全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

Assessment of Groundwater Physico-Chemical Quality in the Ouémé Delta (Southern-Benin)

DOI: 10.4236/jep.2024.153017, PP. 298-317

Keywords: Benin, Ouémé Delta, Groundwater, Physico-Chemical Quality, Consumption, Irrigation

Full-Text   Cite this paper   Add to My Lib

Abstract:

Groundwater resources are the main sources of water used to supply drinking water to the population of the Ouémé Delta via the Continental Terminal aquifer. Urbanization, population growth, and agricultural and industrial activities have resulted in a deterioration in the quality of these resources. To assess the quality of the delta’s groundwater and its suitability for human consumption and irrigation, a total of fourteen (14) physico-chemical parameters were analyzed in some forty existing water points between September 2020 and March 2021, using standard water analysis techniques. The values obtained were compared with the potability standards recommended by the World Health Organization (WHO) and the Republic of Benin and were subjected to statistical analysis (principal component analysis (PCA)). In addition, methods for determining the suitability of water for irrigation were used. The results showed that the waters are acidic to slightly neutral and influenced by ambient temperature. In addition, the waters are moderately mineralized, with conductivities (24 - 1205 μS/cm) in line with WHO standards. A comparison of the analytical results of the WHO (2017) and Benin (2001) standards indicates that the majority of the waters studied are of good quality for all the chemical parameters considered. Nevertheless, some samples show levels of nitrates (21%), potassium (14% to 16%), calcium (13%), ammonium (12%), nitrites (8%) and bicarbonates (10%) over their respective standards. The Wilcox and Riverside diagrams indicate that the majority of waters (90%) have excellent suitability for irrigation and no negative effect on soil fertilization.

