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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Methane sources and sinks in continental sedimentary systems: New insights from paired clumped isotopologues (CH3D)-C-13 and (CH2D2)-C-12
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Methane sources and sinks in continental sedimentary systems: New insights from paired clumped isotopologues (CH3D)-C-13 and (CH2D2)-C-12

机译:大陆沉积系统中的甲烷来源和水槽:配对丛生同位素(CH3D)-C-13和(CH2D2)-C-12的新见解

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摘要

Stable isotope compositions of methane (delta C-13 and delta D) and of short-chain alkanes are commonly used to trace the origin and fate of carbon in the continental crust. In continental sedimentary systems, methane is typically produced through thermogenic cracking of organic matter and/or through microbial methanogenesis. However, secondary processes such as mixing, migration or biodegradation can alter the original isotopic and composition of the gas, making the identification and the quantification of primary sources challenging. The recently resolved methane 'clumped' isotopologues Delta(CH3D)-C-13 and Delta(CH2D2)-C-12 are unique indicators of whether methane is at thermodynamic isotopic equilibrium or not, thereby providing insights into formation temperatures and/or into kinetic processes controlling methane generation processes, including microbial methanogenesis.
机译:甲烷(DELTA C-13和DELTA D)和短链烷烃的稳定同位素组合物通常用于追踪碳在欧式地壳中的碳的起源和命运。 在大陆沉积体系中,通常通过有机物质的热裂化和/或通过微生物甲烷化产生甲烷。 然而,诸如混合,迁移或生物降解的二级过程可以改变原始同位素和气体的组成,使鉴定和定量主要来源挑战。 最近分辨的甲烷的块状'同位素δ(CH3D)-C-13和DELTA(CH2D2)-C-12是甲烷是否处于热力学同位素平衡的独特指标,从而为形成温度和/或进入动力学提供洞察 控制甲烷生成过程的方法,包括微生物甲烷。

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