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An optimal global biochar application strategy based on matching biochar and soil properties to reduce global cropland greenhouse gas emissions: findings from a global meta-analysis and density functional theory calculation

Authors :
Debo He
Zhixin Dong
Bo Zhu
Source :
Biochar, Vol 6, Iss 1, Pp 1-19 (2024)
Publication Year :
2024
Publisher :
Springer, 2024.

Abstract

Abstract Biochar has been extensively utilized to amend soil and mitigate greenhouse gas (GHG) emissions from croplands. However, the effectiveness of biochar application in reducing cropland GHG emissions remains uncertain due to variations in soil properties and environmental conditions across regions. In this study, the impact of biochar surface functional groups on soil GHG emissions was investigated using molecular model calculation. Machine learning (ML) technology was applied to predict the responses of soil GHG emissions and crop yields under different biochar feedstocks and application rates, aiming to determine the optimum biochar application strategies based on specific soil properties and environmental conditions on a global scale. The findings suggest that the functional groups play an essential role in determining biochar surface activity and the soil’s capacity for adsorbing GHGs. ML was an effective method in predicting the changes in soil GHG emissions and crop yield following biochar application. Moreover, poor-fertility soils exhibited greater changes in GHG emissions compared to fertile soil. Implementing an optimized global strategy for biochar application may result in a substantial reduction of 684.25 Tg year−1 CO2 equivalent (equivalent to 7.87% of global cropland GHG emissions) while simultaneously improving crop yields. This study improves our understanding of the interaction between biochar surface properties and soil GHG, confirming the potential of global biochar application strategies in mitigating cropland GHG emissions and addressing global climate degradation. Further research efforts are required to optimize such strategies. Graphical Abstract

Details

Language :
English
ISSN :
25247867
Volume :
6
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Biochar
Publication Type :
Academic Journal
Accession number :
edsdoj.89620265d75d4e76868a9fad42712425
Document Type :
article
Full Text :
https://doi.org/10.1007/s42773-024-00383-6