Assessment of some heavy metal content in sediments of a mangrove swamp, niger delta, nigeria using applicable ecological risk indices

Davies Ibienebo Chris, Emeka Donald Anyanwu

Abstract


Sediments can act as pollutant sinks and a source of pollution in aquatic environments. The surface sediments of the Isaka–Bundu tidal swamp, Niger Delta was assessed for heavy metal content using standard methods and assessment indices. The study was carried out in three stations between January and June 2022. Five heavy metals (lead, copper, cadmium, nickel and zinc) were evaluated while eight assessment indices (Contamination Factor - CF, degree of contamination - DC, Ecological Risk - Er, Potential Ecological Risk - PERI, Pollution Load Index - PLI, Enrichment Factor - EF, Geo-accumulation Index - Igeo and Quantification of Contamination -QoC) were applied. Results showed that cadmium and copper exceeded permissible limits while lead, zinc and nickel were within limits. Stations 1 and 3 recorded significantly higher values indicating anthropogenic influence. The dominant anthropogenic activities observed in the area include maritime and dockyard activities and artisanal crude oil refinery. The assessment indices showed that the sediments were at various levels of heavy metal pollution mainly influenced by copper and cadmium viz: CF: Cu (considerable degree) and Cd (very high degree), DC (very high degree), Er: Cd (high ecological risk) and Cu (very high ecological risk), PERI (significant high ecological risk), PLI (very high level pollution), EF: Pb, Zn, Cu (Station 1) and all Cd (extremely high enrichment), Igeo:  Cd (extremely polluted) and QoC: Cu and Cd (anthropogenic source). The sediments were highly polluted with toxic metals, which is detrimental to humans and aquatic biota.

Keywords: Heavy metal; Indices; Mangrove; Niger Delta; Sediment.


Full Text:

PDF

References


Abadi, M., Zamani, A., Parizanganeh, A., Khosravi, Y., and Badiee, H. 2019. Distribution pattern and pollution status by analysis of selected heavy metal amounts in coastal sediments from the southern Caspian Sea. Environmental monitoring and assessment, 191(3): 1-16. https://doi.org/10.1007/s10661-019-7261-2.

Abdullah, M.I.C., Sah, A.S.R.M., and Haris, H. 2020. Geoaccumulation index and enrichment factor of arsenic in surface sediment of Bukit Merah reservoir, Malaysia. Tropical Life Science Research, 31(3): 109-125. https://dx.doi.org/10.21315/tlsr2020.31.3.8.

Ahirvar, B.P., Das, P., Srivastava, V., and Kumar, M. 2023. Perspectives of heavy metal pollution indices for soil, sediment, and water pollution evaluation: An insight. Total Environment Research Themes, 6: 100039. https://doi.org/10.1016/j.totert.2023.100039.

Alabi, O.A., Ologbonjaye, K.I., Awosolu, O., and Alalade, O.E. 2019. Public and environmental health effects of plastic wastes disposal: a review. Journal of Toxicology and Risk Assessment, 5(021): 1-13. https://doi.org/10.23937/2572-4061.1510021.

Ali, M.M., Ali, M.L., Islam, M.S., and Rahman, M.Z. 2016. Preliminary assessment of heavy metals in water and sediment of Karnaphuli River, Bangladesh. Environmental nanotechnology, monitoring & management, 5: pp.27-35. https://doi.org/10.1016/j.enmm.2016.01.002.

Amin, S., Muhammad, S., and Fatima, H. 2021. Evaluation and risk assessment of potentially toxic elements in water and sediment of the Dor River and its tributaries. North Pakistan. Environmental Technology and Innovation. 21: 101333. https://doi.org/10.1016/j.eti.2020.101333.

Ansari, Z.A., and Matondkar, S.G.P. 2014. Anthropogenic activities include pollution and contamination of the coastal marine environment. Journal of Ecophysiology and Occupational Health, 14(1/2), 71.

