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The study of the fertilising power of urban sludge from the Dar Gueddari Wastewater Treatment Plant : Case of maize (Zea mays)

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EN
Abstrakty
EN
The objective of this study is to recover sludge from the Dar Gueddari sewage treatment plant and use it in the cultivation of corn in the open field on clay soil. To do this, four doses were tested against two types of controls: a control without addition of sludge and another with the addition of nitrogen-based fertilisers (200 kg N, 100 kg P and 100 kg K). The short-term effects indicated that the application of the sludge had a beneficial effect on the fertilising qualities of the soil and therefore on the crop yield. The monitoring of the agronomic parameters of the maize plant showed that the growths and the yields varied according to doses of the sludge. In grain yield, the difference between plot E4 and E0 was around 3.3 Mg∙ha-1. In addition, the plots treated with large sludge doses experienced improvements in total nitrogen and organic matter. During the second season, the results obtained showed decrease in nutrients (nitrogen and phosphorus). It emerged from the C:N ratio which was <8. This indicated a good mineralisation of the organic matter (OM) which was average of 2.48 ±0.04% and 2.5 ±0.01%, respectively in the E4 and E5 treatments. In addition, the amounts of N, P and Ca in dry matter (DM) increased with increasing the dose of sludge. During the 2017 season, the highest values were detected in plot E5 with averages of 1.6% in N and 0.53% in P.
Wydawca
Rocznik
Tom
Strony
37--44
Opis fizyczny
Bibliogr. 27 poz., tab., wykr.
Twórcy
autor
  • Ibn Tofail University, Faculty of Sciences, Department of Chemistry, Laboratory of Materials, Electrochemistry and Environment, University campus, B.P. 242, 14000 Kenitra, Morocco
autor
  • Ibn Tofail University, Faculty of Sciences, Department of Chemistry, Laboratory of Materials, Electrochemistry and Environment, University campus, B.P. 242, 14000 Kenitra, Morocco
  • Ibn Tofail University, Faculty of Sciences, Department of Chemistry, Laboratory of Materials, Electrochemistry and Environment, University campus, B.P. 242, 14000 Kenitra, Morocco
  • Ibn Tofail University, Faculty of Sciences, Department of Chemistry, Laboratory of Materials, Electrochemistry and Environment, University campus, B.P. 242, 14000 Kenitra, Morocco
  • Ibn Tofail University, Faculty of Sciences, Department of Chemistry, Laboratory of Materials, Electrochemistry and Environment, University campus, B.P. 242, 14000 Kenitra, Morocco
  • Ibn Tofail University, Faculty of Sciences, Department of Chemistry, Laboratory of Materials, Electrochemistry and Environment, University campus, B.P. 242, 14000 Kenitra, Morocco
Bibliografia
  • Arrêté conjoint du ministre de l’équipement et du ministre chargé de l’aménagement du territoire, de l’urbanisme, de l’habitat et de l’environnement n° 1276-01 du 10 chaabane 1423 (17 octobre 2002) portant fixation des normes de qualité des eaux destinées à l’irrigation [Joint order of the Minister of Equipment and the Minister responsible for regional planning, town planning, housing and the environment No 1276-01 of 10 chaabane 1423 (October 17, 2002) establishing the water quality standards for irrigation] [online]. [Access 20.03.2020]. Available at: https://www.eau-tensift.net/fileadmin/user_files/pdf/reglementation/ControleQualiteEau/Arrete1276_01NormeQualitepourIrrigation.pdf
  • ASHEKUZZAMAN S.M., FORRESTAL P., RICHARDS K., FENTON O. 2019. Dairy industry derived wastewater treatment sludge: Generation, type and characterization of nutrients and metals for agricultural reuse. Journal of Cleaner Production. Vol. 230 p. 1266–1275. DOI 10.1016/j.jclepro.2019.05.025.
  • AYERS R.S., WESTCOT D.W. 1985. Water quality for agriculture. FAO Irrigation and Drainage Paper. No. 29. Rome. FAO. ISBN 92-5-102263-1 pp. 12 + 174.
