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March 13, 2026Kirkuk University Journal For Agricultural Sciences0 citationsOpen Access

The role of moisture depletion of the two tillage depths and the type of emitters on some physical properties of the soil and water productivity of the yellow maize crop

MMMustafa Muhammad MustafaWAW. F. A. AlshamaryHTHussain T. Tahir

Key Points

  • This experiment aims to assess how moisture depletion percentages and tillage depths influence soil properties and water productivity of yellow maize.
  • Field experiment conducted at Agricultural Research and Experiment Station - University of Kirkuk
  • Examined two moisture depletion levels (45% and 65%)
  • Used two tillage depths (20 cm and 30 cm)
  • Evaluated two types of emitters (GR and T-Tape)
  • Implemented a split-split plot design with randomized complete blocks
  • 45% moisture depletion improved soil physical properties compared to 65% moisture depletion
  • Total porosity was 48.74% for 45% moisture depletion versus 38.99% for 65%
  • Weighted average diameter was 1.63 mm for 45% compared to 0.85 mm for 65%
  • 30 cm tillage depth resulted in higher crop growth markers and water productivity than 20 cm
  • Maximum leaf area, biological yield, and water use efficiency were achieved with 30 cm depth

Abstract

A field experiment was conducted to determine the role of moisture depletion percentages, two tillage depths, and two types of emitters and their interactions on some soil physical properties and water productivity of yellow maize crop during the fall season of 2024 at the Agricultural Research and Experiment Station - University of Kirkuk. The experiment included three main factors: moisture depletion percentage 45% and moisture depletion 65%, the second factor was two tillage depths (20 and 30) cm, and the third factor was two types of emitters (GR and T-Tape). A split-split plot design with a randomized complete block arrangement (RCBD) was used. The results of the experiment showed that the 45% moisture depletion led to an improvement in the physical properties and showed significant differences in both the total porosity and the weighted average diameter, as the total porosity values reached 48.74% for the 45% moisture depletion, while they reached 38.99% for the 65% moisture depletion. The weighted average diameter values were 1.63 mm for the 45% moisture depletion and 0.85 mm for the 65% moisture depletion. Significant differences were found when using 30cm tillage depth in growth characteristics, crop yield and water productivity. It was found that depth 30 gave the highest values for (leaf area, biological yield and crop water use efficiency) which reached (5088.57cm2, 28.863Mg ha-1 and 3.16kg m-3) respectively, compared to depth 20cm which reached (5930.62cm2, 24.530Mg ha-1 and 2.65kg m-3) respectively. It was also found from the evaluation of the drip irrigation system before and after planting that the values of hydraulic characteristics which include two characteristics, namely the difference in discharge qvar% and the absolute field emission uniformity FEUa% were significantly better before planting compared to the values after planting

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Cite This Study

Mustafa et al. (2026) studied this question.

synapsesocial.com/papers/69b3ab4c02a1e69014ccc046https://doi.org/10.58928/ku26.17111
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