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Seasonal inter-relationships in atmospheric methane and companion δ13C values: effects of sinks and sources

机译:大气甲烷与伴随的δ13C值之间的季节相互关系:汇和源的影响

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摘要

Recent developments in applying carbon-isotope information to better understand regional and global methane budgets infer a strong role by a highly fractionating seasonal sink such as atomic chlorine. Specifically, OH as the predominant seasonal sink cannot account for the ‘phase ellipses’ based on observed seasonal cycles of methane mixing ratio and isotope ratio, δ~(13)C. Although a strong role by atomic chlorine is inferred empirically, open questions remain about the interplay between sources and sinks in determining the properties of phase ellipses. This paper employs a simple didactic model of the seasonal cycling of atmospheric methane to understand such interplay. We demonstrate that a single seasonal sink and seasonal source act together to imprint anti-phase seasonalities on atmospheric methane and δ~(13)C, which lead to phase ellipses that collapse onto a straight line with slope characteristic of that sink. This explains empirical findings of these anti-phase relationships in three-dimensional modelling studies. We also demonstrate that multiple seasonal sinks acting with a seasonal source can yield surprising properties for the phase ellipse that not only explain some features of phase ellipses reported in modelling studies but also have the potential to explain marked inter-annual variation in phase ellipses based on observation.
机译:利用碳同位素信息以更好地了解区域和全球甲烷预算的最新发展,归因于高度分离的季节性吸收剂(例如原子氯)的强大作用。具体地说,基于观察到的甲烷混合比和同位素比δ〜(13)C的季节性周期,作为主要季节性吸收源的OH不能解释“相椭圆”。尽管可以凭经验推断出原子氯的强作用,但对于确定相椭圆性质的源和汇之间的相互作用仍存在悬而未决的问题。本文采用大气甲烷季节循环的简单教学模型来理解这种相互作用。我们证明了一个单一的季节汇和季节源共同作用在大气甲烷和δ〜(13)C上印上反相位的季节性变化,这导致相椭圆塌陷到具有该汇的斜率特征的直线上。这解释了三维建模研究中这些反相位关系的经验发现。我们还证明,与季节源一起作用的多个季节汇可以产生令人惊讶的相位椭圆属性,这不仅可以解释建模研究中报告的相位椭圆的某些特征,而且还可以根据以下内容解释相位椭圆的明显年际变化:观察。

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