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Heavy Metal Content of Water in Ikwu River (Umuahia, Nigeria): Pollution Indices and Health Risk Assessment Approach

Year 2022, Volume: 18 Issue: 3, 345 - 358, 01.09.2022
https://doi.org/10.22392/actaquatr.1060806

Abstract

The heavy metal content of a local drinking water source in Southeast Nigeria was studied between January 2021 and June 2021 in 3 stations. Pollution indices (heavy metal pollution index and contamination index) and health risk assessment for non-carcinogenic were used to check the water’s suitability for human consumption. Eight heavy metals were assessed with standard methods and compared with The Nigerian Drinking Water Quality Standard. Some metals (Mn, Pb, Fe, Cd, and Cr) exceeded acceptable limits. The heavy metal pollution index exceeded the threshold value (100), ranging between 503.56 and 746.80. The contamination index ranged between 10.74 and 17.12 indicating high contamination potential and all the hazard indices exceeded unity (1). The heavy metal content, pollution indices, and health risk assessment has shown that the water from the Ikwu River was not fit for human consumption. The main metals that influenced the results were Mn, Pb, Fe, Cd, and Cr, because they exceeded limits while Cd and Cr were responsible for the observed adverse health risk. The children were more vulnerable. The geogenic influence was a major factor exacerbated by season and anthropogenic activities in the river.

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Ikwu Nehri (Umuahia, Nijerya) Suyundaki Ağır Metal İçeriği: Kirlilik Endeksleri ve Sağlık Riski Değerlendirmesi

Year 2022, Volume: 18 Issue: 3, 345 - 358, 01.09.2022
https://doi.org/10.22392/actaquatr.1060806

Abstract

Güneydoğu Nijerya'da yerel bir içme suyu kaynağının ağır metal içeriği Ocak 2021 ile Haziran 2021 arasında 3 istasyonda incelenmiştir. Suyun insan tüketimine uygunluğunu kontrol etmek için kirlilik indeksleri (ağır metal kirlilik indeksi ve bulaşma indeksi) ve kanserojen olmayanlar için sağlık risk değerlendirmesi kullanıldı. Sekiz ağır metal, standart yöntemlerle değerlendirildi ve Nijerya İçme Suyu Kalite Standardı ile karşılaştırıldı. Bazı metaller (Mn, Pb, Fe, Cd ve Cr) kabul edilebilir sınırları aştı. Ağır metal kirlilik indeksi eşik değerini (100) aştı; 503,56 ile 746,80 arasında değişmektedir. Kirlilik indeksi 10.74 ile 17.12 arasında değişmekte olup, yüksek kontaminasyon potansiyeline işaret etmekte ve tüm tehlike indeksleri birden (1) aşmaktadır. Çocuklar daha savunmasızdı. Jeojenik etki, nehirdeki mevsim ve antropojenik faaliyetlerle şiddetlenen önemli bir faktördü.

