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Technical Note: Isotopic corrections for the radiocarbon composition of CO2 in the soil gas environment must account for diffusion and diffusive mixing

机译:技术说明:土壤气体环境中二氧化碳的射频组合物的同位素校正必须考虑扩散和扩散混合

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Earth system scientists working with radiocarbon in organic samples use a stable carbon isotope (δ13C) correction to account for mass-dependent fractionation, but it has not been evaluated for the soil gas environment, wherein both diffusive gas transport and diffusive mixing are important. Using theory and an analytical soil gas transport model, we demonstrate that the conventional correction is inappropriate for interpreting the radioisotopic composition of CO2 from biological production because it does not account for important gas transport mechanisms. Based on theory used to interpret δ13C of soil production from soil CO2, we propose a new solution for radiocarbon applications in the soil gas environment that fully accounts for both mass-dependent diffusion and mass-independent diffusive mixing.
机译:地球系统科学家们使用有机样品中的辐射碳,使用稳定的碳同位素(Δ13C)校正来判断质量依赖性分馏,但尚未评估土壤气体环境,其中漫射气体输送和扩散混合都很重要。使用理论和分析土壤气体输送模型,我们证明传统的校正不适合解释来自生物生产的二氧化碳的放射性同位素组成,因为它不考虑重要的气体输送机制。基于用于解释土壤二氧化碳土壤产量δ13C的理论,我们为土壤气体环境中的无线电碳应用提出了一种新的解决方案,完全占据了质量依赖性扩散和大规模独立的扩散混合。

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