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Development of Water Quality Index (WQI) Model for The Evaluation of Groundwater (Well) Status in Yakurr, South – South, Nigeria
Subject area: Science,Engineering and Technology · Area of research: Water Resources
DOI: https://doi.org/10.64388/IREV9I10-1716245
Abstract
This research assessed the condition of groundwater in the Yakurr Local Government Area of Cross River State, Nigeria, employing the Water Quality Index (WQI) approach. Water samples were obtained from 15 hand-dug wells located within three communities (Mkpani, Ekori, and Ugep) during both rainy and dry periods. A total of nineteen physical, chemical, and microbial indicators were examined, which include pH, turbidity, conductivity, TDS, TSS, chloride, nitrate, phosphate, hardness, sodium, calcium, magnesium, bicarbonate, dissolved oxygen, BOD5, iron, fluoride, and total coliform count. The weighted arithmetic index method was utilized to calculate the WQI. The findings indicated that WQI values varied between 117.1 and 811.4. Two wells were identified in the 'Poor' category (13.33%), four fell into the 'Very Poor' category (26.67%), and nine were marked as 'Unsuitable for Drinking' (60%). The WQI assessment indicated that Ugep was the most severely impacted area, whereas Ekori demonstrated comparatively better water quality. Elevated levels of iron, TCC, and phosphate significantly influenced the high WQI readings. The study concludes that numerous wells in Yakurr are not safe for direct use, highlighting the urgent need for treatment, enhanced sanitation, and ongoing monitoring to maintain public health safety.
Keywords
Groundwater; GIS, Well, WQI, Pollution, Seasonal Variation
References
[1] Abbasi, T., Abbasi, S.A., (2012). Water-Quality Indices. Elsevier, pp. 353–356. https://doi.org/10.1016/B978-0-444-54304-2.00016-6
[2] Abua, M. A., and Ajake, O. A. (2014). Water quality status around animal dung in Adiabo River Catchments of Odukpani Local Government Area of Cross River State, Nigeria. International Journal of Bioscience, 4(4), 28–43.
[3] Adekunle, A. A., and Isaac, I. U. (2021). Multivariate analysis of seasonal variation in groundwater quality within the Federal University of Agriculture, Abeokuta, Southwestern Nigeria. Dutse Journal of Pure and Applied Science. Vol. 7 No. 3b
[4] Agbo, B. E., Adie, F., Abdulraheem, A. B., and Etim, D. O. (2021). Evaluation of the potability of water sources in Yakurr Local Government Area of Cross River State, Nigeria. Society for Multidisciplinary and Advanced Research Techniques (SMART) Africa.
[5] Akale, T. (2016). Water quality index for measuring drinking water quality in rural Bangladesh: a cross-sectional study. Journal of health, population and 35(1),1-12.
[6] Amadi, A. N. (2012). Quality assessment of Aba River using the heavy metal pollution index. American Journal of Basic and Applied Science, 5(11), 763–770.
[7] APHA (2017). Standard methods for the examination of water and wastewater, 23rd edition. American Public Health Association, Washington DC.
[8] Antigha, R. E. E. (2018). Development of a storm water quality model for Ugep urban, south-south Nigeria using the multiple regression approach. International Journal of Innovative Research in Science, Engineering and Technology.
[9] Avvannavar, S. M., and Shrihari, S. (2008). Evaluation of water quality index for drinking purposes for river Netravathi, Mangalore, South India. Environmental Monitoring and Assessment, 143(1-3), 279-290
[10] Awalla, C. O., and Ezeigbo, H. I. (2002). An appraisal of water quality in the Urbu-Okposi area, Ebonyi State, southeast Nigeria. Journal of the Nigerian Association of Hydrogeologists, 13, 13–44.
[11] Banerjee, T., Srivastava, R.K. (2009). Application of water quality index for assessment of surface water quality surrounding integrated industrial estate, Pantnagar. Water Sci. Technol. https://doi.org/10.2166/wst.2009.537.
[12] Boateng, I. K. (2016). Groundwater quality assessment using statistical approach and water quality index in Ejisu-Juaben Municipality, Ghana. Environmental Earth Sciences, 75(6), 489.