References

[1]  Global Water Partnership West Africa (GWP-WA) (2015) Rapport final de consultation nationale sur l’eau et securite alimentaire au Bénin.
[2]  INSAE (2016) Principaux indicateurs socio-démographiques et économiques du département du Littoral.
[3]  Yèhouénou, E. (2005) Les résidus de pesticides chimiques de synthèse dans les eaux, les sédiments et les espèces aquatiques du bassin versant du fleuve Ouémé et du lac Nokoué. Master’s Thesis, Université d′Abomey-Calavi, Bénin.
[4]  Roy L. (2002) Les impacts environnementaux de l’agriculture sur le Saint-Laurent. Le Naturaliste canadien, 126, 67-77.
[5]  Hounton, C.C. (2011) Dynamique de l’occupation des terres dans la Commune de Pobè et essai de modélisation. Master's Thesis, CIPMA-Chaire UNESCO, Cotonou.
[6]  Igué, A.M., Worou, R., Houndagba, C.J., Gaiser, T. and Stahr, K. (2007) Dynamic of Land Use/Cover in the Protected Forest of Toui-Kilibo in the Collines Department (Republic of Benin). Proceedings of the 4th International Conference of the African Soil Science Society, Accra Ghana, 7-13 January 2007, 8p.
[7]  Lalèyè, P., Chikou, A., Gnohossou, P., Vandewalle, P., Philippart, J.C. and Teugels, G.G. (2006) Studies on the Biology of Two Species of CATFISH SYNODONTIS SCHALL and Synodontis Nigrita (Ostariophysi: Mochokidae) from the Ouémé River, Bénin. Belgian Journal of Zoology, 136, 193-201.
[8]  Hounton, C.C. (2017) Evaluation des changements actuels d’occupation et d’utilisation des terres par télédétection de la Basse Vallée de l’Ouémé en 1986, 2002 et 2015. Ph.D. Thesis, Université d’Abomey-Calavi, Bénin.
[9]  Alassane, A. (2018) Apports des outils géochimiques et isotopiques pour l’amélioration des connaissances sur le fonctionnement du système aquifère du Continental Terminal dans le bassin sédimentaire côtier du Bénin. Master’s Thesis, Université Cheick Anta Diop, Dakar.
[10]  Hounguè, R., Lawin, A.E., Moumouni, S. and Afouda, A.A. (2019) Change in Climate Extremes and Pan Evaporation Influencing Factors over Ouémé Delta in Bénin. Climate, 7, Article 2.
https://doi.org/10.3390/cli7010002
[11]  Le Barbé, L., Ale, G., Millet, B., Borel, Y. and Gualde, R. (1993). Les ressources en eaux superficielles de la République du Bénin. ORSTOM Editions, Paris.
[12]  Alassane, A., Trabelsi, R., Dovonon, L.F., Odeloui, D.J., Boukari, M., Zouari, K. and Mama, D. (2015) Chemical Evolution of the Continental Terminal Shallow Aquifer in the South of Coastal Sedimentary Basin of Benin (West-Africa) Using Multivariate Factor Analysis. Journal of Water Resource and Protection, 7, 496-515.
https://doi.org/10.4236/jwarp.2015.76040
[13]  Dray, M., Giachello, L., Lazzarotto, V., Mancini, M., Roman, E. and Zuppi, G.M. (1989) Etude isotopique de l’aquifère crétacé du bassin côtier béninois. Hydrogéologie, 3, 167-177.
[14]  Kpegli, K.A.R., Alassane, A., van der Zee, S.E.A.T.M., Boukari, M. and Mama, D. (2018) Development of a Conceptual Groundwater Flow Model Using a Combined Hydrogeological, Hydrochemical, and Isotopic Approach: A Case Study from Southern Benin. Journal of Hydrology: Regional Studie, 18, 50-67.
https://doi.org/10.1016/j.ejrh.2018.06.002
[15]  Slanski, M. (1968) Contribution à l’étude géologique du bassin sédimentaire côtier du Dahomey et du Togo. Master’s Thesis, Université de Nancy, Nancy.
[16]  IRB (1987) Etude de cartographie géologique et prospection minérale de reconnaissance au Sud du 9ème parallèle. Rapport, Istituto Recerche Breda, FED-OBEMINES.
[17]  Azonnakpo, O.V., Azonnakpo, J.P., Agbossou, E.K. and Aminou, T. (2020) Inventaire des Activités Menées dans le Delta de L’Oueme et Sources de Pollution de l’Eau. International Journal of Progressive Sciences and Technologies, 20, 376-390.
[18]  Zakir, H.M., Sharmin, S., Akter, A. and Rahman, M.S. (2020) Assessment of Health Risk of Heavy Metals and Water Quality Indices for Irrigation and Drinking Suitability of Waters: A Case Study of Jamalpur Sadar Area, Bangladesh. Environmental Advances, 2, Article ID: 100005.
https://doi.org/10.1016/j.envadv.2020.100005
[19]  Sanou A., Méité, N., Kouyaté, A., Irankunda, E., Kouamé, A.N., Koffi, A.E., Bohoussou, K.J.P. and Kouakou, L.P.M.S. (2022) Assessing Levels and Health Risks of Fluoride and Heavy Metal Contamination in Drinking Water. Journal of Geoscience and Environment Protection, 10, 15-34.
https://doi.org/10.4236/gep.2022.1011002
[20]  Souleymane, I.M.S., Abdou Babaye, M.S., Alhassane, I. and Bouréima, O. (2020) Caractérisations hydrogéochimiques et qualités des eaux de la nappe phréatique du haut bassin versant de la Korama, commune de Droum/région de Zinder (Niger /Afrique de l’Ouest). International Journal of Biological and Chemical Sciences, 14, 1862-1877.
