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Senior Irrigation Researcher, Melkassa Agricultural Research Center, Ethiopia

Author

Listed:
  • Robel Admasu

    (Irrigation Researcher, Jimma Agricultural Research Center, Ethiopia)

  • Abraham W Michael

    (Bio-System and Environmental Engineering, Hawassa University, Ethiopia)

  • Tilahun Hordofa

    (Senior Irrigation Researcher, Melkassa Agricultural Research Center, Ethiopia)

Abstract

Presently and in the future, irrigated agriculture faces water scarcity. Irrigation management will shift from emphasizing productivity per unit area to maximizing the production per unit of water consumed. Field experiment was carried out to determine the water use efficiency of maize under moisture stress condition and to identify the critical depth of application with limited effect on yield. The experiment was conducted at Awash Melkassa agricultural research center farm. The experiment was carried out in RCBD with three replications. Treatments include seven moisture stress levels and a control treatment (full irrigation, 85 ETc, 75 ETc, 65 ETc, 55 ETc, 45 ETc, 35 ETc and 25 ETc). The different levels of irrigation had a highly significant (p>0.01) effect on maize grain yield, above ground biomass yield and harvest index. The highest grain yield was obtained from full irrigation (5524.8 Kg/ha) which was not significantly different with 85 ETc application (5206.5 Kg/ha). In terms of water productivity, 25 ETc gives the highest water productivity and significantly different to all other treatments.

Suggested Citation

  • Robel Admasu & Abraham W Michael & Tilahun Hordofa, 2019. "Senior Irrigation Researcher, Melkassa Agricultural Research Center, Ethiopia," International Journal of Environmental Sciences & Natural Resources, Juniper Publishers Inc., vol. 16(4), pages 83-87, January.
  • Handle: RePEc:adp:ijesnr:v:16:y:2019:i:4:p:83-87
    DOI: 10.19080/IJESNR.2019.16.555945
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    References listed on IDEAS

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    1. Payero, José O. & Tarkalson, David D. & Irmak, Suat & Davison, Don & Petersen, James L., 2008. "Effect of irrigation amounts applied with subsurface drip irrigation on corn evapotranspiration, yield, water use efficiency, and dry matter production in a semiarid climate," Agricultural Water Management, Elsevier, vol. 95(8), pages 895-908, August.
    2. Moser, Samuel B. & Feil, Boy & Jampatong, Sansern & Stamp, Peter, 2006. "Effects of pre-anthesis drought, nitrogen fertilizer rate, and variety on grain yield, yield components, and harvest index of tropical maize," Agricultural Water Management, Elsevier, vol. 81(1-2), pages 41-58, March.
    3. Mansouri-Far, Cyrus & Modarres Sanavy, Seyed Ali Mohammad & Saberali, Seyed Farhad, 2010. "Maize yield response to deficit irrigation during low-sensitive growth stages and nitrogen rate under semi-arid climatic conditions," Agricultural Water Management, Elsevier, vol. 97(1), pages 12-22, January.
    4. Bozkurt, Yesim & Yazar, Attila & Gencel, Burcin & Sezen, Metin Semih, 2006. "Optimum lateral spacing for drip-irrigated corn in the Mediterranean Region of Turkey," Agricultural Water Management, Elsevier, vol. 85(1-2), pages 113-120, September.
    5. Pandey, R. K. & Maranville, J. W. & Admou, A., 2000. "Deficit irrigation and nitrogen effects on maize in a Sahelian environment: I. Grain yield and yield components," Agricultural Water Management, Elsevier, vol. 46(1), pages 1-13, November.
    6. Karam, Fadi & Breidy, Joelle & Stephan, Chafic & Rouphael, Joe, 2003. "Evapotranspiration, yield and water use efficiency of drip irrigated corn in the Bekaa Valley of Lebanon," Agricultural Water Management, Elsevier, vol. 63(2), pages 125-137, December.
    7. Kar, Gouranga & Verma, Harsh Nath, 2005. "Phenology based irrigation scheduling and determination of crop coefficient of winter maize in rice fallow of eastern India," Agricultural Water Management, Elsevier, vol. 75(3), pages 169-183, July.
    8. Dagdelen, Necdet & Yilmaz, Ersel & Sezgin, Fuat & Gurbuz, Talih, 2006. "Water-yield relation and water use efficiency of cotton (Gossypium hirsutum L.) and second crop corn (Zea mays L.) in western Turkey," Agricultural Water Management, Elsevier, vol. 82(1-2), pages 63-85, April.
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    Keywords

    earth and environment journals; environment journals; open access environment journals; peer reviewed environmental journals; open access; juniper publishers; ournal of Environmental Sciences; juniper publishers journals ; juniper publishers reivew;
    All these keywords.

    JEL classification:

    • R00 - Urban, Rural, Regional, Real Estate, and Transportation Economics - - General - - - General
    • Z0 - Other Special Topics - - General

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