Interaction between Irrigation and Nitrogen Levels and Their Effect on Yield, Quality, and Water Use Efficiency of Potato under Drip Irrigation System

Authors

  • Ahlaam Rahoumah Omar Dhu Libyan Authority for Scientific Research, Al-Nasr Street, Tripoli, Libya Author
  • Ashraf Yacoub Sweidan Higher Institute of Agricultural Technology, Al-Giran, Tripoli, Libya Author

DOI:

https://doi.org/10.65420/sjphrt.v2i3.162

Keywords:

Potato, drip irrigation, nitrogen fertilization, water use efficiency, tuber quality, sustainable resource water management

Abstract

A field experiment was conducted during the growing season in Al-Maraziq, Janzour, Libya, to evaluate the interactive effects of three drip irrigation levels (100%, 70%, and 40% of field capacity) and five nitrogen rates (0, 120, 210, 300, and 390 kg N ha) on potato (Solanum tuberosum L., cv. Spunta) yield, tuber quality, and water use efficiency (WUE). A split-plot design with three replications was adopted. Results indicated that moderate irrigation (70% FC) achieved the highest WUE (96 kg mm ha), representing a 10.4% improvement over full irrigation. Nitrogen rate of 300 kg N ha (N3) produced the maximum WUE (97 kg mm ha), reflecting a 49% increase compared with the control treatment. Crop evapotranspiration (ETc) increased progressively with irrigation and nitrogen levels, reaching a maximum of 320.30 mm under I1N3 and a minimum of 143.82 mm under I3N0, confirming the strong interaction between vegetative growth intensity and water consumption. Total tuber yield was highest under full irrigation (28.59 t ha). Yield declined by 12.4% under 70% irrigation and by 36.9% under 40% irrigation. Regarding nitrogen fertilization, maximum yield was recorded at 300 kg N ha (27.10 t ha), followed by a decline at 390 kg N ha, indicating diminishing returns at excessive N supply. Moderate nitrogen application (210 kg N ha) resulted in superior tuber quality parameters: dry matter (20.27%), specific gravity (1.087), and starch content (15.23%). Excess nitrogen reduced quality due to prolonged vegetative growth and delayed physiological maturity, which limited carbohydrate translocation to tubers. The study concludes that 70% irrigation combined with 300 kg N ha optimizes water productivity, while full irrigation with 210-300 kg N ha maximizes economic yield. These findings emphasize the importance of integrated irrigation-nitrogen management strategies for sustainable potato production under semi-arid conditions.

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Published

2026-07-20

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Section

Articles

How to Cite

Interaction between Irrigation and Nitrogen Levels and Their Effect on Yield, Quality, and Water Use Efficiency of Potato under Drip Irrigation System. (2026). Scientific Journal for Publishing in Health Research and Technology, 2(3), 71-90. https://doi.org/10.65420/sjphrt.v2i3.162