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February 25, 2026Agronomy0 citationsOpen Access

Effects of Co-Application of Superabsorbent Polymer and Phosphorus Fertilizer on Water and Phosphorus Use Efficiency in Drip-Irrigated Maize

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ZLZaixin LiWMWeidong MaXZXinjiang Zhang

Key Points

  • To evaluate the impact of co-applying superabsorbent polymer with phosphorus fertilizer on water and phosphorus efficiency in maize.
  • Conducted a two-year field experiment in Xinjiang with three treatments: no phosphorus, banded monoammonium phosphate, and banded monoammonium phosphate with superabsorbent polymer.
  • Measured soil properties, root growth, canopy physiology, dry matter accumulation, nutrient uptake, and grain yield across treatments.
  • B-MAP + SAP increased available phosphorus and soil water content by 9.4% and 16.1%, respectively.
  • Root length and density significantly increased, with topsoil root length rising by 23.9% and subsoil root length density by 59.0% and 36.5%.
  • Grain yield averaged 18.2 t ha−1, outperforming B-MAP and no phosphorus treatments by 9.7% and 20.7%.
  • Phosphorus use efficiency and water productivity improved by 76.2% and 9.8% under B-MAP + SAP.

Abstract

In drip-irrigated maize of arid Xinjiang, seedling hardening (withholding irrigation) is used to induce deep rooting, but the conventional practice of banding phosphorus (P) fertilizer without basal application creates a spatial mismatch—roots are forced downward while P remains trapped in drying topsoil. We hypothesized that co-applying superabsorbent polymer (SAP) with banded P fertilizer can form a localized, persistently hydrated P-enriched patch that synchronizes root–resource distribution. A two-year field experiment (2024–2025) was conducted with three treatments: no P (P0), banded monoammonium phosphate (B-MAP, 120 kg P2O5 ha−1), and B-MAP + SAP (15 kg ha−1). Soil properties, root growth, canopy physiology, dry matter accumulation, nutrient uptake, and grain yield were measured. Results: At the V4 stage, B-MAP + SAP increased available P and soil water content in the 0–10 cm layer by 9.4% and 16.1%, respectively, relative to B-MAP. This patch triggered vigorous root proliferation: topsoil root length at V4 rose by 23.9%, and root length density in the 30–40 cm subsoil at V9 and R1 increased by 59.0% and 36.5%. Consequently, B-MAP + SAP sustained the highest leaf area index, net photosynthetic rate, and biomass accumulation. Two-year average grain yield reached 18.2 t ha−1, 9.7% and 20.7% higher than B-MAP and P0. Crucially, P use efficiency (PUE) and water productivity (WP) under B-MAP + SAP improved by 76.2% and 9.8% over B-MAP. Co-applying SAP with banded P fertilizer resolves the spatial mismatch in hardening systems, optimizes root architecture, and synergistically boosts yield, PUE, and WP. This one-time amendment offers a simple, scalable strategy for efficient P management in arid drip-irrigated maize.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/699e91d7f5123be5ed04f98ahttps://doi.org/10.3390/agronomy16040488
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