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The Millennial model: in search of measurable pools and transformations for modeling soil carbon in the new century

机译:千禧一代模型:寻找可衡量的池和用于在新世纪建模土壤碳的转变

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Abstract Soil organic carbon (SOC) can be defined by measurable chemical and physical pools, such as mineral-associated carbon, carbon physically entrapped in aggregates, dissolved carbon, and fragments of plant detritus. Yet, most soil models use conceptual rather than measurable SOC pools. What would the traditional pool-based soil model look like if it were built today, reflecting the latest understanding of biological, chemical, and physical transformations in soils? We propose a conceptual model—the Millennial model—that defines pools as measurable entities. First, we discuss relevant pool definitions conceptually and in terms of the measurements that can be used to quantify pool size, formation, and destabilization. Then, we develop a numerical model following the Millennial model conceptual framework to evaluate against the Century model, a widely-used standard for estimating SOC stocks across space and through time. The Millennial model predicts qualitatively similar changes in total SOC in response to single factor perturbations when compared to Century, but different responses to multiple factor perturbations. We review important conceptual and behavioral differences between the Millennial and Century modeling approaches, and the field and lab measurements needed to constrain parameter values. We propose the Millennial model as a simple but comprehensive framework to model SOC pools and guide measurements for further model development.
机译:摘要土壤有机碳(SOC)可由可测量的化学物质和物理池(如矿物相关的碳,物理捕获)聚集体,溶解碳和植物碎片的碎片。然而,大多数土壤模型使用概念而不是可衡量的SOC池。如果是今天建造的传统池的土壤模型是什么样的,反映了对土壤中生物,化学和物理转化的最新理解?我们提出了一个概念模型 - 千禧一代模型 - 将池定义为可测量实体。首先,我们在概念上讨论相关的池定义,并且在可用于量化池大小,形成和稳定化的测量方面。然后,我们开发了千禧年模型概念框架的数值模型,以评估世纪模型,这是一种广泛使用的标准,用于估计空间跨空间和时间。千禧一代模型预测全世纪相比单因素扰动的总SOC的定性相似的变化,但对多因素扰动的不同反应不同。我们在千禧年和世纪建模方法之间回顾了重要的概念和行为差异,以及限制参数值所需的现场和实验室测量。我们提出了千禧一代模型作为模拟SOC池的简单而全面的框架,并为进一步的模型开发进行指导测量。

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