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January 17, 2026International Journal of Innovative Horticulture0 citations

An analysis on evaluation of virtual water index of horticultural and field crops grown in Iran

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NENiaz Ali EbrahimipakASAzadeh Sedaghat

Key Points

  • This analysis aims to evaluate the virtual water content of horticultural and field crops to understand water-use efficiency in Iran's arid regions.
  • Used ten-year data (2013–2023) to analyze crops' virtual water content.
  • Categorized crops using crop water consumption index (L kg-1) with a 400 L kg-1 benchmark.
  • Identified high- and low-water-demand crops based on virtual water usage.
  • Virtual water content varied significantly, from 26.5 to 6,327.7 L kg-1 for different crops.
  • High-water-demand crops accounted for 92.5% of total virtual water use in Iran.
  • Horticultural crops, especially nuts and fruits, require more virtual water than field crops.

Abstract

AbstractUnderstanding the virtual water content of agricultural products is a key step toward improving water-use efficiency in water-scarce regions. Iran, characterized by its predominantly arid and semi-arid climate, faces severe water limitations that challenge the sustainability of its cropping systems. This study quantified the virtual water content of major horticultural and field crops in Iran using ten-year data (2013–2023) to evaluate agricultural water-use efficiency under arid and semi-arid conditions. Based on the crop water consumption index (L kg-1), crops were categorized as high- or low-water-demand using a 400 L kg-1 benchmark. Results showed a wide variation in virtual water content, ranging from 26.5 to 6,327.7 L kg-1. Among horticultural crops, pistachio (6,327.7 L kg-1) and nectarine (405.7 L kg-1) represented the highest and lowest values, while sesame (4,157.4 L kg-1) and clover (696.5 L kg-1) were the extremes among field crops. High-water-demand crops accounted for 92.5% of total virtual water use, indicating a heavy dependence of Iran’s current cropping pattern on water-intensive species. The results highlight that horticultural crops, particularly nuts and fruits, consume more virtual water than field crops, while low-water-demand field crops exhibit slightly higher averages than low-water-demand horticultural species. These findings underline the urgent need for optimizing crop selection, improving irrigation management, and incorporating virtual water accounting into agricultural policy. Shifting production toward low-water-demand crops such as citrus, tomato, and cucumber could significantly enhance water productivity and contribute to sustainable resource management under climate change.

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Cite This Study

Ebrahimipak et al. (2025) studied this question.

synapsesocial.com/papers/696b25f3d2a12237a93493d7https://doi.org/10.5958/2582-2527.2025.00017.4
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Spatial Analysis of Water Requirements and Water‐Use Efficiency in Wheat Cultivation across Iran Using Data From the Water Requirement System2026
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  4. 4Dryland farming in Iran: Feasibilities, constraints, and challenges towards sustainable expansion2026
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