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Comparative Study of the Physicochemical Quality of the Waters of the Méné River (Sassandra Watershed, Ivory Coast) in the Dry Season and in the Rainy Season

DOI: 10.4236/jep.2024.156042, PP. 738-746

Keywords: Méné, Physicochemical Parameters, River, Season, Water Quality

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Abstract:

The study carried out on the waters of the Méné River led to an overall assessment of its water quality during the dry season and the rainy season. The analysis focused on eight (8) water samples taken from the river during a period of dry season (January-February) and a period of rainy season (June and September). The various physicochemical parameters were measured according to Afnor standardized methods. The readings of temperature, turbidity, pH and conductivity made it possible to account for the disturbances occurring in water quality. A temporal variation correlated with the seasons (dry or rainy) is noted. Turbidity depends on the concentration of suspended solids (SS) in the water and drained particles and therefore on the seasons. Just like the temperature, the conductivity changes with the season. The waters of the Méné River are generally acidic. The results obtained show that there is a low level of pollution by chlorides, phosphates, nitrites and nitrates. A slight pollution of the waters of Méné in organic matter (chemical oxygen demand values are less than 25 mg?L1 during dry season and 32.33 ± 4.73 mg?L1 during rainy season) was observed. The concentrations of metallic trace elements such as iron, manganese and aluminum indicate significant pollution of these waters by these elements. Overall, the waters of the Méné River are of satisfactory quality because all the physicochemical parameters analyzed have values below standards during the dry season as well as during the rainy season with the exception of COD and a few metallic trace elements.

References

[1]  Youmbi, J.G.T., Feumba, R., Njitat, V.T., De Marsily, G. and Ekodeck, G.E. (2013) Pollution de l’eau souterraine et risques sanitaires à Yaoundé au Cameroun. Comptes RendusBiologies, 336, 310-316.
https://doi.org/10.1016/j.crvi.2013.04.013
[2]  Osuolale, O. and Okoh, A. (2017) Human Enteric Bacteria and Viruses in Five Wastewater Treatment Plants in the Eastern Cape, South Africa. Journal of Infection and Public Health, 10, 541-547.
https://doi.org/10.1016/j.jiph.2016.11.012
[3]  Merhabi, F., Amine, H. and Halwani, J. (2019) Evaluation de la qualité des eaux de surface de la rivière Kadicha. Journal Scientifique Libanais, 20, 10-34.
https://doi.org/10.22453/LSJ-020.1.010-034
[4]  Foto, M.S., Zebaze, T.S.H., Nyamsi T.N.L., Ajeagah, G.A. and Njiné, T. (2011) Évolution Spatiale de la Diversité des Peuplements de Macro invertébrés benthiques dans un cours d’eau anthropisé en milieu Tropical (Cameroun). European Journal of Scientific Research, 55, 291-300.
[5]  Ahoussi, K.E., Koffi, Y., Kouassi, A.M., Soro, G. and Biemi, J. (2013) Étude hydrochimique et microbiologique des eaux de source de l’ouest montagneux de la Côte d’Ivoire: Cas du village de Mangouin-Yrongouin (sous-préfecture de Biankouman). Journal of Applied Biosciences, 63, 4703-4719.
https://doi.org/10.4314/jab.v63i1.87245
[6]  Akilinon, G.V. (2021) Dynamique des apports en éléments nutritifs et bactéries fécales dans la zone estuarienne de la lagune Ebrié (Côte d’Ivoire) et risque d’eutrophisation. Master’s Thesis, Université Nangui Abrogoua.
[7]  Iltis, A. and Lévèque, C. (1982) Caractéristiques physico-chimiques des rivières de Côte d’Ivoire. Revue dHydrobiologie Tropicale, 15, 115-130.
[8]  Girard, G., Sircoulon, J. and Touchebeuf, P. (1971) Aperçu sur les régimes hydrologiques. In ORSTOM: Le milieu naturel de la Côte d’Ivoire. Mémoires ORSTOM, 113-155.
[9]  Akilinon, G.V. (2014) Evaluation de la qualité physico-chimique des eaux de la rivière Méné (Bassin versant du Sassandra, Côte d’Ivoire). Master’s Thesis, Université Nangui Abrogoua.
[10]  Rodier J., Legube, B. and Merlet, N. (2009) L’analyse de l’eau. 9è Edition, Dunod.
[11]  Ahoussi, K.E. (2008) Évaluation quantitative et qualitative des ressources en eau dans le Sud de la Côte d’Ivoire. Application de l’hydrochimie et des isotopes de l’environnement à l’étude des aquifères continus et discontinus de la région d’Abidjan-Agboville. Master’s Thesis, Université de Cocody-Abidjan.
[12]  Eblin, S.G., Sombo, A.P., Soro, G, Aka, N., Kambiré, O. and Soro, N. (2014) Hydrochimie des eaux de surface de la région d’Adiaké (sud-est côtier de la Côte d’Ivoire). Journal of Applied Biosciences, 75, 6259-6271.
https://doi.org/10.4314/jab.v75i1.10
[13]  Chapman, D. (1992) Water Quality Assessment: A Guide to the Use of Biota, Sediment and Water in Environmental Monitoring. CRC Press.
https://doi.org/10.4324/9780203476710
[14]  Ahonon, A. (2011) Evaluation de la qualité physico-chimique et bactériologique des eaux de surface dans les zones montagneuses du sud-ouest du Togo: cas du canton de Lavié. Master’s Thesis, Université de Lomé.
[15]  Beau, J.-F. (1998) L’environnement. Repères pratiques. Nathan, 160 p.

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