[13] Carvalho, L., Cortes, R., Bordalo, A.A., (2011). Evaluation of the ecological status of an impaired watershed by using a multi-index approach. Environ. Monit. Assess. 174, 493–508. https://doi.org/10.1007/s10661-010-1473-9.
[14] Chaturvedi, M. K., and Bassin, J. K. (2010). Assessing the water quality index of a water treatment plant and bore wells in Delhi, India. Environmental Monitoring and Assessment, 163(5), 449–453.
[15] Cude, C.G., (2001). Oregon water quality index: A tool for evaluating water quality management effectiveness. J. Am. Water Resour. Assoc. https://doi.org/10.1111/ j.1752-1688. 2001.tb05480. x.
[16] Debels, P., Figueroa, R., Urrutia, R., Barra, R., Niell, X., (2005). Evaluation of water quality in the Chill´an River (Central Chile) using physicochemical parameters and a modified Water Quality Index. Environ. Monit. Assess. https://doi.org/10.1007/ s10661-005-8064-1.
[17] Digha, O. N., and Ekanem, J. D. (2015). Effects of population density on water quality in Calabar Municipality, Cross River State, Nigeria. Journal of Environment and Earth Science, 5(2), 7–21.
[18] Dojlido, J.A.N., Raniszewski, J., Woyciechowska, J., (1994). Water quality index applied to rivers in the Vistula River basin in Poland. Environ. Monit. Assess. 33, 33–42.
[19] Dunnette, D.A. (1979). A Geographically Variable Water Quality Index Used in Oregon. Source J. (Water Pollut. Control Fed.
[20] Egbe J. G (2026). Water Quality Assessment of Ekpache Nkome River in Ikom Local Government Area of Cross River State. Int J Water Res 8(1): 210 DOI: https://doi.org/10.36266/IJWR/210
[21] Effendi, H., RomantoWardiatno, Y. (2015). Water quality status of Ciambulawung River, Banten Province, based on pollution index and NSF-WQI. Procedia Environ. Sci. 24, 228–237. https://doi.org/10.1016/j.proenv.2015.03.030.
[22] Essien et al., (1996). Studied the distribution of lead (Pb) in Akwa Ibom State using water and sediment from different location.
[23] Ekpo, I. A., Agbor, R. B., Albert, P. E., Okpako, E. C., & Inyang, P. I. (2013). Assessment of heavy metal status and bacteria population in municipal borehole water in landfill and non-landfill areas in Calabar Municipality, Cross River State, Nigeria. International Journal of Engineering and Applied Sciences.
[24] Eni, D. I., Ubi, Arikpo, E., and Digha, N. (2014). Vulnerability assessment of boreholes located close to Lemna landfill in Calabar Metropolis, Nigeria. International Journal of Physical and Human Geography, 2(2), 6–15.
[25] Eni, D. V., Obiefuna, J., Oko, C., and Ekwok, I. (2011). Impact of urbanization on subsurface water quality in Calabar Municipality, Nigeria. International Journal of Humanities and Social Sciences, 1(10), 167.
[26] Fawole O. L. (2018). Pollution of Surface or Groundwater is spreading very fast in the world, this is attributed to indiscriminate discharge of treated or partially treated water directly or indirectly into aquatic bodies.
[27] Gebrehiwot, A. B., Tadesse N., Jigar, E. (2011) Application of water quality index to assess suitability of groundwater quality for drinking purpose in Hantebet watershed, Tigray, Northern Ethiopia. ISABB J. Food and Agric. Sci. 1(1):22-30.
[28] Gitu I. Bassey and Jerome G. Egbe (2016). Residual Chlorine Decay in Water Distribution Network, International Journal of Scientific and Engineering Research 3(3): pp. 1- 6.
[29] Hasan, H.H., Jamil, N.R., Aini, N. (2015). Water Quality Index and Sediment Loading Analysis in Pelus River, Perak. Malaysia. Procedia Environ. Sci. 30, 133–138. https://doi.org/10.1016/j.proenv.2015.10.024.
[30] Horton R. K. (1965). An index number system for rating water quality—Journal of Water Pollute Control Federation 373:303-306.
[31] House, M.A. (1989). A water quality index for river management. Water Environ. J. 3, 336–344. https://doi.org/10.1111/j.1747-6593.1989.tb01538.x.
