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Utilization of reclaimed wastewater for olive irrigation: Effect on soil properties, tree growth, yield and oil content

Author

Listed:
  • Ayoub, Salam
  • Al-Shdiefat, Saleh
  • Rawashdeh, Hamzeh
  • Bashabsheh, Ibrahim

Abstract

The experiment was conducted over four successive years (2008, 2009, 2010 and 2011) on ‘Nabali Muhassan’ olive cultivar at a private olive orchard located in the northern part of Jordan (Ramtha area). Experimental treatments applied were irrigation with fresh water (underground well water) and reclaimed wastewater to be compared with the rain-fed (non-irrigated) treatment. Total quantity of fresh water and reclaimed wastewater applied were similar during the irrigation period. Analysis of irrigation water showed higher EC value for reclaimed wastewater as compared to fresh water. Average values of pH, EC, TSS, cations, anions, N, NO3, B, heavy metals, BOD5, COD and fecal coliform in reclaimed wastewater were within the Jordanian standard for water use in irrigation of fruit trees, however, the values of SAR, Cl and Na were higher than the standard limits. Results of soil analysis indicated that soil chemical properties (pH, EC, Ca, Na, SAR, ESP, P, K, Cu, Mn, Pb and B) in soil irrigated with reclaimed wastewater were significantly higher than in soil irrigated with fresh water. The application of reclaimed wastewater or fresh water showed significant increase in annual shoot length as compared to rain-fed treatment. Average olive tree yield was significantly higher for fresh water treatment than the rain-fed treatment, which was not significantly different from the reclaimed wastewater treatment. Fruit oil content based on fresh weight and dry weight basis were significantly higher in rain-fed treatment than freshwater and reclaimed wastewater treatments.

Suggested Citation

  • Ayoub, Salam & Al-Shdiefat, Saleh & Rawashdeh, Hamzeh & Bashabsheh, Ibrahim, 2016. "Utilization of reclaimed wastewater for olive irrigation: Effect on soil properties, tree growth, yield and oil content," Agricultural Water Management, Elsevier, vol. 176(C), pages 163-169.
  • Handle: RePEc:eee:agiwat:v:176:y:2016:i:c:p:163-169
    DOI: 10.1016/j.agwat.2016.05.035
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    Cited by:

    1. Daniela Vanella & Simona Consoli & Alberto Continella & Gaetano Chinnici & Mirco Milani & Giuseppe Luigi Cirelli & Mario D’Amico & Giulia Maesano & Alessandra Gentile & Paolo La Spada & Francesco Scol, 2023. "Environmental and Agro-Economic Sustainability of Olive Orchards Irrigated with Reclaimed Water under Deficit Irrigation," Sustainability, MDPI, vol. 15(20), pages 1-22, October.
    2. José Rato-Nunes & José Telo-da-Gama & David Peña & Luís Loures & Angel Albaran & Damian Fernández-Rodríguez & Luis Vicente & António López-Piñeiro, 2024. "Hedgerow Olive Orchards versus Traditional Olive Orchards: Impact on Selected Soil Chemical Properties," Agriculture, MDPI, vol. 14(2), pages 1-19, February.
    3. Sousa, Adervan Fernandes & Weber, Olmar Baller & Crisostomo, Lindbergue Araújo & Escobar, Maria Eugenia Ortiz & de Oliveira, Teógenes Senna, 2017. "Changes in soil soluble salts and plant growth in a sandy soil irrigated with treated water from oil extraction," Agricultural Water Management, Elsevier, vol. 193(C), pages 13-21.
    4. Pedrero, Francisco & Grattan, S.R. & Ben-Gal, Alon & Vivaldi, Gaetano Alessandro, 2020. "Opportunities for expanding the use of wastewaters for irrigation of olives," Agricultural Water Management, Elsevier, vol. 241(C).
    5. Zhenjie Du & Shuang Zhao & Yingjun She & Yan Zhang & Jingjing Yuan & Shafeeq Ur Rahman & Xuebin Qi & Yue Xu & Ping Li, 2022. "Effects of Different Wastewater Irrigation on Soil Properties and Vegetable Productivity in the North China Plain," Agriculture, MDPI, vol. 12(8), pages 1-13, July.
    6. Zalacáin, David & Martínez-Pérez, Silvia & Bienes, Ramón & García-Díaz, Andrés & Sastre-Merlín, Antonio, 2019. "Salt accumulation in soils and plants under reclaimed water irrigation in urban parks of Madrid (Spain)," Agricultural Water Management, Elsevier, vol. 213(C), pages 468-476.
    7. Erel, Ran & Eppel, Amir & Yermiyahu, Uri & Ben-Gal, Alon & Levy, Guy & Zipori, Isaac & Schaumann, Gabriele E. & Mayer, Oliver & Dag, Arnon, 2019. "Long-term irrigation with reclaimed wastewater: Implications on nutrient management, soil chemistry and olive (Olea europaea L.) performance," Agricultural Water Management, Elsevier, vol. 213(C), pages 324-335.
    8. Hashmat, Sherjeel & Shahid, Muhammad & Tanwir, Kashif & Abbas, Saghir & Ali, Qasim & Niazi, Nabeel Khan & Akram, Muhammad Sohail & Saleem, Muhammad Hamzah & Javed, Muhammad Tariq, 2021. "Elucidating distinct oxidative stress management, nutrient acquisition and yield responses of Pisum sativum L. fertigated with diluted and treated wastewater," Agricultural Water Management, Elsevier, vol. 247(C).
    9. Isaac Zipori & Ran Erel & Uri Yermiyahu & Alon Ben-Gal & Arnon Dag, 2020. "Sustainable Management of Olive Orchard Nutrition: A Review," Agriculture, MDPI, vol. 10(1), pages 1-21, January.
    10. Feder, Frédéric, 2021. "Irrigation with treated wastewater in humid regions: Effects on Nitisols, sugarcane yield and quality," Agricultural Water Management, Elsevier, vol. 247(C).

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