土壤水分
环境科学
含水量
Pedotransfer函数
土壤科学
分解
保水性
土壤有机质
有机质
土壤呼吸
营养物
土壤质地
环境化学
化学
地质学
导水率
有机化学
岩土工程
作者
Teamrat A. Ghezzehei,Benjamin N. Sulman,Chelsea Arnold,Nathaniel Bogie,Asmeret Asefaw Berhe
出处
期刊:Biogeosciences
[Copernicus Publications]
日期:2019-03-21
卷期号:16 (6): 1187-1209
被引量:93
标识
DOI:10.5194/bg-16-1187-2019
摘要
Abstract. Soil water status is one of the most important environmental factors that control microbial activity and rate of soil organic matter (SOM) decomposition. Its effect can be partitioned into effect of water energy status (water potential) on cellular activity, effect of water volume on cellular motility, and aqueous diffusion of substrate and nutrients, as well as the effect of air content and gas-diffusion pathways on concentration of dissolved oxygen. However, moisture functions widely used in SOM decomposition models are often based on empirical functions rather than robust physical foundations that account for these disparate impacts of soil water. The contributions of soil water content and water potential vary from soil to soil according to the soil water characteristic (SWC), which in turn is strongly dependent on soil texture and structure. The overall goal of this study is to introduce a physically based modeling framework of aerobic microbial respiration that incorporates the role of SWC under arbitrary soil moisture status. The model was tested by comparing it with published datasets of SOM decomposition under laboratory conditions.
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