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Hydrogen isotopic (D/H) composition of organic matter during diagenesis and thermal maturation

机译:成岩作用和热成熟过程中有机质的氢同位素(D / H)组成

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摘要

Changes in the D/H ratio of sedimentary organic matter (SOM) during thermal maturation have been difficult to interpret because the effects of hydrogen exchange and kinetic fractionations are confounded in natural samples. Recent analytical developments have significantly improved our understanding of the responsible mechanisms. In this paper, we review experimental and field data that document a progressive increase in the D/H ratio of most organic hydrogen at the bulk and molecular levels, and suggest that the transfer of hydrogen from water to organic matter is the most important mechanism leading to those changes. SOM and water in natural petroleum systems approach a pseudoequilibrium D/H fractionation of about −80 to −110‰. D/H ratios of organic hydrogen can preserve quantitative information about paleoclimate throughout diagenesis, and some qualitative information through catagenesis.
机译:热成熟过程中沉积有机物(SOM)的D / H比的变化很难解释,因为氢交换和动力学分馏的影响在自然样品中是混乱的。最近的分析发展大大改善了我们对负责机制的理解。在本文中,我们回顾了实验和现场数据,这些数据记录了大部分有机氢在体积和分子水平上的D / H比逐渐增加的趋势,并提出了氢从水向有机物的转移是导致氢的最重要机制。这些变化。天然石油系统中的SOM和水接近约-80至-110‰的拟平衡D / H分馏。有机氢的D / H比可在整个成岩过程中保留有关古气候的定量信息,并通过催化作用保留一些定性信息。

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