Anyanwu, E.D., Adetunji, O.G., and Nwoke, O.B. 2022a. Heavy metal content of water in Ikwu River (Umuahia, Nigeria): pollution indices and health risk assessment approach. Acta Aquatica Turcica, 18(3): 345-358. https://doi.org/10.22392/actaquatr.1060806.

Bai, J., Cui, B., Chen, B., Zhang, K., Deng, W., Gao, H., and Xiao, R. 2011. Spatial distribution and ecological risk assessment of heavy metals in surface sediments from a typical plateau lake wetland, China, Ecological Modelling, 222 (2): 301. https://doi.org/10.1016/j.ecolmodel.2009.12.002.

Barakat, A., Ennaji, W., Krimissa, S., and Bouzaid, M. 2020. Heavy metal contamination and ecological-health risk evaluation in peri-urban wastewater-irrigated soils of Beni-Mellal city (Morocco). International Journal of Environmental Health Research, 30(4): 372-387. https://doi.org/10.1080/09603123.2019.1595540.

Chris, D.I., and Anyanwu, B.O. 2023. Pollution and potential ecological risk evaluation associated with toxic metals in an impacted mangrove swamp in Niger Delta, Nigeria. Toxics, 11: 6. https:// doi.org/10.3390/toxics11010006.

Davies, I.C., Nkeeh, D.K., and Efekemo, O. 2022b. Minerals and trace elements content of selected shellfish from opuro-ama waterfront: an impacted tidal creek in Rivers State, Nigeria. International Journal of Agriculture and Earth Science, 8(3): 45-60.

Davies, I.C., Odekina, U. M., and Akoko S. 2022a. Distribution of trace metals in biota, sediments, and water from a polluted mangrove swamp in Rivers State. Journal of Geography, Environment and Earth Science International, 26(4): 1-14. https://doi.org/10.9734/JGEESI/2022/v26i430343.

DPR (Department of Petroleum Resources). 2002. Environmental guidelines and standards for the petroleum industry in Nigeria (revised edition). Department of Petroleum Resources, Ministry of Petroleum and Natural Resources, Abuja, Nigeria, 2002.

Essien, J.P., Inam, E.D., Ikpe, D.I., Udofia, G.E., and Benson, N.U. 2019. Ecotoxicological status and risk assessment of heavy metals in municipal solid wastes dumpsite impacted soil in Nigeria. Environmental Nanotechnology, Monitoring & Management, 11: 100215. https://doi.org/10.1016/j.enmm.2019.100215.

Ghrefat, H., Abu-Rukah, Y., and Rosen M. 2011. Application of geoaccumulation index and enrichment factor for assessing metal contamination in the sediments of Kafrain dam, Jordan. Environmental Monitoring and Assessment, 178: 95–109. https://doi.org/10.1007/s10661-010-1675-1.

Guan, Y., Shao, C., and Ju, M. 2014. Heavy metal contamination assessment and partition for industrial and mining gathering areas. International Journal of environmental research and public health, 11(7): 7286-7303. https://www.mdpi.com/1660-4601/11/7/7286.

Habib, J., Sadigheh, J., and Mohammad, A.K. 2018. Assessment of heavy metal pollution and ecological risk in marine sediments (A case study: Persian Gulf). Human and Ecological Risk Assessment, 24(8): 1–10. https://dx.doi.org/10.1080/10807039.2018.1443792.

Hakanson, L. 1980. An ecological risk index for aquatic pollution control. A sedimentological approach. Water Research, 14(8): 975-1001. https://doi.org/10.1016/0043-1354(80)90143-8.

Harikumar, P.S., and Jisha, T.S. 2010. Distribution pattern of trace metal pollutants in the sediments of an urban wetland in the Southwest Coast of India. International Journal of Engineering science and Technology, 2(5): 840 – 850.

Huang, Z., Zhao, W., Xu, T., Zheng, B., and Yin, D. 2019. Occurrence and distribution of antibiotic resistance genes in the water and sediments of Qingcaosha Reservoir, Shanghai. China. Environmental Sciences Europe, 31: 1–9. https://doi.org/10.1186/s12302-019-0265-2.

