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Microbial kinetics and thermodynamic (MKT) processes for soil organic matter decomposition and dynamic oxidation-reduction potential: Model descriptions and applications to soil N_2O emissions

机译:土壤有机物分解和动态氧化还原势的微生物动力学和热力学(MKT)过程:模型描述和对土壤N_2O排放的应用

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A conversion of the global terrestrial carbon sink to a source is critically dependent on the microbially mediated decomposition of soil organic matter (SOM). We have developed a detailed, process-based, mechanistic model for simulating SOM decomposition and its associated processes, based on Microbial Kinetics and Thermodynamics, called the MKT model. We formulated the sequential oxidation-reduction potential (ORP) and chemical reactions undergoing at the soil-water zone using dual Michaelis-Menten kinetics. Soil environmental variables, as required in the MKT model, are simulated using one of the most widely used watershed-scale models - the soil water assessment tool (SWAT). The MKT model was calibrated and validated using field-scale data of soil temperature, soil moisture, and N2O emissions from three locations in the province of Saskatchewan, Canada. The model evaluation statistics show good performance of the MKT model for daily soil N2O simulations. The results show that the proposed MKT model can perform better than the more widely used process-based and SWAT-based models for soil N2O simulations. This is because the multiple processes of microbial activities and environmental constraints, which govern the availability of substrates to enzymes were explicitly represented. Most importantly, the MKT model represents a step forward from conceptual carbon pools at varying rates. (C) 2019 Elsevier Ltd. All rights reserved.
机译:全球陆地碳汇向源的转化主要取决于微生物介导的土壤有机质(SOM)的分解。我们基于微生物动力学和热力学,开发了一个详细的基于过程的机械模型来模拟SOM分解及其相关过程,称为MKT模型。我们使用双重Michaelis-Menten动力学公式,确定了在土壤-水区发生的顺序氧化还原电位(ORP)和化学反应。 MKT模型中要求的土壤环境变量是使用最广泛使用的分水岭规模模型之一-土壤水评估工具(SWAT)进行模拟的。使用加拿大萨斯喀彻温省三个地点的土壤温度,土壤湿度和N2O排放的现场规模数据对MKT模型进行了校准和验证。模型评估统计数据表明,MKT模型在日常土壤N2O模拟中表现良好。结果表明,所提出的MKT模型在土壤N2O模拟中的性能优于更广泛使用的基于过程和基于SWAT的模型。这是因为明确表示了控制微生物对酶的底物可用性的多种微生物活动和环境限制过程。最重要的是,MKT模型代表了以不同速率从概念性碳库中迈出的一步。 (C)2019 Elsevier Ltd.保留所有权利。

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