HEAVY METALS BIOACCUMULATION IN SELECTED FISH SPECIES OF RIVER GONGOLA AT YAMALTU DEBA, GOMBE STATE, NIGERIA

Authors

  • Hauwa Ishaku Dibal
  • Musa Adamu Ibrahim
  • Kever Donald Gba-Aondu

DOI:

https://doi.org/10.33003/jees.2024.0102./03

Keywords:

Bioaccumulation, Heavy metals, Fish species, River Gongola, Ecotoxicology

Abstract

This study was aimed to determine the level of heavy metals in water and the bioaccumulation factor of heavy metals in selected fish species (Bagrus bayad macropterus, Oreochromis niloticus and Clarias gariepinus) of River Gongola, Gombe State. Water and fish samples were collected from two locations for 18 months (Dec. 2021- May 2023). Water and fish samples were analysed for heavy metals (Cu, Cd, Cr, As, Ni, Mn, Fe and Zn) concentration using an Atomic Absorption Spectrophotometer (AAS). Bioaccumulation factors of heavy metals were determined in the selected fish species. The Cd, As and Mn concentrations in water exceeded the recommended standards. The levels of heavy metals varied significantly among fish organs. The liver had the highest concentration of most metals, followed by the gills and the muscles. The levels of heavy metals in the fish tissues were below standard limits. However, Zn was reported to have the highest concentration in all the tissues studied. The BAF values calculated were mostly < 1, indicating no probability of bioaccumulation except for Fe in B. bayad macropterus and C. gariepinus and As in C. gariepinus Periodic monitoring of the water and biota of the river is recommended to ensure the safety of these resources for consumer use.

References

Abah, J., Mashebe, P. & Onjefu, S. (2016). A Preliminary Assessment of some heavy metals pollution status of Lisikili River water in Zambezi Region, Namibia. International Journal of Environment and Pollution Research, 4(2): 13-30.

Abbas, A., Al-Amer, A.M., Laoui, T., Al-Marri, M.J., Nasser, M.S., Khraisheh, M. and Atieh, M. A. (2016). Heavy metal removal from aqueous solution by advanced carbon nanotubes: critical review of adsorption applications. Separation and Purification Technology, 157: 141–161.

Akbulut, A. and Akbulut, N. E. (2010). The study of heavy metal pollution and accumulation in water, sediment and fish tissue in the Kizihrmak River Basin in Turkey. Environmental Monitoring Assessment 167: 521-526.

Al-Busaidi, M., Yesudhanon, P., Al-Mughairi, S., Al-Rahbi, W. A., Al-Harthy, K. S., Al-Mazrooei, N. A. (2011). Toxic metals in commercial marine fish in Oman concerning national and international standards. Chemosphere, 85: 67-73.

Al-Weher S. M. (2008). Heavy metals Cd, Cu and Zn levels in three fish species collected from the Northern Jordan Valley, Jordan. Jordan Journal of Biological Sciences, 1(1): 41-46.

Ampiah-Bonney, R. J., Tyson, J.F. and Lanza, G.R. (2007). “Phytoextraction of arsenic from soil by Leersia oryzoides,” International Journal of Phytoremediation, 9(1): 31–40.

Anders, M. W. Lash, L. Dekant, W., Elfarra, A. A., Dohn, D. R. and Reed, D. J. (1988). Biosynthesis and biotransformation of glutathione S conjugate to toxic metabolites. CRC Critical Reviews in Toxicology, 1: 311–341.

Ansari, T.M. Marr, I.L. and Tariq, N. (2004). Heavy metals in marine pollution perspective—Amini review. Journal of Applied Science, 4:1–20.

AOAC. (2000). Official Methods of Analysis of Association of Official Analytical Chemists. 18th Edition, Washington, DC.

Ayodele, O.P, Fafioye, O.O and Oladunjoye, R.Y. (2019). Physicochemical parameters and heavy metal composition of water, sediment, and fish species of Oyan Lake, Nigeria. Acta Scientific Agriculture, 3(6): 190-195.

Butler G.C. (1978). Principles of Ecotoxicology. Chichester, England: J Wiley and Sons.

Dhaneesh, K.V. Gopi, K.V. Ganeshamurthy, R. Kumar, T.T. and Balasubramanian, T. (2012). Bio-accumulation of metals on reef-associated organisms of Lakshadweep Archipelago. Food Chemistry, 131(3): 985–991.

Emeka, D.A. and Solomon N.U. (2020). An index approach to heavy metal pollution assessment of Eme River, Umuahia, Nigeria. Sustainability, Agriculture, Food and Environmental Research, 8(x): 1-11.

Ezekiel, B., Annune, P.A. and Solomon, S.G. (2019). Concentration of heavy metals in selected fish species from Dadinkowa Dam, Gombe State, Nigeria. International Journal of Fisheries and Aquatic Studies, 7(3): 279-284.

Ezeonyejiaku, C.D., Nwuba, L.A., Obiakor, M.O. and Okonkwo C.N. (2014). Bioaccumulation of heavy metals in fish sourced from the environmentally stressed axis of River Niger: Threat to the ecosystem and public health. International Journal of Environmental Protection and Policy, 2(4): 126-131.

