Hydrochemical Characterization and Organic Pollution Assessment of an Urban River Catchment under Anthropogenic Pressure: The Case of the Téguéré River (Korhogo, Côte d'Ivoire)

Kpan Oulai Jean-Gautier *

Département des Géosciences, Université Péléféro GON COULIBALY, BP 1328 Korhogo, Côte d’Ivoire.

TOE-BI Kahou Katel Kizito

Département des Géosciences, Université Péléféro GON COULIBALY, BP 1328 Korhogo, Côte d’Ivoire.

Tohouri Priva

École Normale Supérieure d’Abidjan, 22 BP 582 Abidjan 22, Côte d’Ivoire.

Ogbre Sandrine Ida Ursula

Département des Géosciences, Université Péléféro GON COULIBALY, BP 1328 Korhogo, Côte d’Ivoire.

Gnamba Franck Maxime

Département des Géosciences, Université Péléféro GON COULIBALY, BP 1328 Korhogo, Côte d’Ivoire.

Oga Yéi Marie Solange

Laboratoire des Sciences et Techniques de l’Eau et de l’Environnement (LSTEE), Université Félix Houphouët-Boigny, 22 BP 582 Abidjan 22, Côte d’Ivoire.

*Author to whom correspondence should be addressed.


Abstract

Rapid and unplanned urbanisation in Sub-Saharan African cities exerts severe pressure on urban aquatic ecosystems due to the lack of adequate sanitation systems. This study evaluates the hydrochemical quality and organic pollution levels of surface water in the Téguéré River catchment (Korhogo, northern Côte d’Ivoire) to assess its suitability for human consumption and agricultural irrigation. Physical and biochemical parameters were analysed across ten sampling points from upstream to downstream. Hydrochemical facies were identified using Piper diagrams, while organic biodegradability and irrigation suitability were determined via COD/BOD₅ ratios and the Sodium Adsorption Ratio (SAR), respectively. The results show high turbidity (up to 322 NTU) and critical concentrations of NH4+ (0.2–2.09 mg/L), total Fe (0.3–12.08 mg/L), and Mn2+ (0.19–8.05 mg/L), all exceeding WHO drinking water guidelines. COD (6.9–52 mg/L) and BOD5 (3.2–24.4 mg/L) levels, paired with a constant COD/BOD ratio of 2.1, demonstrate a moderately biodegradable organic load of domestic origin. Three dominant hydrochemical facies were classified: Ca-Mg-HCO3 (80%), Ca-Cl (10%), and Na-K-Cl (10%). Crucially, while unfit for drinking, the water remains suitable for irrigation, plotting within the low-to-medium salinity and low sodium hazard zones (C1S1 and C2S1 classes) with a SAR < 1. Water quality significantly deteriorates downstream due to untreated urban runoff and water treatment plant effluents. The immediate implementation of tailored filtration systems and continuous monitoring is urgently required to safeguard public health and local ecosystems.

Keywords: Water quality, organic pollution, hydrochemical facies, piper diagram, sodium adsorption ratio, urban river, anthropogenic pressure, irrigation suitability, Téguéré River


How to Cite

Jean-Gautier, Kpan Oulai, TOE-BI Kahou Katel Kizito, Tohouri Priva, Ogbre Sandrine Ida Ursula, Gnamba Franck Maxime, and Oga Yéi Marie Solange. 2026. “Hydrochemical Characterization and Organic Pollution Assessment of an Urban River Catchment under Anthropogenic Pressure: The Case of the Téguéré River (Korhogo, Côte d’Ivoire)”. Asian Journal of Chemical Sciences 16 (5):147-58. https://doi.org/10.9734/ajocs/2026/v16i5477.

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