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Wastewater reuse and mapping of irrigable soils: Case of Sidi Bel Abbes City, Algeria

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This work aims to evaluate the treated wastewater from the activated sludge treatment plant in the City of Sidi Bel Abbes (North-Western Algeria) which is required for reuse in irrigation. The control of irrigated areas downstream is done based on a pedological study. Physico-chemical analysis such as (pH, BOD5, COD and SS) indicate results in Algerian and international standards required by the WHO. The Sodium Adsorption Ratio and Electrical Conductivity values of the treated wastewater belong to the C3-S1 class. The treated wastewater has a fairly good microbiological quality that meets Algerian standards. The helminth eggs are practically absent. The concentrations of heavy metals are much lower than the limits prescribed in the Algerian decrees. Therefore, the overall processing plant efficiency is satisfactory and has the characteristics of a good treated water quality for reuse in the field of irrigation while protecting the environment. The pedological study of the soil samples shows that the most dominant fraction is undeveloped calcimagnetic. The planned irrigation plain covers an area of about two thousand hectares. Depending on the crops to irrigate; the development and nature of the necessary or recommended improvements, the proposed irrigation perimeter could be classified into five categories in which only three categories are irrigable. Water projects have been proposed to ensure the irrigation of three subdivided sectors.
Wydawca
Rocznik
Tom
Strony
153--161
Opis fizyczny
Bibliogr. 31 poz., rys., tab.
Twórcy
  • University Mustapha Stambouli of Mascara, Research Laboratory on Biological Systems and Geomatics, Mascara, Algeria
  • University Mustapha Stambouli of Mascara, Research Laboratory on Biological Systems and Geomatics, Mascara, Algeria
  • University Djillali Liabes of Sidi Bel Abbes, BP 89, Sidi Bel Abbes, 22000 Algeria
Bibliografia
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  • ABOUELOUAFA M., BERRICHI A., EL HALOUANI H., KHARBOUA M. 2002. Effets de la réutilisation des eaux usées brutes de la ville d’Oujda sur quelques paramètres agronomiques et bactériologiques [Effects of the reuse of raw wastewater from the city of Oujda on some agronomic and bacteriological parameters]. Actes de l’Institut Agronomique et Vétérinaire Hassan II. (Maroc). Vol. 22 (3) p. 151–160.
  • Arrítè interministèriel du 8 Safar 1433 correspondant au 2 janvier 2012 Fixant les spécifications des eaux usées épurées utilisées à des fins d'irrigation [Interministerial decree of 8 Safar 1433 corresponding to January 2, 2012 Fixing the specifications of purified wastewater used for irrigation purposes]. Journal officiel de la République algérienne nº 41, 15 juillet 2012 p. 17–20.
  • BEMMOUSSAT A., ADJIM M., BENSAOULA F. 2019. Irrigation with treated wastewaters and the protection of Hennaya groundwater – Tlemcen, Algeria. Journal of Water and Land Development. No. 43 p. 19–27. DOI 10.2478/jwld-2019-0059.
  • BLUMENTHAL J., MARA D., PEASEY A., RUIZ-PALACIOS G., STOTT R. 2000. Guidelines for the microbiological quality of treated wastewater used in agriculture: recommendations for revising WHO guidelines. Bull World Health Organ. 78(9) p. 1104–1116.
  • CAMACHO-CRISTÓBAL J.J., REXACH J., GONZÁLEZ-FONTES A. 2008. Boron in plants: Deficiency and toxicity. Journal of Integrative Plant Biology. Vol. 50. Iss. 10 p. 1247–1255. DOI 10.1111/j.1744-7909.2008.00742.x
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  • FARAOUN F., BENABDELI K. 2010. Cartographie et caractérisation physico-chimique des sols de la plaine de Sidi Bel Abbés (Algérie occidentale) [Mapping and physicochemical characterization of soils in the plain of Sidi Bel Abbés (Western Algeria)]. Afrique Science. Vol. 6. No. 3 p. 18–26.
  • FAO 2003. Guidelines for the interpretation of water quality for irrigation. Food and Agriculture Organization
  • GATTA G., LIBUTTI A., BENEDUCE L., GAGLIARDI A., DISCIGLIO G., LONIGRO A., TARANTINO E. 2016. Reuse of treated municipal wastewater for globe artichoke irrigation: Assessment of effects on morpho-quantitative parameters and microbial safety of yield. Scientia Horticulturae. Vol. 213 p. 55–65. DOI 10.1016/j.scienta.2016.10.011.
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  • KORICHI K., HAZZAB A., ATALLAH M. 2016. Flash floods risk analysis in ephemeral streams: A case study on Wadi Mekerra (Northwestern Algeria). Arabian Journal of Geosciences. Vol. 9. Iss. 589 p. 1–11.
  • LEGROS J.P. 1996. Cartographies des sols : de l'analyse spatiale à la gestion des territoires [Soil mapping: from spatial analysis to land management]. Couverture. PPUR presses polytechniques pp. 321 (in french).
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  • PIGNATA C., FEA E., ROVERE R., DEGAN R., LORENZI E., DE CEGLIA M., SCHILIRÒ T., GILLI G. 2012. Chlorination in a wastewater treatment plant: Acute toxicity effects of the ef-fluent and of the recipient water body. Environmental Monitoring and Assessment. Vol. 184. Iss. 4 p. 2091–2103. DOI 10.1007/s10661-011-2102-y.
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  • SOLTNER D. 2003. Les bases de la production végétale. T. 1. Le sol et son amélioration [The basics of crop production. Vol. 1. The soil and its improvement]. Sciences et Techniques Agricoles. ISBN 9782907710008. pp. 464.
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Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c8572827-e6d5-4dc9-8593-62b2d7cfd6d8
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