Green, M. C., Osuala, F. O .U., Okechukwu, R. I. and Abara, P.N. (2023). Bioaccumulation of Heavy Metals in Fish Tissues from Selected Surface Water of the Niger Delta, Nigeria. International Journal of Research Publication and Reviews, 4(1): 2196-2202.

He, M., Wang, L., Lv, Y., Wang, X., Zhu, J., Zhang, Y. and Liu, T. (2020). Novel polydopamine/metal-organic framework thin film nanocomposite forward osmosis membrane for salt rejection and heavy metal removal. Chemical Engineering Journal, 389:124452.

Heba N., Gad, E., Mahi, A.G., Farida, A.M., Nahla, S.E. and Marwa, I.S. (2022). Heavy metals and parasitological infection associated with oxidative stress and histopathological alteration in the Clarias gariepinus. Ecotoxicology, 31: 1096–1110.

Ilia, I., Torun, B., Sergey, D. and Jozef, P. (2004). Heavy Metal: European Monitoring and Evaluation Programme Assessment Report; Part 1: 107-128.

Jamil Emon, F., Rohani, M. F., Sumaiya, N., Tuj Jannat, M. F., Akter, Y.; Shahjahan, M., Abdul Kari, Z., Tahiluddin, A. B. and Goh, K.W. (2023) Bioaccumulation and Bioremediation of Heavy Metals in Fishes—A Review. Toxics, 11:510. https://doi.org/ 10.3390/toxics11060510

Kosgei, P. J., Mwaniki, D. M. and Liti, D. M. (2019). The concentration of selected heavy metals in water and the cumulative effect on selected organs of Oreochromis niloticus and Clarias gariepinus from Lake Victoria, Kenya. Resources and Environment, 9(4): 80-91.

Lenntech (2004). Iron (Fe) and water. Retrieved from https://www.lenntech.com/periodic/ water/iron/iron-and-water.htm. Accessed 30 Sept 2021

Moussa, A. M., Hanan, R. H. M. and Amr Adel, A. (2022). Metal accumulation and DNA damage in Oreochromis niloticus and Clarias gariepinus after chronic exposure to discharges of the batts drain: Potential risk to human health. Bulletin of Environmental Contamination and Toxicology, 108(6): 1064–1073.

Mwebaza-Ndawula, L. (1984). Food and feeding habits of Clarias mossambicus from four areas in the Lake Victoria basin, East Africa. Environmental biology and fisheries, 10: 69-76. https://doi.org/10.1007/BF00001663

Neighbourhood Water Quality Fall (2000) Project Oceanography. 13-25.

Oboh, I.P. and Okpara, B.C. (2019). Bioaccumulation of heavy metals and assessment of the human health risk of Clarias gariepinus and Parachanna obscura consumption from the Owan River, Edo State, Nigeria. Biologija, 65(3): 192–201.

Omoigberale, M.O., Oboh, I.P, Erhunmwunse, N.O., Ezenwa, M.I. and Omoruyi, S.O. (2014). An assessment of the trace metal contents of Owan River, Edo State, Nigeria. European International Journal of Science and Technology, 3(5): 88-98.

Rajeshkumar, S. and Li, X. (2018). Bioaccumulation of heavy metals in fish species from the Meiliang Bay, Taihu Lake, China. Toxicology Reports, 5: 288-295.

Santuraki, A.H., Abdu, Z., Babayo, A.U. and Abdulkadir, A.G. (2022). Concentration and human health risk assessment of Dichlorodiphenyltrichloroethane in two species of fish muscle from River Gongola Basin and its Dam, Dadinkowa, Gombe State, Nigeria. Journal of Applied Science and Environmental Management, 26(12): 1909-1914.

Talal, A., Bilal, A. S., Rashida. S. and Shamim, A. (2023). Application of Heavy Metal Pollution Index (HPI) to assess drinking water quality in Islamabad. Research square, 1-15.

Uba, S., Pedro, S.O., Tafida, L. and Isyaku, S. (2019). The pollution load Index (PLI) is a yardstick for assessing the water quality in Shika Dam. FUW Trends in Science and Technology Journal, (3): 813-820.

USEPA. (2014). Estimated fish consumption Rates for the U.S. population and selected subpopulations (NHANES 2003-2010). EPA-820-R-14-002. U.S. Environmental Protection Agency, Office of Water, Washington, DC. Accessed April, 2021.

Usman, L.U., Muhammad, A., Banerjee, S. and Musa, N. (2021). Bioaccumulation potential of heavy metals in some commercial fish species from Cika Koshi Reservoir Katsina North-western Nigeria: Threat to the ecosystem and public health. Materials Today Proceedings 49, doi:10.1016/j.matpr.2021.03.098

Zita N., Somandla, N., Felix, J. A., Simiso, D. and Mathew, M. N. (2021). Bioaccumulation and human risk assessment of heavy metals in Oreochromis niloticus and Clarias gariepinus fish species from the Golinga Reservoir, Ghana. South African Journal of Chemistry, 75: 111–116.

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Published

2024-12-24

How to Cite

Dibal, H. I., Ibrahim, M. A., & Gba-Aondu, K. D. (2024). HEAVY METALS BIOACCUMULATION IN SELECTED FISH SPECIES OF RIVER GONGOLA AT YAMALTU DEBA, GOMBE STATE, NIGERIA. FUDMA Journal of Earth and Environmental Sciences, 1(02), 22–32. https://doi.org/10.33003/jees.2024.0102./03