, P.G. (2010). Heavy metal levels in leavy vegetables and some fruits. Journal of Consumer Protection and Food Safety. 5: 421-428.
Ekong, E.B., Jaar, B.G and Weaver, V.M. (2006). Lead-Related nephrotoxicity: A Review of the Epidemiologic evidence. Kidney Int. 70: 2074-2084.
Funtua, M.A., Agbaji, E.B. and Ajibola, V.O. (2008). Assessment of the heavy metal contents of spinach and lettuce grown along the Bank of River Getsi-Kano. Chem. Class Journal. CSN Zaria. Vol., 5, 11-14.
Gaetke, L.M. and Chow, C.K. (2003). Copper Toxicology, Oxidative Stress, and Antioxidant Nutrients. Toxicity. 189, 147-163.
Goyer, R.A. (2003). Lead Toxicity: Current Concerns. Environ. Health Persp. 100, 177-187.
Harmanescu, M., Alda, L.M., Bordean, D.M., Gogoasa, L. and Gergen, L. (2011). Heavy Metals Health Risk Assessment for Population via Consumption of vegetables grown in Old Mining Area, A Case Study: Banat County, Romania. Chem. Cent. J. 5, 64-73.
Hu, J., Wu, F., Wu, S., Cao, Z., Wong, M.H. (2013). Bio accessibility, dietary exposure and human risk assessment of heavy metals from market vegetables in Hong Kong revealed within vitrogastrointestinal model. Chemosphere, 91, 451-461.
Klaassen, C.D., Liu, J. and Diwan, B.A. (2009). Metallothionein: Protection of Cadmium Toxicity. Toxocol. Appl. Pharm. 238; 215-220.
Ladipo, M.K. and Doherty, V.F. (2011). Heavy Metal Levels in Vegetables from Selected Markets in Lagos, Nigeria. Afr. Journal of Food Science and Tech. Vol. 2(1) pp. 18-21.
Latif, A., Bilal, M., Asghar, W., Azeem, M. and Ahmad, M.I. (2018). Heavy Metal Accumulation in Vegetables and Assessment of their Potential Health Risk. Journal of Environmental Analytical Chem. 5: 234. doi:104172/23802391.1000234.
Mohammed, A.E., Rashed, M.N. and Mofty, A. (2003). Assessment of Essential and Toxic Elements in Some Kinds of Vegetables. Ecoloxical Environ. Saf. 55: 251-260.
Mayuri C., Munjal, A., Nema, A.K., Gupta, S.K. and Kausal, R.K. (2016). Heavy Metal Contamination in Vegetables Grown Around Peri-urban and Urban-industrial Clusters in Ghaziabad, India. Human and Ecological Risk Assessment: An International Journal, 22:3, 736-752. http://dx.doi.org/10.1080/10807039.2015.1105723.
Navas-Acien, A., Guallar, E., Silbergeld, E.K. and Rothenberg, S.J. (2007). Lead Exposure and Cadiovascular Disease: A Systematic Review. Environ. Health Perspective. 115: 472-484.
Rahman, M.A., Rahman, M.M., Reichman, S.M., Lim, R.P. and Naidu, R. (2014). Heavy Metals in Australian Grown and Imported Rice and Vegetables on Sale in Australia: Health Hazard. Ecotoxicol. Environ. Saf. 100, 53-60.
Raphael, O. and Adebayo, K.S. (2011). Assessment of Trace Heavy Metal Contamination of Some Selected Vegetables Irrigated with Water from River Benue within Makurdi Metropolis, Benue State Nigeria. Advances in Applied Science Research, 2:590-601.
Singh, A. Sharma, R.K., Agrawal, M. And Marshall, F.M. (2010). Risk Assessment of Heavy Metal Toxicity through Contaminated Vegetables from Waste water Irrigated Area of Varanasi, India. Tropical Ecology, Vol.51, pp. 375-387.
Ukpabi, C.F., Chinwendu, S., Emmanuel, E., Ifeanyi, N., Michael, C. And Nduleka, J.C. (2016). Determination of Heavy Metal Contaminants in Leafy Vegetables Cultivated and Marketed in Aba, Nigeria. European Journal of Basic and Applied Science, Vol.3 No.1 pp42-51.
Zhou, H., Wen-Tao, Y., Zhou, X., Liu, L., Jiao-Feng, G., Wang, W., Zou, J., Tian, T., Peng, P. and Liao, B. (2016). Accumulation of Heavy metals in Vegetable Species planted in Contaminated Soils and the Health Risk Assessment. International Journal of Environmental Research and Public Health. 13: 1-12. doi:10.3390/ijerph13030289.
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