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February 8, 2026GCB Bioenergy4 citationsOpen Access

Co‐Application of Biochar and Organic Matter With Synthetic Fertilisers Improves Nitrogen Use Efficiency, Rice Yield and Benefit–Cost Ratio: A Meta‐Analysis

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NONegar OmidvarMHMd Hafiz All HosenMFMichael B. Farrar

Key Points

  • This meta-analysis aims to evaluate how co-applying biochar and organic amendments with synthetic fertilizers affects nitrogen use efficiency and rice yield.
  • Conducted a meta-analysis on effect of various fertilization strategies.
  • Compared synthetic fertilizers alone, with biochar, and with organic amendments in rice cropping systems.
  • Analyzed rice yield, plant nitrogen uptake, and economic returns.
  • Co-applying biochar and synthetic fertilizers increased rice yield by 104.8%.
  • Organic amendments also enhanced yield by 80.2% when co-applied with fertilizers.
  • Co-application improved nitrogen use efficiency significantly compared to fertilized control.

Abstract

ABSTRACT Optimising the efficiency of applied nitrogen (N) fertilisers is essential to sustain agricultural systems. Substantial N losses continue through leaching, volatilisation, and denitrification processes. Co‐application of organic amendments and biochar alongside synthetic fertilisers is a widely practiced strategy to enhance N retention, improve soil fertility and increase crop productivity. Previous studies have focused on the specific characteristics of soil amendments and the magnitude of yield change, while N use efficiency (NUE) and economic returns remain uncertain. This meta‐analysis examined the effects of synthetic fertiliser applied alone, co‐applied with biochar and co‐applied with organic amendments, on crop yield, plant N uptake, NUE and economic return within rice cropping systems. Synthetic fertiliser and biochar applied alone increased rice yield by 69.2% ± 30.3 and 33.4% ± 34.9, respectively (Bootstrap 95% CI), whereas yield further increased by co‐applying biochar (+104.8% ± 37.5) and organic amendments (+80.2% ± 18.2) with fertiliser compared with non‐fertilised control. Co‐applying organic amendments (+20.9% ± 29.7) and co‐applying biochar (+35.1% ± 18.3) with synthetic fertiliser increased NUE compared with fertilised control. For rice crops under low N application (< 150 kg ha −1 ), co‐applying biochar with fertiliser increased yields more than co‐applying organic amendments (+70.1% ± 0.7 vs. +52.5% ± 0.3, respectively). Within acidic soils, co‐applying biochar with fertiliser (+72.9% ± 0.4) led to higher yield than co‐applying organic matter (+36.0% ± 0.9), and among soils with high organic carbon concentration, co‐applying biochar with fertiliser increased yield by 97.6% ± 1.6, compared with yield increases observed by co‐applying organic matter with fertiliser at 29.4% ± 0.5 and fertiliser alone at 25.6% ± 0.2. The main factors driving rice yield were N application rate, co‐application method and soil organic carbon concentration. Co‐applying either biochar or organic amendments did not significantly differ in benefit–cost ratio with benefit–cost ratios of 35.1% ± 9.2 and 18.1 ± 26.5, respectively compared with fertilised control. Co‐applying either biochar or organic amendments with synthetic fertilisers decreased N inputs and increased economic return, therefore improving sustainability in rice cropping systems.

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Cite This Study

Omidvar et al. (2026) studied this question.

synapsesocial.com/papers/698829520fc35cd7a88499b1https://doi.org/10.1111/gcbb.70105
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