Ikezam, P., Elenwo, E.I., and Oyegun, C.U. 2021. Effects of artisanal refinery on the environment, public health and socio-economic development of communities in the Niger Delta Region. Environmental Management and Sustainable Development, 10(3): 97–111. https://doi.org/10.5296/emsd.v10i3.18921.

Islam, M.S., Han, S., Ahmed, M.K., and Masunaga, S., 2014. Assessment of trace metal contamination in water and sediment of some rivers in Bangladesh. Journal of Water and Environment Technology, 12(2): 109-121. https://doi.org/10.2965/jwet.2014.109.

Ismail, A., and Naji, A. 2011. Assessment of metals contamina-tion in Klang River surface sediments by using different indexes. Environment Asia, 4: 30–38.

Ite, A.E., Harry, T.A., Obadimu, C.O., Asuaiko, E.R., and Inim, I.J. 2018. Petroleum hydrocarbons contamination of surface water and groundwater in the Niger Delta region of Nigeria. Journal of Environment Pollution and Human Health, 6(2): 51-61. https://doi.org/10.12691/jephh-6-2-2.

Jacob, J.M., Karthik, C., Saratale, R.G., Kumar, S.S., Prabakar, D., Kadirvelu, K., and Pugazhendhi, A. 2018. Biological approaches to tackle heavy metal pollution: a survey of literature. J. Environ. Manag., 217: 56–70. https://doi.org/10.1016/j.jenvman.2018.03.077.

Jahan, S., and Strezov, V. 2018. Comparison of pollution indices for the assessment of heavy metals in the sediments of seaports of NSW, Australia. Marine Pollution Bulletin, 128: 295–306. https://dx.doi.org/10.1016/j.marpolbul.2018.01.036.

Jire, P.N., and Imeokparia, E.G. 2018. Statistical Evaluation of the Heavy Metals in the Sediments of Warri River and Environs. Advances in Image and Video Processing, 6(3): 1-16.

Kazemi, A., Bakhtiari, A.R., Kheirabadi, N., Barani, H., and Haidari, B. 2012. Distribution patterns of metals contamination in sediments based on type regional development on the in¬tertidal coastal zones of the Persian Gulf, Iran. Bulletin of Environmental Contamination and Toxicology, 88: 100–103. https://doi.org/10.1007/s00128-011-0412-y.

Kieri, I.B.S., Ekpete, O.A., and Edori, O.S. 2021. Assessment of heavy metal pollution in sediments of silver river, Southern Ijaw, Bayelsa State, Nigeria. Environmental Analysis & Ecology Studies, 7(5): 000675. https://doi.org/10.31031/EAES.2021.07.000675.

Kouidri, M., Youcef, N.D., Benabdellah, I., Ghoubali, R., Bernoussi, A., and Lagha, A. 2016. Enrichment and geoaccumulation of heavy metals and risk assessment of sediments from coast of Ain Temouchent (Algeria). Arabian Journal of Geosciences, 9:354. https://doi.org/10.1007/s12517-016-2377-y.

Kumar, V., Sharma, A., Pandita, S., Bhardwaj, R., Thukral, A.K., and Cerda, A. 2020. A review of ecological risk assessment and associated health risks with heavy metals in sediment from India. International Journal of Sediment Research. https://doi.org/10.1016/j.ijsrc.2020.03.012.

Liang, A., Wang, Y., Guo, H., Bo, L., Zhang, S., and Bai, Y. 2015. Assessment of pollution and identification of sources of heavy metals in the sediments of Changshou Lake in a branch of the Three Gorges Reservoir. Environmental Science and Pollution Research, 22: 16067–16076.

Ling, T.Y., Gerunsin, N., Soo, C.L., Nyanti, L., Sim, S.F., and Grinang, J. 2017. Seasonal changes and spatial variation in water quality of a large young tropical reservoir and its downstream river. Journal of Chemistry. https:// doi. org/10. 1155/ 2017/ 81532 46.

