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Assessing the Occurrence of Heavy Metals in Edible Fruits Grown around Mine Tailings Dam in Kitwe

DOI: 10.4236/jep.2023.142006, PP. 83-95

Keywords: Avocado, Concentration, Lemon, Mining, Permissible Limits

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Abstract:

Mining activities in the Copperbelt province of Zambia have been of great environmental concern, despite recorded improvements in the socio-economic sector. Heavy metal contamination of soils resulting from depositing mine tailings and rock waste has posed possible health risks for communities nearer such facilities. The current study was conducted around residential homes surrounding Kitwe slimes (TD25). This work investigated levels of Co, Cu, Fe, Mn and Pb in the soils, and avocado and lemons fruits, growing near TD25. Heavy metals were analyzed using Atomic Absorption Spectrophotometer. The work further assessed the estimated daily intake (EDI) associated with potential health risks to humans. In the soil, concentration levels of heavy metals showed a trend in the order: Fe > Cu > Mn > Co > Pb. Heavy metal contents in avocado and lemon fruits at 200 and 400 m away from TD25, all had p-values < 0.05. The distances from the suspect source (TD25) to where the fruit trees were grown, had no influence on their concentration in the fruit samples. Fruit sample results showed that Fe had the highest EDI of 0.22 mg·kg-1 (avocado) and 0.14 mg·kg-1 (lemon), though both results were far below the FAO/WHO standard range (12.5 - 19.6 mg·kg-1). For both fruits, Co and Pb results were negligible. The concentration of the five heavy metals in avocado and lemon fruits grown around Kitwe slimes did not pose any health risks to the consumers.