  • BOUDJABI S., KRIBAA M., CHENCHOUNI H. 2019. Sewage sludge fertilization alleviates drought stress and improves physiological adaptation and yield performances in durum wheat (Triticum durum): A double-edged sword. Journal of King Saud University – Science. Vol. 31(3) p. 336–344. DOI 10.1016/j.jksus.2017.12.012.
  • BREDA C.C., BORTOLANZA SOARES M., RIMOLDI TAVANTI R.F., GOMES VIANA D., FREDDI O., PIEDADE A.R., MAHL D., TRABALLI R.C., GUERRINI I.A. 2020. Successive sewage sludge fertilization: Recycling for sustainable agriculture. Waste Management. Vol. 109 p. 38–50. DOI 10.1016/j.wasman.2020.04.045.
  • CEAEQ 2010. Cahier 5 – Échantillonnage des sols: Guide d’échantillonnage à des fins d’analyses environnementales [Soil sampling: Sampling guide for environmental testing]. Québec City. Centre d’expertise en analyse environnementale du Québe pp. 66.
  • CHAUSSOD R. 1981. Valeur fertilisante azotee des boues residuaires [Nitogen fertilizer value of residual sludge]. In: Characterization, treatment and use of sewage sludge. Eds. P. L’Hermite, H. Ott. Dordrecht. Springer p. 449–465. DOI 10.1007/978-94-009-8506-3_44.
  • DELERIS S. 2001. Réduction de la production de boue lors du traitement des eaux résiduaires urbaines : analyse du traitement combiné : ozonation et traitement biologique [Reduction of sludge production during urban wastewater treatment: Analysis of combined treatment: ozonation and biological treatment] [online]. PhD Thesis. Toulouse. INSA. [Access 16.02.2021]. Available at: https://www.theses.fr/2001ISAT0038
  • DELGADO ARROYO M.M. et al. 2002. Sewage sludge compost fertilizer effect on maize yield and soil heavy metal concentration. Revista Internacional de Contaminación Ambiental. Vol. 18(3) p. 147–150.
  • FAO 2003. L’irrigation avec des eaux usees traitees: Manuel d’utilisation [Irrigation with treated wastewater]. Bureau Régional pour le Proche-orient et Bureau sous-régional pour l’Afrique du Nord pp. 73.
  • GARZA H.N. 1984. L’analyse des composantes du rendement des maïs. Application à l’étude de la variabilité du rendement dans une petite région [Analysis of the components of maize yield. Application to the study of yield variability in a small region] [online]. PhD Thesis. Paris. Institut National Agronomique Paris Grignon. [Access 18.02.2021]. Available at: https://hal.inrae.fr/tel-02856561
  • GOBAT J.-M., ARAGNO M., MATTHEY W. 2010. Le sol vivant: Bases de pédologie, biologie des sols [The living soil: Basics of pedology, and soil biology]. Lausanne. PPUR. ISBN 978-2880747183 pp. 844.
  • GONZALEZ-PRIETO S.J., CARBALLAS M., CARBALLAS T. 1991. Mineralization of a nitrogen-bearing organic substrate model 14 C, 15 N-glycine in two acid soils. Soil Biology and Biochemistry. Vol. 23(1) p. 53–63. DOI 10.1016/0038-0717(91)90162-D.
  • JOCIĆ B., SARIĆ M.R. 1983. Efficiency of nitrogen, phosphorus, and potassium use by corn, sunflower, and sugar beet for the synthesis of organic matter. Plant and Soil. Vol. 72(2) p. 219–223. DOI 10.1007/BF02181960.
  • KLEIN L. 1981. La politique de l’environnement des Communautes Europeennes et la valorisation des dechets en agriculture [The environmental policy of the European Communities and the recovery of waste in agriculture]. In: Characterization, treatment and use of sewage sludge. Eds. P. L’Hermite, H. Ott. Dordrecht. Springer p. 3–10. DOI 10.1007/978-94-009-8506-3_1.