[32] Hoseinzadeh, E., Khorsandi, H., Wei, C., Alipour, M. (2015). Evaluation of Aydughmush River water quality using the National Sanitation Foundation Water Quality Index (NSFWQI), River Pollution Index (RPI), and Forestry Water Quality Index (FWQI). Desalin. Water Treat. 54, 2994–3002. https://doi.org/10.1080/ 19443994.2014.913206.
[33] Ibiang, E. I. (2022). Effect of human activities on surface and groundwater sources in Cross River State, South-South Nigeria. Journal of Contemporary Research.
[34] Inah, E. O. (2022). Anthropogenic impacts on water quality of Kedong Stream in Idomi, Yakurr Local Government Area of Cross River State, Nigeria. Environmental and Ecology Research, 10(6), 738.
[35] Isamil, A., et al. (2022). Groundwater quality modelling and mitigation from wastewater used in irrigation: A case study of the Nile Delta Aquifer in Egypt. International Journal of Environmental Research and Public Health.
[36] Ishaku, J. M. (2011). Assessment of groundwater quality using water quality index and GIS in Jada, northeastern Nigeria. Journal of Geology and Mining Resource 3(9): 219-231.
[37] Ishaku, J. M., Ahmed, A. S., Abubakar, M A. (2012). Assessment of groundwater quality index for Jimeta Yola area, northeastern Nigeria. International Research Journal of Geology and Mining
[38] Jerome G. Egbe, Gitu I. Bassey, Ubi S. Emmanuel, Emiri A. Dafe, Friday J. Egu (2019) . Investigation on Poor Water Quality Supply in Calabar: A Case Study of Cross River State Water Board. Peer Res Nest. - 1(4) PNEST.19.09.015.
[39] Kannel, P.R., Lee, S., Lee, Y.-S., Kanel, S.R., Khan, S.P., (2007). Application of Water Quality Indices and Dissolved Oxygen as Indicators for River Water Classification and Urban Impact Assessment. Environ. Monit. Assess. 132, 93–110. https://doi. org/10.1007/s10661-006-9505-1.
[40] Kumar, N., and Sinha, D. K. (2010). Drinking water quality management through correlation studies among various physicochemical parameters. International Journal of Environmental Sciences, 1(2), 253–259.
[41] Liou, S.-M., Lo, S.-L., Wang, S.-H., (2004). A Generalized Water Quality Index for Taiwan. Environ. Monit. Assess. 96, 35–52. https://doi.org/10.1023/B: EMAS.0000031715. 83752.a1.
[42] Lobato, T.C., Hauser-Davis, R.A., Oliveira, T.F., Silveira, A.M., Silva, H.A.N., Tavares, M. R.M., Saraiva, A.C.F., (2015). Construction of a novel water quality index and quality indicator for reservoir water quality evaluation: A case study in the Amazon region. J. Hydrol. 522, 674–683. https://doi.org/10.1016/j.jhydrol.2015.01.021.
[43] Longe, E. O., and Balogun, M. R. (2010). Groundwater quality assessment near a municipal landfill in Lagos, Nigeria. Research Journal of Applied Sciences, Engineering and Technology, 2(1), 39–44.
[44] Lumb, A., Sharma, T.C., Bibeault, J.-F. (2011). A Review of Genesis and Evolution of Water Quality Index (WQI) and Some Future Directions. Water Qual. Expo. Heal. https://doi.org/10.1007/s12403-011-0040-0.
[45] Naubi, I., Zardari, N.H., Shirazi, S.M., Ibrahim, N.F.B., Baloo, L. (2016). Effectiveness of water quality index for monitoring Malaysian river water quality. Polish J. Environ. Stud. 25, 231–239. https://doi.org/10.15244/pjoes/60109.
[46] Neary, B., Cash, K., Hebert, S., Khan, H., Saffran, K., Swain, L., Williamson, D. (2001). Canadian Water Quality Guidelines for the Protection of Aquatic Life CCME Water Quality Index 1.0 Technical Report. Can. Counc. Minist. Environ.
[47] Ma, Z., Li, H., Ye, Z., Wen, J., Hu, Y., Liu, Y., (2020). Application of modified water quality index (WQI) in the assessment of coastal water quality in the main aquaculture areas of Dalian. China. Mar. Pollut. Bull. 157 https://doi.org/10.1016/j. marpolbul.2020.111285.
