Evaluation of gas diffusivity models for no-tilled and tilled volcanic ash soils
Guo L. L.; Nishimura, T.; Imoto, H.; Sun, Z. G.
2016
关键词Model evaluation gas diffusivity model tillage management volcanic ash soil pore-size distribution water characteristics carbon sequestration undisturbed soil air permeability gradient-method porous-media coefficient pasture tillage
英文摘要Accurate quantification of soil gas diffusion is essential to understand the gas transport mechanism in soils, especially for soil greenhouse gas emissions. To date, the performance of soil gas diffusivity (D-p/D-0, where D-p is the soil gas diffusion coefficient and D-0 is the diffusion coefficient in free air) models has seldom been evaluated for no-tilled and tilled volcanic ash soils. In the present study, six commonly used models were evaluated for volcanic ash soils under two treatments by comparing the predicted and measured soil gas diffusivities at water potentials of pF 1.3-3. The Buckingham-Burdine-Campbell (BBC), soil-water-characteristic-dependent (SWC-dependent), and two-region extended Archie's Law (2EAL) models showed better performance for both no-tilled and tilled volcanic ash soils, which is likely because porosity and pore size parameters of bimodal soils were taken into consideration in these models. Since the BBC model showed better accuracy than the SWC-dependent and 2EAL models and required fewer, more easily measurable parameters, this study recommends the BBC model for predicting soil gas diffusivity of volcanic ash soil under different tillage managements. In future studies, the BBC model should be further tested at water potentials of pF>3, and may be improved by including the parameters of pore continuity and saturation.
出处Archives of Agronomy and Soil Science
62
9
1324-1335
语种英语
ISSN号0365-0340
DOI标识10.1080/03650340.2016.1145791
内容类型SCI/SSCI论文
源URL[http://ir.igsnrr.ac.cn/handle/311030/42719]  
专题地理科学与资源研究所_历年回溯文献
推荐引用方式
GB/T 7714
Guo L. L.,Nishimura, T.,Imoto, H.,et al. Evaluation of gas diffusivity models for no-tilled and tilled volcanic ash soils. 2016.
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