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April 3, 2026EURASIAN JOURNAL OF SOIL SCIENCE (EJSS)0 citationsOpen Access

Localized subsurface placement of a polyacrylamide superabsorbent polymer improves soil moisture distribution and reduces irrigation requirement in wheat grown in Eastern Kazakhstan

AAAbdugani AzimovGIG. M. IztleuovRORaikhan ZH. Omirova

Key Points

  • Evaluate the effectiveness of localized polyacrylamide superabsorbent polymer placement on soil moisture and irrigation needs in wheat.
  • Applied polyacrylamide SAP at 30 and 60 kg ha⁻¹ and 20 and 40 cm depths.
  • Used a randomized complete block design with three replications in 6 × 4 m plots.
  • Measured soil moisture and pH; assessed grain yield via whole-plot harvest.
  • Localized SAP placement improved soil moisture distribution, increasing root-zone moisture reserves by 8-11%.
  • Irrigation frequency decreased from two to one, cutting seasonal water usage from 1,800 to 900 m³ ha⁻¹.
  • 30 kg ha⁻¹ placed at 20 cm depth yielded the best balance of benefits and input intensity.

Abstract

Water scarcity and increased drought frequency threaten irrigated cereal production across arid and semi-arid regions. Superabsorbent polymers (SAPs) can improve soil water retention and reduce non-productive losses, but field-scale effectiveness depends strongly on placement strategy and soil conditions 1–5. This study evaluated a commercially available cross-linked polyacrylamide SAP applied locally using a slitter-based implement at two rates (30 and 60 kg ha⁻¹) and two placement depths (20 and 40 cm) under irrigated wheat (Triticum aestivum L., cultivar ‘Steklovidnaya-24’) in Eastern Kazakhstan (April–June 2025). A randomized complete block design with three replications was used (6 × 4 m plots). Soil moisture was measured by depth (0–5, 0–20, 20–40 cm) using the thermostat–weight (oven-drying) method; soil reaction (pH) was measured in a salt extract prepared by the TSINAO method using a calibrated pH meter; and grain yield was assessed by whole-plot harvest and converted to a hectare basis. Localized SAP placement redistributed water downward, with a 3.6–3.8 percentage-point reduction in the 0–20 cm layer and a 3.2–3.6 percentage-point increase in the 20–40 cm layer, resulting in an 8–11% increase in root-zone moisture reserves. The number of irrigations decreased from two to one, reducing seasonal irrigation from 1,800 to 900 m³ ha⁻¹, while crop growth indicators visibly improved relative to the control. Overall, 30 kg ha⁻¹ placed at 20 cm provided the most favorable balance between agronomic benefit and input intensity, consistent with broader evidence that targeted subsurface SAP placement can enhance irrigation water productivity.

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Cite This Study

Azimov et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ea85a333a821460d379https://doi.org/10.18393/ejss.1861849
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