[48] Magesh, N.S., Krishnakumar, S., Chandrasekar, N., Soundranayagam, J.P. (2013). Groundwater quality assessment using WQI and GIS techniques, Dindigul district, Tamil Nadu, India. Arab. J. Geosci. 6, 4179–4189. https://doi.org/10.1007/s12517- 012-0673-8.
[49] Medeiros, A.C., Faial, K.R.F., do Carmo Freitas Faial, K., da Silva Lopes, I.D., de Oliveira Lima, M., Guimarães, R.M., Mendonça, N.M., 2017. Quality index of the surface water of Amazonian rivers in industrial areas in Pará, Brazil. Mar. Pollut. Bull. 123, 156–164. https://doi.org/10.1016/j.marpolbul.2017.09.002.
[50] Md. Galal Uddin, Stephen Nash, Agnieszka I. Olbert. (2021).A review of water quality index models and their use for assessing surface water quality. Journal homepage:
[51] Misaghi, F., Delgosha, F., Razzaghmanesh, M., Myers, B., (2017). Introducing a water quality index for assessing water for irrigation purposes: A case study of the Ghezel Ozan River. Sci. Total Environ. 589, 107–116. https://doi.org/10.1016/j. scitotenv.2017.02.226.
[52] N.M. Ogarekpe, C.C. Nnaji, O.J. Oyebode, M.G. Ekpenyong, O.I. Ofem , I.T. Tenebe ,A.D. Asitok (2023). Groundwater quality index and potential human health risk assessment of heavy metals in water: A case study of Calabar Metropolis, Nigeria. Environmental Nanotechnology, Monitoring and Management. https://www.sciencedirect.com/science/article/abs/pii/S2215153223000041
[53] H.I. Owamah M.I., Alfa, S.O. Oyebisi, P.C. Emenike, E.A. Otuaro, S. Gopikumar, Smita S. Kumar f (2021). Groundwater quality monitoring of a popular Niger Delta University town in Nigeria. Groundwater for sustainable development..https://www.sciencedirect.com/science/article/abs/pii/S2352801X20302046
[54] P. J. Puri, M.K.N. Yenkie, D.B. Rana and S.U. Meshram (2015). Application of water quality index (WQI) for the assessment of surface water quality (Ambazari Lake). Eur J Exp Biol, 5(2),37-52
[55] Purva Vohra, Ashok Kumar Kakodia, Shiv Lal and Kumud Tanwar (2023). Review of physicochemical characteristics of groundwater and their health effects. Journal of Mechanical and Construction Engineering, Vol. 03, Iss. 01, S. No. 004, pp. 1–8.
[56] Rabeiy, R. E. (2018). Assessment and modelling of groundwater quality using WQI and GIS in Upper Egypt area. Environmental science and pollution research, 25(31).
[57] Raul, B., & Whales, O. (2011). Microbial contamination of drinking water and disease outcomes in developing regions. Toxicology Journal, 198(3), 229–238.
[58] Roza R, Singh G (2010). Assessment of groundwater quality status by using water quality index method in Orissa, India. World Appl Sci. j. 9(12) 1392-1397.
[59] Rijswijk K (1981). Small community water supplies. IRT Technical paper series no. 18, Netherlands.
[60] Sánchez, E., Colmenarejo, M.F., Vicente, J., Rubio, A., García, M.G., Travieso, L., Borja, R., (2007). Use of the water quality index and dissolved oxygen deficit as simple indicators of watersheds' pollution. Ecol. Indic. 7, 315–328. https://doi.org/ 10.1016/j.ecolind.2006.02.005.
[61] Saffran, K., Environment, A., Cash, K., Canada, E. (2001). Canadian Water Quality Guidelines for the Protection of Aquatic Life CCME Water Quality Index 1. 0 User’s Manual. Quality 1–5.
[62] Sahu, P. and Sikdar, P. K. (2008). Hydrochemical framework of the aquifer in and around East Kolkata Wetlands, West Bengal, India. Environmental geology 55(4)
[63] Stambuk-Giljanovi´c, *2003). Comparison of Dalmatian Water Evaluation Indices. Water Environ. Res. 75, 388–405. https://doi.org/10.2175/106143003X141196.
[64] Sarkar, C., Abbasi, S.A. (2006). Qualidex - A new software for generating water quality indices. Environ. Monit. Assess. 119, 201–231. https://doi.org/10.1007/s10661-005- 9023-6.