  • LAU C.H.-F., LI B., ZHANG T., TIEN Y.-C., SCOTT A., MURRAY R., SABOURIN L., LAPEN D.R., DUENK P., TOPP E. 2017. Impact of pre-application treatment on municipal sludge composition, soil dynamics of antibiotic resistance genes, and abundance of antibiotic-resistance genes on vegetables at harvest. Science of The Total Environment. Vol. 587–588 p. 214–222. DOI 10.1016/j.scitotenv.2017.02.123.
  • MOHAMMAD M.J., ATHAMNEH B.M. 2004. Changes in soil fertility and plant uptake of nutrients and heavy metals in response to sewage sludge application to calcareous soils. Journal of Agronomy. Vol. 3(3) p. 229–236.
  • MORETTI B., BERTORA C., GRIGNANI C., LERDA C., CELI L., SACCO D. 2020. Conversion from mineral fertilisation to MSW compost use: Nitrogen fertiliser value in continuous maize and test on crop rotation. Science of The Total Environment. Vol. 705, 135308. DOI 10.1016/j.scitotenv.2019.135308.
  • NJIMAT S., ELFETTAHI F., GRIOU H., EL BROUZI M.Y., ABOULOUAFA M., IBN AHMED S. 2021 Impact of raw and purified wastewater reuse from the Dar El-Gueddari treatment plant on the soil. Journal of Water and Land Development. No. 49 p. 121–128. DOI 10.24425/JWLD.2021.137104.
  • NJIMAT S., GRIOU H., DOUBI M., ABOULOUAFA M., IBN AHMED S. 2019. Fertilizing power study of wastewater from Dar El Gueddari WWTP grain corn case. Indian Journal of Environmental Protection. Vol. 39(9) p. 839–843.
  • ONEP 2003. Prélèvement, conditionnement et stockage des échantillons d’eau : techniques utilisées à DLQ – documents internę [Collection, packaging and storage of water samples: Techniques used at DLQ – internal documents]. Casablanca, Morocco. Office national de l’Eau potable.
  • PLÉNET D. 1995. Fonctionnement des cultures de maïs sous contrainte azotée : détermination et application d’un indice de nutrition [Functioning of maize crops uder nitrogen stress: Determination and application of nutrition index] [online]. PhD Thesis. Institut National Polytechnique de Lorraine. [Access 6.11.2021]. Available at: https://hal.univ-lorraine.fr/tel-01776468.
  • RICHARD M., PRADEL M. 2014. Les filières de traitement et de valorisation des boues d’épuration en France. Rapport d’enquête [Treatment and recovery channels for sewage sludge in France. Investigation report]. Irstea pp. 47.
  • RICHNER W., FLISCH R., SINAJ S., CHARLES R. 2010. Détermination des normes de fumure azotée pour les grandes cultures [Determination of nitrogen fertilizer standards for field crops]. Recherche Agronomique Suisse. Vol. 1(11–12) p. 410–415.
  • SOUDANI L., MAATOUG M., HEILMEIER H., KHARYTONOV M., WICHE O., MOSCHNER C., ONYSHCHENKOC E., BOUCHENAFA N. 2017. Fertilization value of municipal sewage sludge for Eucalyptus camaldulensis plants. Biotechnology Reports. Vol. 13 p. 8–12. DOI 10.1016/j.btre.2016.12.001.
  • SOUDI B., XANTHOULIS D. 2007. Guide technique de réutilisation en agriculture des eaux usées épurées et des boues des stations d’épuration [Technichal guide for the reuse in agriculture of treated wastewater and sludge from treatment plants] [online]. [Access 9.11.2020]. Available at: https://www.susana.org/en/knowledge-hub/resources-and-publications/library/details/2012
  • TAO J., WU S., SUN L., TAN X., YU S., ZHANG Z. 2012. Composition of waste sludge from municipal wastewater treatment plant. Procedia Environmental Sciences. Vol. 12(B) p. 964–971. DOI 10.1016/j.proenv.2012.01.372.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-620abbc5-8216-4d62-918e-a7829ab8d493
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