References

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  • Al-thahaibawi, B. M. H. (2021). Preliminary assessment of several heavy metal ions (Fe, Cu, Ni, Zn, Cr, Pb, and Cd) in water, sediment, Ceratophyllum demersum, and Potamogeton pectinatus Plants from Marsh Al-Hawizeh, Iraq. Journal of Water and Environmental Technology, 19 (4), 185-197. https://doi.org/10.2965/jwet.20-160
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  • Anyanwu, E. D., & Nwachukwu, E. D. (2020). Heavy metal content and health risk assessment of a Southeastern Nigeria River. Applied Water Science, 10, 210. https://doi.org/10.1007/s13201-020-01296-y
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  • Anyanwu, E. D., Adetunji, O. G., & Nwachukwu, E. D. (2020). Application of pollution indices and health risk assessment in the heavy metal content of a South-eastern Nigeria River. Pollution, 6(4), 909-923. https://doi.org/10.22059/poll.2020.303140.820
  • Anyanwu. E. D., & Umeham, S. N. (2020a). Identification of waterbody status in Nigeria using predictive index assessment tools: a case study of Eme River, Umuahia, Nigeria. International Journal of Energy and Water Resources, 4(3), 271-279. https://doi.org/10.1007/s42108-020-00066-5
  • Anyanwu, E. D., Jonah, U. E., Adetunji, O. G., & Nwoke, O. B. (2022). An appraisal of the physicochemical parameters of Ikwu River, Umuahia, Abia State in South‑eastern, Nigeria for multiple uses. International Journal of Energy and Water Resources, 2022. https://doi.org/10.1007/s42108-021-00168-8
  • Backman, B., Bodis, D., Lahermo, P., & Rapant, S. (1998). Application of a groundwater contamination index in Finland and Slovakia. Environmental Geology, 36, 55–64. https://doi.org/10.1007/s002540050320
  • Biswas, P. K., Uddin, N., Alam, S., Tamjid-Us-Sakib, Sultana, S., & Ahmed, T. (2017). Evaluation of heavy metal pollution indices in irrigation and drinking water systems of Barapukuria Coal Mine Area, Bangladesh. American Journal of Water Resources, 5(5), 146–151. https://doi.org/10.12691/ajwr-5-5-2
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  • Dibofori-Orji, A. N., Ihunwo, O. C., Udo, K. S., Shahabinia. A. R., Onyema. M. O., & Mmom, P. C. (2019). Spatial and temporal distribution and contamination assessment of heavy metal in Woji Creek. Environmental Research Communications, 1, 1–10. https://doi.org/10.1088/2515-7620/ab4a8c
  • Dimirkou, A., & Doula, M. K. (2008). Use of clinoptilolite and an Fe overexchanged clinoptilolite in Zn2+ and Mn2+ removal from drinking water. Desalination, 224(1–3), 280–292. https://doi.org/10.1016/j.desal.2007.06.010
  • Ekere, N. R., Ihedioha, J. F., Eze, I. S., & Agbazue, V. E. (2014). Health risk assessment in relation to heavy metals in water sources in rural regions of South-East Nigeria. International Journal of Physical Sciences, 9(6), 109–116. https://doi.org/10.5897/IJPS2014.4125
  • Elci, L., Kartal, A. A., & Soylak, M. (2008). Solid phase extraction method for the determination of iron, lead and chromium by atomic absorption spectrometry using Amberite XAD-2000 column in various water samples. Journal of Hazardous Materials, 153(1–2), 454–461. https://doi.org/10.1016/j.jhazmat.2007.08.075
  • Ertaş, A., Yaşartürk, M., Boz, T., & Tüney Kızılkaya, İ. (2021). Evaluation of the water quality of Karabal Stream (Gediz River, Turkey) and comparative performance of the used indices. Acta Aquatica Turcica, 17(3), 334-349. https://doi.org/10.22392/actaquatr.819579
  • Etesin, U., Udoinyang, E., & Harry, T. (2013). Seasonal variation of physicochemical parameters of water and sediments from Iko River, Nigeria. Journal of Environment and Earth Science, 3(8), 96–110.
  • Ezekiel, O., & Dikam, K. I. (2020). Assessment of concentration status of some heavy metals in water along River Dilimi, Jos North, Plateau State, Nigeria. Indonesian Journal of Urban and Environmental Technology, 4(10), 29-44. https://doi.org/10.25105/urbanenvirotech.v4i1.6768
  • Gebrekidan, M., & Samuel, Z. (2011). Concentration of heavy metals in drinking water from urban areas of the Tigray Region, Northern Ethiopia. Momona Ethiopian Journal of Science, 3(1), 105-121. https://doi.org/10.4314/mejs.v3i1.63689
  • Grützmacher, G., Kumar, P. J. S., Rustler, M., Hannappel, S., & Sauer, U, (2013). Geogenic groundwater contamination – definition, occurrence and relevance for drinking water production. Zentralblatt für Geologie und Paläontologie, 1(1), 69–75.
  • Hamidu, H., Halilu, F. B., Yerima, K. M., Garba, L. M., Suleiman, A. A., Kankara, A. I., & Abdullahi, I. M. (2021). Heavy metals pollution indexing, geospatial and statistical approaches of groundwater within Challawa and Sharada industrial areas, Kano City, North-Western Nigeria. SN Applied Sciences, 3, 690. https://doi.org/10.1007/s42452-021-04662-w
  • Haque, M. A., Jewel, M. A., Hasan, J., Islam, M. M., Ahmed, S., & Alam, L. (2019). Seasonal variation and ecological risk assessment of heavy metal contamination in surface waters of the Ganges River (Northwestern Bangladesh). Malaysian Journal of Analytical Sciences, 23(2), 300–311. https://doi.org/10.17576/mjas-2019-2302-14
  • Herojeet, R., Rishi, M. S., & Kishore, N. (2015). Integrated approach of heavy metal pollution indices and complexity quantification using chemometric models in the Sirsa Basin, Nalagarh valley, Himachal Pradesh, India. Chinese Journal of Geochemistry, 34(4), 620–633. https://doi.org/10.1007/s11631-015-0075-1
  • Horton, R. K. (1965). An index system for rating water quality. Journal of the Water Pollution Control Federation, 27(3), 300–315.
  • Houssou, A. M., Ahouansou Montcho, S., Montchowui, E., & Bonou, C. A. (2017). Spatial and seasonal characterization of water quality in the Ouémé River Basin (Republic of Benin, West Africa). Egyptian Journal of Chemistry, 60(6), 1077-1090. https://doi.org/10.21608/ejchem.2017.1463.1095
  • Ijaola, O. O., & Simon, C. E. (2021). Effects of dredging on downstream water quality: Ekole Creek, Nigeria. International Journal of Engineering Technologies and Management Research, 8(12), 17-25. https://doi.org/10.29121/ijetmr.v8.i12.2021.1078
  • Iwuoha, G., Osuji, L. C., & Horsfall, M. Jnr. (2012). Index Model Analysis Approach to Heavy Metal Pollution Assessment in Sediments of Nworie and Otamiri Rivers in Imo State of Nigeria. Research Journal of Chemical Sciences, 2(8), 1–8.
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There are 60 citations in total.

Details

Primary Language English
Subjects Environmental Sciences
Journal Section Research Articles
Authors

Emeka Donald Anyanwu 0000-0002-8593-6865

Onyinyechi Gladys Adetunji This is me 0000-0003-1943-0134

Oluomachi Blessing Nwoke This is me 0000-0003-2709-9488

Early Pub Date August 24, 2022
Publication Date September 1, 2022
Published in Issue Year 2022 Volume: 18 Issue: 3

Cite

APA Anyanwu, E. D., Adetunji, O. G., & Nwoke, O. B. (2022). 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