[65] Sutadian, A.D., Muttil, N., Yilmaz, A.G., Perera, B.J.C. (2016). Development of river water quality indices—a review. Environ. Monit. Assess. 188, 1–29. https://doi.org/ 10.1007/s10661-015-5050-0. Sutadian, A.D., Muttil, N., Yilmaz,
[66] Swarna, L. P., Nageswara R. K. (2010). Assessment and spatial distribution of quality of groundwater in zone 11 and 11. Creator Visakhapatnam, India, using water quality index (WQI) and GIS. International Journal of Environ. Sci. 1(2):198-212.
[67] Tomas, D., ˇCurlin, M., Mari´c, A.S. (2017). Assessing the surface water status in Pannonian ecoregion by the water quality index model. Ecol. Indic. 79, 182–190. https://doi. org/10.1016/j.ecolind.2017.04.033.
[68] Tripathy, J. K. and Sahu K. C. (2005). Seasonal hydrochemistry of groundwater in the barrier spit system of the Chilika Lagoon, India. J Enivron Hydrol 13:1-(2010). Characterization and quality assessment of groundwater with special emphasis on irrigation utility; Thirumanimuttar sub-basin, Tamil Nadu, India. Arab Geosci. J.DOI 10 1007/s12517-010-0190-6.
[69] Uddin, M.G., Moniruzzaman, M., Khan, M. (2017). Evaluation of Groundwater Quality Using CCME Water Quality Index in the Rooppur Nuclear Power Plant Area, Ishwardi, Pabna. Bangladesh. Am. J. Environ. Prot. 5, 33–43. https://doi.org/ 10.12691/env-5-2-2.
[70] Uddin, M.G., Moniruzzaman, M., Quader, M.A., Hasan, M.A. (2018). Spatial variability in the distribution of trace metals in groundwater around the Rooppur nuclear power plant in Ishwardi, Bangladesh. Groundw. Sustain. Dev. https://doi.org/10.1016/j. gsd.2018.06.002.
[71] WHO (2011) Guideline for drinking water quality, WHO Chron. 4(38) 10Organisation4-108
[72] WHO (2017) Guideline for drinking water quality, 4th edn. World Health Organization, Geneva
[73] World Health Organization (WHO). (2008). Access to improved drinking water sources and improved sanitation. Retrieved August 17, 2025, fromwww.who.int.
How to cite this paper
@article{1716245,
author = {J. G. Egbe, N. M. Ogarekpe, O. E. Ogar},
title = {Development of Water Quality Index (WQI) Model for The Evaluation of Groundwater (Well) Status in Yakurr, South – South, Nigeria},
journal = {Iconic Research And Engineering Journals},
year = {2026},
volume = {9},
number = {10},
pages = {4190-4206},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1716245.pdf},
abstract = {This research assessed the condition of groundwater in the Yakurr Local Government Area of Cross River State, Nigeria, employing the Water Quality Index (WQI) approach. Water samples were obtained from 15 hand-dug wells located within three communities (Mkpani, Ekori, and Ugep) during both rainy and dry periods. A total of nineteen physical, chemical, and microbial indicators were examined, which include pH, turbidity, conductivity, TDS, TSS, chloride, nitrate, phosphate, hardness, sodium, calcium, magnesium, bicarbonate, dissolved oxygen, BOD5, iron, fluoride, and total coliform count. The weighted arithmetic index method was utilized to calculate the WQI. The findings indicated that WQI values varied between 117.1 and 811.4. Two wells were identified in the 'Poor' category (13.33%), four fell into the 'Very Poor' category (26.67%), and nine were marked as 'Unsuitable for Drinking' (60%). The WQI assessment indicated that Ugep was the most severely impacted area, whereas Ekori demonstrated comparatively better water quality. Elevated levels of iron, TCC, and phosphate significantly influenced the high WQI readings. The study concludes that numerous wells in Yakurr are not safe for direct use, highlighting the urgent need for treatment, enhanced sanitation, and ongoing monitoring to maintain public health safety.},
keywords = {Groundwater; GIS, Well, WQI, Pollution, Seasonal Variation},
month = {April},
doi = {https://doi.org/10.64388/IREV9I10-1716245}
}