Geostatistical Modelling of Groundwater Quality at Rumuola Community, Port Harcourt, Nigeria

Victor E. Amah

Department of Civil and Environmental Engineering, Faculty of Engineering, University of Port Harcourt, P.M.B. 5323, Choba, East-West Road, Port Harcourt, Nigeria.

Fortune A. Agu *

Centre for Occupational Health Safety and Environment, School of Graduate Studies, University of Port Harcourt, P.M.B. 5323, Choba, East-West Road, Port Harcourt, Nigeria.

*Author to whom correspondence should be addressed.


Abstract

The groundwater quality of Rumuola community of Rivers State, Nigeria was investigated. This study was done to determine the pollution potential of a solid waste open dump in a borrow pit in the community. The leachate pollution index was calculated for the borrow pit at the centre of the community using weighted additive leachate pollution index. The result showed that the LPI value was 5.31 and has low pollution potential. It was discovered that the groundwater in the entire community was acidic with pH levels ranging from 3.6 to 4.2, which is below NSDWQ’s permissible range of 6.5-8.5. Nickel and arsenic also showed concentrations that were above permissible limits with nickel values averaging 0.033 mg/l which is slightly above the limit of 0.02 mg/l. Arsenic had concentrations that ranged from 0.16 to 1.57 mg/l which is above permissible limits of 0.01 mg/l. WQI was determined using weighted arithmetic water quality index analysis. As a result of the high concentrations of arsenic, the WQI values were very high with values ranging from 144 to 1367 and this shows that the water in the study area is unsuitable for drinking. In modelling the water quality index of Rumuola community, geostatistical methods were applied. Ordinary kriging, Empirical Bayesian kriging (EBK), inverse distance weighting (IDW) and cokriging interpolations methods were used   to produce surface maps showing the distribution of variables using ARCGIS software. The best interpolators were: EBK for pH, TDS, Sulphate and nitrate; Ordinary kriging for Nickel and Hardness; IDW for Iron and arsenic; Cokriging for WQI.

Keywords: Water quality index, geostatistics, kriging, groundwater pollution, groundwater modeling, geostatistical modeling.


How to Cite

Amah, Victor E., and Fortune A. Agu. 2020. “Geostatistical Modelling of Groundwater Quality at Rumuola Community, Port Harcourt, Nigeria”. Asian Journal of Environment & Ecology 12 (1):37-47. https://doi.org/10.9734/ajee/2020/v12i130152.

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