References

[1]  Ali, M.M., Hossain, D., Imran, A., Khan, M.S., Begum, M. and Hasan, M. (2021) Environmental Pollution with Heavy Metals: A Public Health Concern. In: Heavy Metals, IntechOpen, London, 1-25.
https://www.intechopen.com/chapters/76739
[2]  Mishra, S., Bharagava, R.N., More, N., Yadav, A., Zainith, S., Mani, S. and Chowdhary, P. (2018) Heavy Metal Contamination: An Alarming Threat to Environment and Human Health. Springer, Singapore.
https://doi.org/10.1007/978-981-10-7284-0_5
[3]  Shaheen, N., Irfan, N.M., Khan, I.N., Islam, S., Islam, M.S. and Ahmed. M.K. (2016) Presence of Heavy Metals in Fruits and Vegetables: Health Risk Implications in Bangladesh. Chemosphere, 152, 431-438.
https://doi.org/10.1016/j.chemosphere.2016.02.060
[4]  Husejnović, M.S., Janković, S., Nikolić, D. and Antonijević, B. (2021) Human Health Risk Assessment of Lead, Cadmium, and Mercury Co-Exposure from Agricultural Soils in the Tuzla Canton (Bosnia and Herzegovina). Archives of Industrial Hygiene and Toxicology, 72, 268-279.
https://doi.org/10.2478/aiht-2021-72-3533
[5]  Cai, L.-M., Wang, Q.-S., Luo, J., Chen, L.-G., Zhu, R.-L., Wang, S. and Tang, C.-H. (2019) Heavy Metal Contamination and Health Risk Assessment for Children near a Large Cu-Smelter in Central China. Science of the Total Environment, 650, 725-733.
https://doi.org/10.1016/j.scitotenv.2018.09.081
[6]  Kossoff, D., Dubbin, W.E., Alfredsson, M., Edwards, S.J., Macklin, M.G. and Hudson-Edwards, K.A. (2014) Mine Tailings Dams: Characteristics, Failure, Environmental Impacts, and Remediation. Applied Geochemistry, 51, 229-245.
https://doi.org/10.1016/j.apgeochem.2014.09.010
[7]  Payandeh, K., Nazarpour, A. and Velayatzadeh, M. (2021) Human Health Risk of Some Heavy Metals Accumulated in Tomatoes, Cucumber, Potato, and Onion Grown in Dezful and Shushtar. Archives of Hygiene Sciences, 10, 299-314.
https://doi.org/10.32598/AHS.10.4.314.1
[8]  Pratush, A., Kumar, A. and Hu, Z. (2018) Adverse Effect of Heavy Metals (As, Pb, Hg, and Cr) on Health and Their Bioremediation Strategies: A Review. International Microbiology, 21, 97-106.
https://doi.org/10.1007/s10123-018-0012-3
[9]  Farid, G., Sarwar, N., Saifullah, A., Ghafool, A. and Rehman, M. (2015) Heavy Metals (Cd, Ni, Pb) Contamination of Soils, Plants and Waters in Madina Town of Faisalabad Metropolitan and Preparation of GIS Based Maps. Advances in Crop Science and Technology, 4, 693-706.
https://doi.org/10.4172/2329-8863.1000199
[10]  Nazir, R., Muslim, K., Muhammed, M., Naveed, U.R. and Zeenat, S. (2015) Accumulation of Heavy Metals (Ni, Cu, Cd, Cr, Pb, Zn, Fe) in the Soil, Water and Plants and Analysis of Physical-Chemical Parameters of Soil and Water Collected from Tanda Dam Kohat. Journal of Pharmaceutical Science and Research, 7, 89-97.
[11]  Barkouch, Y. and Pineau, A. (2016) Evaluation of the Impact of Mine Activity on Surrounding Soils of Draa Lasfar Mine in Marrakech-Morocco. African Journal of Environmental Science and Technology, 10, 44-49.
https://doi.org/10.5897/AJEST2015.1892
[12]  Ali, I., Gupta, V.K. and Aboul-Enein, H.Y. (2005) Metal ion Speciation and Capillary Electrophoresis: Application in the New Millennium. Electrophoresis Review, 26, 3988-4002.
https://doi.org/10.1002/elps.200500216
[13]  Bello, A. and Schirnding, V. (2012) Preventive Activity of Ascorbic Acid on Lead Acetate Induced Cerebellar Damaged in Adult Wistar Rats. Medical and Health Science Journal, 13, 99-104.
https://doi.org/10.15208/mhsj.2012.68
[14]  Mallick, J., Singh, C.K., AlMesfer, M.K., Singh, V.P. and Alsubih, M. (2021) Groundwater Quality Studies in the Kingdom of Saudi Arabia: Prevalent Research and Management Dimensions. Water, 13, 1266.
https://doi.org/10.3390/w13091266
[15]  Al-Hobaib, A.S., Al-Jaseem, Q.K., Baioumy, H.M. and Ahmed, A.H. (2013) Heavy Metals Concentrations and Usability of Groundwater at Mahd Adh Dhahab Gold Mine, Saudi Arabia. Arabian Journal of Geosciences, 6, 259-270.
https://doi.org/10.1007/s12517-011-0344-1
[16]  Shikwambana, K., Mafeo, T. and Mathaba, N. (2021) Effect of Postharvest Methyl Jasmonate Treatment on Early-Matured “Hass” Avocado Fruit Exocarp Colour Development during Ripening. Agricultural Sciences, 12, 875-887.
https://doi.org/10.4236/as.2021.128056
[17]  Mathaba, N., Mathe, S., Mafeo, T.P., Tesfay, S.Z. and Mlimi, J. (2017) Complexities of “Hass” Avocado Skin Colour Change during Ripening. South African Avocado Growers Association Yearbook, 40, 129-132.
[18]  Duarte, P.F., Chaves, M.A., Borges, C.D. and Mendonça, C.R.B. (2016) Avocado: Characteristics, Health Benefits and Uses. Food Technology, 46, 757-754.
https://doi.org/10.4236/as.2021.128056
[19]  Atucha, A., Merwin, I.A., Brown, M.G., Gardiazabal, F., Mena, F., Adriazola, C., Goebel, M. and Bauerle, T. (2013) Root Distribution and Demography in an Avocado (Persea americana) Orchard under Groundcover Management Systems. Functional Plant Biology, 40, 507-515.
https://doi.org/10.1071/FP12317
[20]  Ajugwo, A., Erhabor, T., Mokogwu, T., Digban, K., Ojieh, G. and Nnatuanya, I. (2013) Nutritional Value of Lime and Lemon in Hypercholesterolaemic Induced Rats. Asian Journal of Medical Sciences, 3, 13-16.
https://doi.org/10.3126/ajms.v3i1.5450
[21]  Mary. B., Daniela, V., Simona, C. and Giorgio, C. (2019) Assessing the Extent of Citrus Trees Root Apparatus under Deficit Irrigation via Multi-Method Geo-Electrical Imaging. Scientific Reports, 9, Article No. 9913.
https://doi.org/10.1038/s41598-019-46107-w
[22]  Chata, D.M., Iliya, A.Y., Chidawa, M.S., Emmanuel, M.D., Juliana, O.O. and Chibuzor, E.K. (2018) Determination of Heavy Metals in Four Mango Fruit Varieties Sold in Minna Modern Market, Niger State, Nigeria. International Journal of Biological and Environmental Engineering, 1, 24-29.
[23]  Salhotra, P. and Verma, R. (2017) Determination of Heavy Metals Contamination in Some Vegetables and Fruits Samples from the Market of Jagdalpur, Chhattisgarh State. International Journal of Innovative Science and Research Technology, 5, 2456-2165.
[24]  Kayika, P., Siachoono, S.M., Kalinda, C. and Kwenye, J.M. (2017) An Investigation of Concentrations of Copper, Cobalt and Cadmium Minerals in Soils and Mango Fruits Growing on Konkola Copper Mine Tailings Dam in Chingola Zambia. Archives of Science, 1, Article No. 103.
[25]  Zhuang, P., Murray, B.M., et al. (2009) Health Risk from Heavy Metals via Consumption of Food Crops in the Vicinity of Dabaoshan Mine, South China. Science of the Total Environment, 407, 1551-1561.
https://doi.org/10.1016/j.scitotenv.2008.10.061
[26]  FAO/WHO Food and Agriculture Organization/World Health Organization (2014) Guidelines for Simple Evaluation of Dietary Exposure to Food Additives CAC/GL 3-1989 Adopted 1989. Revision 2014 (Formerly Guidelines for the Simple Evaluation of Food Additives Intake). 1-12.
https://www.fao.org/input/download/standards/6/cxg_003e.pdf
[27]  Keenan, A.P. and James, P.S. (2016) Applied Multivariate Statistics for the Social Sciences. Taylor & Francis Group, New York.
[28]  Johnson, R.A. and Wichern, D.W. (2007) Applied Multivariate Statistical Analysis. Prentice Hall, Hoboken.
https://doi.org/10.1002/0471667196.ess6094
[29]  Rahimzadeh, M. and Rastegar, S. (2017) Heavy Metals Residue in Cultivated Mango Samples from Iran. Journal of Food Quality and Hazards Control, 4, 29-31.

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