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Pore-scale investigation on the response of heterotrophic respiration to moisture conditions in heterogeneous soils

机译:异养呼吸对非均质土壤水分条件响应的孔隙尺度研究

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The relationship between microbial respiration rate and soil moisture content is an important property for understanding and predicting soil organic carbon degradation, CO2 production and emission, and their subsequent effects on climate change. This paper reports a pore-scale modeling study to investigate the response of heterotrophic respiration to moisture conditions in soils and to evaluate various factors that affect this response. X-ray computed tomography was used to derive soil pore structures, which were then used for pore-scale model investigation. The pore-scale results were then averaged to calculate the effective respiration rates as a function of water content in soils. The calculated effective respiration rate first increases and then decreases with increasing soil water content, showing a maximum respiration rate at water saturation degree of 0.75, which is consistent with field and laboratory observations. The relationship between the respiration rate and moisture content is affected by various factors, including pore-scale organic carbon bioavailability, the rate of oxygen delivery, soil pore structure and physical heterogeneity, soil clay content, and microbial drought resistivity. Overall, this study provides mechanistic insights into the soil respiration response to the change in moisture conditions, and reveals a complex relationship between heterotrophic microbial respiration rate and moisture content in soils that is affected by various hydrological, geophysical, and biochemical factors.
机译:微生物呼吸速率与土壤水分之间的关​​系是了解和预测土壤有机碳降解,CO2产生和排放及其对气候变化的后续影响的重要属性。本文报告了一个孔隙尺度模型研究,以研究异养呼吸对土壤水分条件的响应,并评估影响该响应的各种因素。使用X射线计算机断层摄影术得出土壤孔隙结构,然后将其用于孔隙尺度模型研究。然后将孔隙尺度结果取平均值,以计算有效呼吸速率与土壤中水分的关系。计算得出的有效呼吸速率随土壤含水量的增加先增加然后减小,在水饱和度为0.75时显示最大呼吸速率,这与现场和实验室观察结果一致。呼吸速率与水分含量之间的关系受多种因素影响,包括孔隙尺度的有机碳生物利用度,氧气输送速率,土壤孔隙结构和物理非均质性,土壤黏土含量以及微生物抗旱性。总的来说,这项研究提供了对土壤呼吸对湿度条件变化的响应的机械学见解,并揭示了异养微生物呼吸速率与土壤水分含量之间的复杂关系,该关系受各种水文,地球物理和生化因素的影响。

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