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Stable and radioactive carbon isotope partitioning in soils and saturated systems: a reactive transport modeling benchmark study

机译:土壤和饱和系统中稳定和放射性碳同位素分配:反应运输建模基准研究

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摘要

This benchmark provides the first rigorous test of a three-isotope system [C-12, C-13, and C-14] subject to the combined effects of radioactive decay and both stable equilibrium and kinetic fractionation. We present a series of problems building in complexity based on the cycling of carbon in both organic and inorganic forms. The key components implement (1) equilibrium fractionation between multiple coexisting carbon species as a function of pH, (2) radioactive decay of radiocarbon with associated mass-dependent speciation demonstrating appropriate correction of the Delta C-14 value in agreement with reporting convention, and (3) kinetic stable isotope fractionation due to the oxidation of organic carbon to inorganic forms as a function of time and space in an open, through-flowing system. Participating RTM codes are CrunchTope, ToughReact, Hytec, and The Geochemist's Workbench. Across all problem levels, simulation results from all RTMs demonstrate good agreement.
机译:该基准测试提供了三位同位素系统[C-12,C-13和C-14]的第一次严格测试,受放射性衰减的综合影响和稳定的平衡和动力学分馏。 我们在基于有机和无机形式的碳循环的复杂性中提出了一系列问题。 关键部件在多个共存碳物种之间实现(1)与pH,(2)放射性碳的函数之间的平衡分馏,与相关的质量依赖性形态的放射性腐烂,证明了与报告公约一致的ΔC-14价值的适当校正,以及 (3)动力学稳定同位素分馏,由于有机碳与无机形式的氧化,作为开放式通风系统中的时间和空间的函数。 参与的RTM代码是CrunchTope,努力反映,Hytec和地球化师的工作台。 遍历所有问题级别,所有RTMS的仿真结果表明了良好的一致性。

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