https://doi.org/10.4314/ijbcs.v14i5.29
[21]  Richards, L. (1954) Diagnosis and Improvement of Saline and Alkali Soils. Soil Science, 78, 154.
https://doi.org/10.1097/00010694-195408000-00012
[22]  Méhounou, J.P., Jossé, R.G., Dossou-Yovo, P., Sènou, S.F. and Toklo, R.M. (2016) Caractérisation physico-chimique et microbiologique des eaux souterraines et superficielles dans la zone de production cotonnière d’Aplahoué. Journal of Applied Biosciences, 103, 9841-9853.
[23]  Kumar, P.J.S. and James, E.J. (2019) Geostatistical and Geochemical Model-Assisted Hydrogeochemical Pattern Recognition along the Groundwater Flow Paths in Coimbatore District, South India. Environment Development and Sustainability, 21, 369-384.
https://link.springer.com/article/10.1007/s10668-017-0043-5
https://doi.org/10.1007/s10668-017-0043-5
[24]  Egbueri, J.C., Ezugwu, C.K., Unigwe, C.O., Onwuka, O.S., Onyemesili, O.C. and Mgbenu, C.N. (2020) Multidimensional Analysis of the Contamination Status, Corrosivity and Hydrogeochemistry of Groundwater from Parts of the Anambra Basin, Nigeria. Analytical Letters, 54, 2126-2156.
https://doi.org/10.1080/00032719.2020.1843049
[25]  Gaikwad, S., Gaikwad, S., Dhananjay, M., Wagh, V., Kandekar, A. and Kadam, A. (2019) Geochemical Mobility of Ions in Groundwater from the Tropical Western Coast of Maharashtra, India: Implication to Groundwater Quality. Environment, Development, and Sustainability, 22, 2591-2624.
https://doi.org/10.1007/s10668-019-00312-9
[26]  World Health Organization (WHO) (2017) Guidelines for Drinking Water Quality. 4th Edition, Incorporating the 1st Addendum.
https://www.who.int/publications/i/item/9789241549950
[27]  Keller, E.A. (2011) Environmental Geology. 9th Edition, Pearson Education, New Jersey.
[28]  Egbueri, J.C. (2019) Water Quality Appraisal of Selected Farm Provinces Using Integrated Hydrogeochemical, Multivariate Statistical, and Microbiological Techniques. Modeling Earth Systems and Environment, 5, 997-1013.
https://doi.org/10.1007/s40808-019-00585-z
[29]  Adjiri, O.A., Koné, B., Aka, N., Djabakaté, I. and Dibi B. (2019) Caractérisation physico-chimique et source de la minéralisation des eaux souterraines des départements de Daloa et Zoukougbeu. International Journal of Biological and Chemical Science, 13, 2388-2401.
https://doi.org/10.4314/ijbcs.v13i4.40
[30]  Kouakou, L.P.M.S., Kouyaté, A., Sanou, A., Koffi, A.E., Tigori, M.A., Meite, N., Bohoussou, K.J.P. and Dibi, B. (2022) Evaluation of the Physico-Chemical Quality of Drinking Water in the City of Daloa (Mid-West of Côte d’Ivoire)—Effects on Human Health. Journal of Health and Environmental Research, 8, 186-196.
[31]  Kouyaté, A., Konan, K.S., Tigori, M.A., Sanou, A., Kéita, L., Dongui, B.K., Niamien, P.M., Trokourey, A. and Dibi, B. (2021) Assessment of the Chemical Quality of a Water Resource in Daloa City, Central-Western Côte d’Ivoire. Journal of Materials and Environmental Science, 12, 373-383.
[32]  Udhayakumar, R., Manivannan, P., Raghu, K. and Vaideki, S. (2016) Assessment of Physico-Chemical Characteristics of Water in Tamilnadu. Ecotoxicology and Environmental Safety, 134, 474-477.
https://doi.org/10.1016/j.ecoenv.2016.07.014
[33]  Li, P. and Wu, J. (2019) Drinking Water Quality and Public Health. Exposure and Health, 11, 73-79.
https://doi.org/10.1007/s12403-019-00299-8
[34]  Weatherspoon, D. (2017) High Potassium.
https://www.healthline.com/health/high-potassium-hyperkalemia
[35]  Penant, P. (2016) Caractérisation des sources de nitrates dans les aquifères cristallins du centre Bénin.
https://matheo.uliege.be/bitstream/2268.2/1650/1/PPENANT_m%C3%A9moire_FINAL.pdf
[36]  Sehlaoui, H., Hassikou, R., Dakak, H., Zouahri, A., El Hasini, S., Iaaich, H., Ghanimi, A. and Douaik, A. (2022) Nitrate Contamination and Associated Health Risks of the Benslimane Groundwater, Morocco. Environmental Geochemistry and Health, 44, 4343-4358.
https://doi.org/10.1007/s10653-021-01186-5
[37]  Mahamat, S.A.M., Maoudombaye, T., Abdelsalam, T.N. and Loukhman, B. (2015) évaluation de la qualité physicochimique des eaux d’adduction publique de la Société Tchadienne des Eaux à N’djamena au Tchad. Journal of Applied Biosciences, 95, 8973-8980.
https://doi.org/10.4314/jab.v95i1.7
[38]  Chung, S.Y., Venkatramanan, S., Kim, T.H., Kim, D.S. and Ramkumar, T. (2015) Influence of Hydrogeochemical Processes and Assessment of Suitability for Groundwater Uses in Busan City, Korea. Environment, Development and Sustainability, 17, 423-441.
https://doi.org/10.1007/s10668-014-9552-7

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133