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Tytuł artykułu

Effect of the agriculture on the quality of groundwater in the alluvial aquifer of the Tadjenanet area (eastern Algeria)

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The region of Tadjenanet is in eastern Algeria in the high plains, characterized by a varied age detritus Mio-Plio-Quaternary. Some geological formations can be an important source of groundwater (alluvial sand, shell limestone, gravel). Its location in semi-arid area involves evaporation pronounced even tilt the balance in a chronic deficit, excluding periods characterized by rainfall events. Agriculture in the study area is the first socio-economic activity and the largest consumer of water resources. It is therefore necessary to consider for effective water management. Indeed, the combination of hydrogeological and hydro chemical geological mapping, geophysics, harvested from field data and their interpretations can be an excellent tool for deciding the suitability of water for irrigation. The analysis of the physicochemical data shows an increase in the concentration of nitrates reaching 200 mg · l–1, as well as the analysis by the Richards SAR parameter shows that most groundwater samples are generally suitable for agricultural purposes with 33%, belong characterizing poor quality. Indeed, the groundwater in the region generally requires prior treatment before consumption and use depending on the type of crop. The assessment of the quality of the water in the region and its consequences on the soil and the types of crops has enabled the authorities concerned to manage the water supply adequately to preserve and protect this vital source for the future from any risk of contamination.
Rocznik
Tom
Strony
45--57
Opis fizyczny
Bibliogr. 27 poz., rys., tab.
Twórcy
  • University of Batna 2, Algeri, Algeria Earth Science and Univers Laboratory of Mobilization and Resources Management
autor
  • University of Setif 1, Algeria Earth Science, Laboratory of Applied Research in Engineering Geology
Bibliografia
  • Abdel M.A., Salman S.A., Seleem E.M., Zeid S.A.M. 2018. Water quality index of shallow groundwater and assessment for different usages in El-Obour City, Egypt.
  • Asadi E., Isazadeh M., Samadianfard S., Ramli M.F., Mosavi A., Nabipour N., Chau K.W. 2019. Groundwater quality assessment for sustainable drinking and irrigation. Sustainability, 12(1), 177.
  • Bensouilah S. 1995. Contribution to the hydrogeological study of Se’tif high plains through the upper valley of the river upstream of Wadi Rhumel Athmenia. Th. Magi. Univ. Constantine.
  • CGG. 1973. Geophysical Survey Area Chelghoum Laid, DHW Mila, Algeria.
  • Debieche T.H. 2002. Changes in Water Quality (Salinity, Nitrogen and Heavy Metals) Due to Salt Pollution, Agricultural and Industrial. Application to the lowlands of Seybouse NortEast of Algeria, Ph.D. thesis, U.F.R. Science and Technology, Univ. Franche-Comte.
  • Djebassi T., Fehdi Ch., Djebari H., Chehili D., Zerrouki H., Saadali B. 2020. Hydrogeochemical characterization of the Tebessa alluvial aquifer and the impact of Triassic saliferous formations of Djebissa and Belkefif mountains (North-East of Algeria). Int. J. Ecol. Dev., 35(3), 1–1.
  • Drever J.I. 1997. The geochemistry of natural waters. 3rd ed. New York, Prentice-Hall.
  • Elgallal M., Fletcher L., Evans B. 2016. Assessment of potential risks associated with chemicals in wastewater used for irrigation in arid and semiarid zones: A review. Agricultural Water Management, 177, 419–431.
  • Hildebrandt A., Guillamón M., Lacorte S., Tauler R., Barceló D. 2008. Impact of pesticides used in agriculture and vineyards to surface and groundwater quality (North Spain). Water Research, 42(13), 3315–3326.
  • Ismail A.H., Hassan G., Sarhan A.H. 2020. Hydrochemistry of shallow groundwater and its assessment for drinking and irrigation purposes in Tarmiah district, Baghdad governorate, Iraq. Groundw Sustain Dev 10:100300.
  • Issaadi A. 1981. Hydrogeological study of massive and GuerionFortars. Thesis, 3rd cycle. Univ. Haouari Boumedienne, Algiers.
  • Jasrotia A.S., Taloor A.K., Andotra U., Bhagat B.D. 2018. Geoinformatics based groundwater quality assessment for domestic and irrigation uses of the Western Doon valley, Uttarakhand, India. Groundwater for Sustainable Development, 6, 200–212.
  • Khedidja A. 2001. Study of the vulnerability of the lake limestone aquifer in the region of Bir El Arch, W. Setif. Magister thesis, Univ. Tebessa, Algeria.
  • Khedidja A., Boudoukha A. 2013. Risk assessment of agricultural pollution on groundwater quality in the high valley of Tadjenanet – Chelghoum Laid (Eastern Algeria). Science and Engineering. Desalination and water treatment, 51, January, 292– 301.
  • Macko S.A., Macko N.E., Ostrom 1994. Pollution studies using stable iso-topes. In: K. Lajtha, R. Michener (eds.). Stable Isotopes in Ecology, Blackwell, Oxford, 45–62.
  • Mandal S.K., Dutta S.K., Pramanik S., Kole R.K. 2019. Assessment of river water quality for agricultural irrigation. International Journal of Environmental Science and Technology, 16(1), 451–462.
  • Mebarkia A., Haouchine A., Boudoukha A., Nedjai R. 2017. Assessment of nutrient contamination in surface water, case study of Ain Zada dam (north-east of Algeria). Journal of Fundamental and Applied Sciences, 9(3), 1358–1377.
  • Piper A.M. 1944. A graphic procedure in geochemical interpretation of water analysis. Trans. Amer. Geophys. Union, 25(6), 914–928.
  • Richards L.A. 1954. Diagnosis and improvement of saline and alkali soils. Agric. Handbook 60, Washington D.C.
  • Rodier J. 1996. Analysis of water, waters, wastewater, sea water. 8th edition. Dunod, Paris.
  • Saadali B., Khedidja A., Mihoubi N., Ouddah A., Djebassi T., Kouba Y. 2020. Water quality assessment and organic pollution identification of Hammam-Grouz dam (Northeastern Algeria). Arab. J. Geosci., 13, 1091.
  • Saadali B., Zerrouki H., Drias T., Khedidja A., Haoues C., Belloula M. 2022. Hydrogeochemical assessment to characterize the water quality for agricultural use in Mexanna and Bougous dams in the province of El Tarf, Algeria. Euro-Mediterranean Journal for Environmental Integration, 7(1), 79–88.
  • Sridharan M., Senthil Nathan D. 2017. Groundwater quality assessment for domestic and agriculture purposes in Puducherry region. Applied Water Science, 7(7), 4037–4053.
  • Todd K. 1980. Groundwater hydrology. 2nd ed. New York, J. Wiley & Sons.
  • Vila J.M. 1980. Geological Map of the East of Algeria, Sheet No. N-0-Setif 3-4 in the 200-000th. Department of Geological Map of Algeria.
  • Wu J., Li P., Qian H., Fang Y. 2014. Assessment of soil salinization based on a low-cost method and its influencing factors in a semi-arid agricultural area, northwest China. Environmental Earth Sciences, 71(8), 3465–3475.
  • Zakaria N., Anornu G., Adomako D., Owusu-Nimo F., Gibrilla A. 2021. Evolution of groundwater hydro geochemistry and assessment of groundwater quality in the Anayari catchment. Groundwater for Sustainable Development, 12, 100489.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3965b5b9-9385-482d-99eb-25380c839d5c
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