Liu, M., Zhong, J., Zheng, X., Yu, J., Liu, D., and Fan, C. 2018. Fraction distribution and leaching behaviour of heavy metals in dredged sediment disposal sites around Meiliang Bay, Lake Taihu (China). Environmental Science and Pollution Research, 25: 9737–9744. https://doi.org/10.1007/s11356-018-1249-2.

Malvandi, H. 2021. An assessment of metal contamination risk in sediments of the Mohammad Abad River, Northern Iran. Journal of Biomedical Research and Environmental Sciences, 2(8): 696-704. https://dx.doi.org/10.37871/jbres1299.

Masindi, V., and Muedi, K.L. 2018. Environmental contamination by heavy metals. Heavy metals, 10: 115-132. https://doi.org/10.5772/intechopen.76082.

Moldovan, A., Torok, A.I., Kovacs, E., Cadar, O., Mirea, C.I., and Micle, V. 2022. Metal contents and pollution indices assessment of surface water, soil and sediment from the Aries River Basin Mining Area. Romania. Sustainability, 14: 824. https://doi.org/10.3390/su14138024.

Moslen, M., Ekweozor, I.K.E., and Nwoka, N.D. 2018. Assessment of heavy metals pollution in surface sediments of a tidal creek in the Niger Delta, Nigeria. Archives of Agriculture and Environmental Science, 3(1): 81-85. https://doi.org/10.26832/24566632.2018.0301012.

Mugoša, B., Đurović, D., Nedović-Vuković, M., Barjaktarović-Labović, S., and Vrvić, M. 2016. Assessment of ecological risk of heavy metal contamination in coastal Municipalities of Montenegro. International Journal of Environmental Research and Public Health, 13(4): 393. https://doi.org/10.3390/ijerph13040393.

Mwakisunga, B., Pratap, H.B., Machiwa, J.F., and Stephano, F. 2021. Heavy metal contamination and potential ecological risks in surface sediments along Dar es Salaam Harbour Channel. Tanzania Journal of Science, 47(5): 1606-1621. https://dx.doi.org/10.4314/tjs.v47i5.11.

Nowrouzi, M., and Pourkhabbaz, A. 2014. Application of geoaccumulation index and enrichment factor for assessing metal contamination in the sediments of Hara Biosphere Reserve, Iran. Chemical Speciation and Bioavailability, 26(2): 99–105. https://dx.doi.org/10.3184/095422914X13951584546986.

Odekina, M.U., Davies, I.C., Akoko S., and Vincent-Akpu I.F. 2021. Bioaccumulation of heavy metals in Periophthalmus papillio, sediment and interstitial water from Isaka-Bundu Water Front in Rivers State. Academic Journal of Current Research, 8(11): 19-38.

Ogbeibu, A.E., Omoigberale, M.O. Ezenwa, I. M., Eziza, J.O., and Igwe, J.O. 2014. Using pollution load index and geoaccumulation index for the assessment of heavy metal pollution and sediment quality of the Benin River, Nigeria. Natural Environment, 2(1): 1-9. https://doi.org/10.12966/ne.05.01.2014.

Onuh, P.A., Omenma, T.J., Onyishi, C.J., Udeogu, C.U., Nkalu, N.C., and Iwuoha, V.O. 2021. Artisanal refining of crude oil in the Niger Delta: A challenge to clean-up and remediation in Ogoniland. Local Economy, 36(6): 468-486. https://doi.org/10.1177/02690942211071075.

Orisakwe, O.E. 2014. Lead and cadmium in public health in Nigeria: physicians neglect and pitfall in patient management. North American journal of medical sciences, 6(2): 61-70. https://doi.org/10.4103%2F1947-2714.127740.

Pandiyan, J., Mahboob, S., Govindarajan, M., Al-Ghanim, K. A., Ahmed, Z., Al-Mulhm, N., Jagadheesan, R., and Krishnappa, K. 2021. An assessment of level of heavy metals pollution in the water, sediment and aquatic organisms: A perspective of tackling environmental threats for food security. Saudi Journal of Biological Sciences, 28: 1218–1225. https://doi.org/10.1016/j.sjbs.2020.11.072.

