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Maize Fertigation with Treated Olive Mill Wastewater: Effects on Crop Production and Soil Properties

Author

Listed:
  • Kokkora, Maria I.
  • Papaioannou, Chryssoula
  • Vyrlas, Panagiotis
  • Petrotos, Konstantinos
  • Gkoutsidis, Paschalis
  • Makridis, Christos

Abstract

The present study investigates the potential of olive mill wastewater, treated by microfiltration and XAD4 macroporous resin, to be used as liquid fertilizer in maize production through a 2-year field experiment. The treated olive mill wastewater (T-OMWW) was applied at two rates of 25 t and 50 t per ha per year, supplemented with mineral fertilization. There was also a treatment involving the application of only T-OMWW at the rate of 50 t per ha per year, and an only mineral fertilizer treatment. Mineral fertilizers and T-OMWW were applied progressively through a drip irrigation system. Maize grain and soil analysis showed that T-OMWW was capable to meet crop requirements in N, P and K, and increase soil N, P and K availability. There was a tendency for increasing soil Na and electrical conductivity (EC) using the higher rate of T-OMWW. Therefore, for sustainable agriculture, it may be safer to apply the T-OMWW at the lower rate of 25 t per haper year, or use the higher rate of 50 t per haevery other year.

Suggested Citation

  • Kokkora, Maria I. & Papaioannou, Chryssoula & Vyrlas, Panagiotis & Petrotos, Konstantinos & Gkoutsidis, Paschalis & Makridis, Christos, 2015. "Maize Fertigation with Treated Olive Mill Wastewater: Effects on Crop Production and Soil Properties," Sustainable Agriculture Research, Canadian Center of Science and Education, vol. 4(4).
  • Handle: RePEc:ags:ccsesa:230366
    DOI: 10.22004/ag.econ.230366
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    Cited by:

    1. Chojnacka, K. & Witek-Krowiak, A. & Moustakas, K. & Skrzypczak, D. & Mikula, K. & Loizidou, M., 2020. "A transition from conventional irrigation to fertigation with reclaimed wastewater: Prospects and challenges," Renewable and Sustainable Energy Reviews, Elsevier, vol. 130(C).

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