2022
DOI: 10.1098/rsif.2022.0276
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An overlooked mechanism underlying the attenuated temperature response of soil heterotrophic respiration

Abstract: Biogeochemical reactions occurring in soil pore space underpin gaseous emissions measured at macroscopic scales but are difficult to quantify due to their complexity and heterogeneity. We develop a volumetric-average method to calculate aerobic respiration rates analytically from soil with microscopic soil structure represented explicitly. Soil water content in the model is the result of the volumetric-average of the microscopic processes, and it is nonlinearly coupled with temperature and other factors. Since… Show more

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