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Sustainable use of phosphogypsum to enhance sandy soils fertility and wheat yield in arid environments

Unknown authors
Aug 2026 · Environmental Progress & Sustainable Energy · 0 citations · 40 references

Abstract

Sandy soils in arid regions have low fertility, poor structural stability, and limited water‐holding capacity. This study evaluated phosphogypsum (PG) as a soil amendment for improving sandy‐soil quality and wheat productivity under arid conditions. A field experiment was conducted during the 2020/2021 winter season in West El‐Minia, Egypt. PG was applied at 0, 10, 20, and 30 t ha −1 by surface broadcasting or soil incorporation. Soil physical, chemical, and biological properties, wheat yield, and nutrient uptake were evaluated. Treatment performance depended on the management objective. Soil incorporation at 30 t ha −1 (T4M4) produced the strongest overall improvement in most soil and microbial indicators, whereas surface application at 20 t ha −1 (T3S3) produced the highest numerical grain yield and nutrient uptake. Under T4M4, bulk density decreased from 1.61 to 1.46 g cm −3 , field capacity increased from 16.0% to 25.16%, available water rose from 11.0% to 19.65%, soil pH declined from 8.2 to 7.8, and cation exchange capacity increased from 4.22 to 9.08 cmolc kg −1 . Microbial biomass carbon and fluorescein diacetate hydrolysis activity increased by 327.7% and 107.6%, respectively. Grain‐yield increases ranged from 29.5% to 60.3% relative to the control. Surface application at 20 t ha −1 was the most effective yield‐oriented treatment, whereas incorporation at 30 t ha −1 provided broader soil and microbial improvement. PG recommendations should therefore be selected according to the intended management objective rather than a single generalized optimum.

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