Biochar amendment mitigates negative effects of controlled irrigation on paddy soil structure : insights from micro-pore network analysis
- Author
- Jiazhen Hu, Shihong Yang, Wim Cornelis (UGent) , Qian Huang, Suting Qi, Zewei Jiang, Haonan Qiu and Yi Xu
- Organization
- Abstract
- With increasing rice production demands and water scarcity, developing water-saving irrigation techniques for paddy fields is a global priority. The impact of these techniques on soil structure remains unclear, especially under varying water-carbon conditions. From 2022-2023, field experiments examined four biochar rates and two irrigation methods (controlled irrigation (CI) and flooding irrigation (FI)), resulting in five treatments: CK (0t/ha+CI), CA (60t/ha+CI), CB (30t/ha+CI), CC (10t/ha+CI), and FK (0t/ha+FI). Compared to FK, CK decreased mean weight diameter (19.73-25.54 %), soil organic matter (4.64-9.79 %), total nitrogen (2.68-10.59 %), dissolved organic carbon (1.90-9.48 %), water content at saturation (0.23-15.83 %) and permanent wilting point (3.69-7.87 %), while it increased unstable aggregates index (6.29-15.11 %) and fractal dimension (1.59-1.88 %). Biochar treatments (CA, CB, CC) mitigated CK's adverse effects on soil aggregate stability, total nitrogen, and water retention capacity and significantly improved these indicators. CA increased porosity across various effective pore diameters, while CB and CC primarily increased the proportion of porosity for diameters > 250 mu m. Simulation results indicated that compared to CK (3.879 mu m(2)), the intrinsic permeability (K) of soil under CA, CB, and CC treatments increased by 106.69 %, 77.77 %, and 3.31 %, respectively, while FK showed a contrasting decrease of 3.58 %. K correlated well with > 250 mu m porosity and connected porosity representing microstructure, with correlation coefficients of 0.96 and 0.94. Overall, biochar improved chemical properties and micropore structure (porosity for diameters >250 mu m, connected porosity) of soil aggregates under CI, enhancing macroaggregate functions such as soil stability and hydraulic properties.
- Keywords
- Irrigation, Biochar, CT scanning, Soil aggregate stability, Soil micropore structure, Soil permeability, ORGANIC-MATTER, AGGREGATE STABILITY, CARBON, NITROGEN, IMPACT, MINERALIZATION, SYSTEMS
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Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-01JX2M3295KPV8XA2MAZWYVBM4
- MLA
- Hu, Jiazhen, et al. “Biochar Amendment Mitigates Negative Effects of Controlled Irrigation on Paddy Soil Structure : Insights from Micro-Pore Network Analysis.” AGRICULTURAL WATER MANAGEMENT, vol. 314, 2025, doi:10.1016/j.agwat.2025.109517.
- APA
- Hu, J., Yang, S., Cornelis, W., Huang, Q., Qi, S., Jiang, Z., … Xu, Y. (2025). Biochar amendment mitigates negative effects of controlled irrigation on paddy soil structure : insights from micro-pore network analysis. AGRICULTURAL WATER MANAGEMENT, 314. https://doi.org/10.1016/j.agwat.2025.109517
- Chicago author-date
- Hu, Jiazhen, Shihong Yang, Wim Cornelis, Qian Huang, Suting Qi, Zewei Jiang, Haonan Qiu, and Yi Xu. 2025. “Biochar Amendment Mitigates Negative Effects of Controlled Irrigation on Paddy Soil Structure : Insights from Micro-Pore Network Analysis.” AGRICULTURAL WATER MANAGEMENT 314. https://doi.org/10.1016/j.agwat.2025.109517.
- Chicago author-date (all authors)
- Hu, Jiazhen, Shihong Yang, Wim Cornelis, Qian Huang, Suting Qi, Zewei Jiang, Haonan Qiu, and Yi Xu. 2025. “Biochar Amendment Mitigates Negative Effects of Controlled Irrigation on Paddy Soil Structure : Insights from Micro-Pore Network Analysis.” AGRICULTURAL WATER MANAGEMENT 314. doi:10.1016/j.agwat.2025.109517.
- Vancouver
- 1.Hu J, Yang S, Cornelis W, Huang Q, Qi S, Jiang Z, et al. Biochar amendment mitigates negative effects of controlled irrigation on paddy soil structure : insights from micro-pore network analysis. AGRICULTURAL WATER MANAGEMENT. 2025;314.
- IEEE
- [1]J. Hu et al., “Biochar amendment mitigates negative effects of controlled irrigation on paddy soil structure : insights from micro-pore network analysis,” AGRICULTURAL WATER MANAGEMENT, vol. 314, 2025.
@article{01JX2M3295KPV8XA2MAZWYVBM4,
abstract = {{With increasing rice production demands and water scarcity, developing water-saving irrigation techniques for paddy fields is a global priority. The impact of these techniques on soil structure remains unclear, especially under varying water-carbon conditions. From 2022-2023, field experiments examined four biochar rates and two irrigation methods (controlled irrigation (CI) and flooding irrigation (FI)), resulting in five treatments: CK (0t/ha+CI), CA (60t/ha+CI), CB (30t/ha+CI), CC (10t/ha+CI), and FK (0t/ha+FI). Compared to FK, CK decreased mean weight diameter (19.73-25.54 %), soil organic matter (4.64-9.79 %), total nitrogen (2.68-10.59 %), dissolved organic carbon (1.90-9.48 %), water content at saturation (0.23-15.83 %) and permanent wilting point (3.69-7.87 %), while it increased unstable aggregates index (6.29-15.11 %) and fractal dimension (1.59-1.88 %). Biochar treatments (CA, CB, CC) mitigated CK's adverse effects on soil aggregate stability, total nitrogen, and water retention capacity and significantly improved these indicators. CA increased porosity across various effective pore diameters, while CB and CC primarily increased the proportion of porosity for diameters > 250 mu m. Simulation results indicated that compared to CK (3.879 mu m(2)), the intrinsic permeability (K) of soil under CA, CB, and CC treatments increased by 106.69 %, 77.77 %, and 3.31 %, respectively, while FK showed a contrasting decrease of 3.58 %. K correlated well with > 250 mu m porosity and connected porosity representing microstructure, with correlation coefficients of 0.96 and 0.94. Overall, biochar improved chemical properties and micropore structure (porosity for diameters >250 mu m, connected porosity) of soil aggregates under CI, enhancing macroaggregate functions such as soil stability and hydraulic properties.}},
articleno = {{109517}},
author = {{Hu, Jiazhen and Yang, Shihong and Cornelis, Wim and Huang, Qian and Qi, Suting and Jiang, Zewei and Qiu, Haonan and Xu, Yi}},
issn = {{0378-3774}},
journal = {{AGRICULTURAL WATER MANAGEMENT}},
keywords = {{Irrigation,Biochar,CT scanning,Soil aggregate stability,Soil micropore structure,Soil permeability,ORGANIC-MATTER,AGGREGATE STABILITY,CARBON,NITROGEN,IMPACT,MINERALIZATION,SYSTEMS}},
language = {{eng}},
pages = {{14}},
title = {{Biochar amendment mitigates negative effects of controlled irrigation on paddy soil structure : insights from micro-pore network analysis}},
url = {{http://doi.org/10.1016/j.agwat.2025.109517}},
volume = {{314}},
year = {{2025}},
}
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