Pandiyan, J., Mahboob, S., Jagadheesan, R., Elumalai, K., Krishnappa, K., Al-Misned, F., Kaimkhani, Z.A., and Govindarajan, M. 2020. A novel approach to assess the heavy metal content in the feathers of shorebirds: A perspective of environmental research. Journal of King Saud University Science, 32: 3065–3307. https://doi.org/10.1016/j.jksus.2020.08.014.

Pejman, A., Bidhendi, G,N., Ardestani, M., Saeedi, M., and Baghvand, A. 2015. A new index for assessing heavy metals contamination in sediments: a case study. Industrial ecology, 58:3 65–373. https://doi.org/10.1016/j.ecolind.2015.06.012.

Peter, P.O., Rashid, A., Nkinahamira, F., Wang, H., Sun, Q., Gad, M., Yu, C. P., and Hu, A. 2021. Integrated assessment of major and trace elements in surface and core sediments from an urban lagoon, China: Potential ecological risks and influencing factors. Marine pollution bulletin, 170: 112651. https://doi.org/10.1016/j.marpolbul.2021.112651.

Qingjie, G., Jun, D., Yunchuan, X., Qingfei, W., and Liqiang, Y. 2008. Calculation pollution indices by heavy metals in ecological geochemistry assessment and a case study in parks of Beijing. Journal of China University of Geosciences, 3(19): 230–241.

Shyleshchandran, M.N., Mohan, M., and Ramasamy, E.V. 2018. Risk assessment of heavy metals in Vembanad Lake sediments (south-west coast of India), based on acid-volatile sulfide (AVS)-simultaneously extracted metal (SEM) approach. Environmental Research and Public Health, 25: 7333-7345. https://link.springer.com/article/10.1007/s11356-017-0997-8#:~:text=DOI-,https%3A//doi.org/10.1007/s11356%2D017%2D0997%2D8,-Keywords.

Wang, W., Qin, Y., Song, D., and Wang, K. 2008. Column leaching of coal and its combustion residues, Shizuishan, China. International Journal of Coal Geology, 75: 81–87. https://doi.org/10.1016/j.coal.2008.02.004.

Wei, J., Duan, M., Li, Y., Nwankwegu, A.S., Ji, Y., and Zhang, J. 2019. Concentration and pollution assessment of heavy metals within surface sediments of the Raohe Basin. China. Scientific Reports, 9: 13100. https://doi.org/10.1038/s41598-019-49724-7.

Yawo, O.J., Inyang, E.P., and Akpan, I.O. 2022. Application of pollution indices in estimating the toxicity of heavy metals in sediments of Okoro River in Eastern Obolo, Southeastern Nigeria. Researchers Journal of Science and Technology, 2: 1 -17.

Yuan, Y., Song, D., Wu, W., Liang, S., Wang, Y., and Ren, Z. 2016. The impact of anthropogenic activities on the marine environment in Jiaozhou Bay, Qingdao, China: a review and a case study. Regional Studies in Marine Science, 8: 287-296. https://doi.org/10.1016/j.rsma.2016.01.004.

Zarei, I., Pourkhabbaz, A., and Khuzestani, R.B. 2014. An assessment of metal contamination risk in sediments of Hara Biosphere Reserve, southern Iran with a focus on application of pollution indicators. Environmental Monitoring and Assessment, 186(10): 6047-60. https://doi.org/10.1007/ s10661-014-3839-x.

Zarezadeh, R., Rezaee, P., Lak, R., Masoodi, M., and Ghorbani, M. 2017. Distribution and accumulation of heavy metals in sediments of the northern part of mangrove in Hara Biosphere Reserve, Qeshm Island (Persian Gulf). Soil & Water Research, 12(2): 86–95. https://doi.org/10.17221/16/2016-SWR




DOI: https://doi.org/10.29103/aa.v10i3.11430

Article Metrics

 Abstract Views : 140 times
 PDF Downloaded : 1 times

Refbacks

  • There are currently no refbacks.



Copyright (c) Acta Aquatica: Aquatic Sciences Journal   

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.