Rock phosphate enriched pressmud compost: A valorized agro-industrial amendment for enhancing phosphorus use efficiency in high-value field crops

Low phosphorus (P) use efficiency of conventional mineral fertilizers underscores the need for resource-efficient P management strategies. Rock phosphate enriched pressmud compost (RPEPC) offers a potential approach for recycling sugar-industry by-products while providing a gradual P supply. However, its capacity to partially substitute mineral P fertilizer remains inadequately evaluated with respect to crop productivity, P use efficiency, P balance, soil fertility, and economic viability. Therefore, a field experiment was conducted to evaluate RPEPC as a P source in maize–wheat and soybean–wheat cropping systems. Partial substitution of diammonium phosphate (DAP) with RPEPC (50% and 75%) enhanced maize and wheat productivity, while maintaining yields comparable to sole DAP application in the soybean–wheat system. Phosphorus-use efficiency increased by approximately 1.79- to 3.01-fold under the integrated treatments. Relative to sole DAP, combined application of RPEPC and DAP increased soil organic carbon by 10.0–22.4%, mineralizable nitrogen by 10.9–22.4%, available potassium by 5.4–21.5%, Olsen P by 56.6–87.5%, and organic P by 10.3–33.5% across soil depths (0–15 and 15–30 cm) and sampling years (2023 and 2025). Across both cropping systems, the 50% RPEPC + 50% DAP treatment produced the highest net returns (USD 2227 and 2130 ha −1 , respectively) and net benefit–cost ratios (0.94 and 0.95, respectively), outperforming the sole fertilizer and compost treatments. Overall, the partial substitution of mineral DAP with RPEPC sustained or enhanced crop productivity, P-use efficiency, soil fertility, and economic performance, demonstrating its potential as a circular P management strategy linking sugar-industry waste valorization with sustainable crop production.

Authors

Institutions

Publication Details

Journal
Industrial Crops and Products
Published
2026-09-17
DOI
https://doi.org/10.1016/j.indcrop.2026.124381
Primary Topic
Phosphorus and nutrient management
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Rock phosphate enriched pressmud compost: A valorized agro-industrial amendment for enhancing phosphorus use efficiency in high-value field crops

B. B. Basak, Tirunagari Rupesh, Jyotirmay Roy, D.R. Biswas
Industrial Crops and Products
Phosphorus and nutrient management
article

Rock phosphate enriched pressmud compost: A valorized agro-industrial amendment for enhancing phosphorus use efficiency in high-value field crops

B. B. Basak, Tirunagari Rupesh, Jyotirmay Roy, D.R. Biswas
article en

Abstract

Low phosphorus (P) use efficiency of conventional mineral fertilizers underscores the need for resource-efficient P management strategies. Rock phosphate enriched pressmud compost (RPEPC) offers a potential approach for recycling sugar-industry by-products while providing a gradual P supply. However, its capacity to partially substitute mineral P fertilizer remains inadequately evaluated with respect to crop productivity, P use efficiency, P balance, soil fertility, and economic viability. Therefore, a field experiment was conducted to evaluate RPEPC as a P source in maize–wheat and soybean–wheat cropping systems. Partial substitution of diammonium phosphate (DAP) with RPEPC (50% and 75%) enhanced maize and wheat productivity, while maintaining yields comparable to sole DAP application in the soybean–wheat system. Phosphorus-use efficiency increased by approximately 1.79- to 3.01-fold under the integrated treatments. Relative to sole DAP, combined application of RPEPC and DAP increased soil organic carbon by 10.0–22.4%, mineralizable nitrogen by 10.9–22.4%, available potassium by 5.4–21.5%, Olsen P by 56.6–87.5%, and organic P by 10.3–33.5% across soil depths (0–15 and 15–30 cm) and sampling years (2023 and 2025). Across both cropping systems, the 50% RPEPC + 50% DAP treatment produced the highest net returns (USD 2227 and 2130 ha −1 , respectively) and net benefit–cost ratios (0.94 and 0.95, respectively), outperforming the sole fertilizer and compost treatments. Overall, the partial substitution of mineral DAP with RPEPC sustained or enhanced crop productivity, P-use efficiency, soil fertility, and economic performance, demonstrating its potential as a circular P management strategy linking sugar-industry waste valorization with sustainable crop production.

Industrial Crops and ProductsVol. 252
Indian Agricultural Research Institute (IN)
Zero hunger
Openalex Percentile: Top 12%
Phosphorus and nutrient management
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.