首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Compound- and position-specific carbon isotopic signatures of abiogenic hydrocarbons from on-land serpentinite-hosted Hakuba Happo hot spring in Japan
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Compound- and position-specific carbon isotopic signatures of abiogenic hydrocarbons from on-land serpentinite-hosted Hakuba Happo hot spring in Japan

机译:来自陆地蛇形宿主托管的Hakuba Hakuba Happo Hot Spring的复合碳酸碳的特异性碳同位素特征

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It has been proposed that serpentinite-hosted hydrothermal/hot spring systems played a significant role in the origin and early evolution of life on early Earth because abiogenic synthesis of organic compounds may accompany serpentinization. However, production mechanisms for apparently abiogenic hydrocarbons that have been observed in the ongoing serpentinizing systems are still poorly constrained. We report a new geochemical study of hydrocarbons in an on-land serpentinite-hosted hot spring in Hakuba Happo, Japan. We have conducted both compound-specific and position-specific carbon isotopic analyses of the observed C-1 to C-5 hydrocarbons. A positive linear relationship between the delta C-13 values and the inverse carbon number is found in C-1 to C-5 straight-chain alkanes in the Happo sample. This isotopic trend is consistent with a simple polymerization model developed in this study. Our model assumes that, for any particular alkane, all of the subsequently added carbons have the same isotopic composition, and those are depleted in C-13 with respect to the first carbon in the growing carbon chain. The fit of this model suggests that Happo alkanes can be produced via polymerization from methane with a constant kinetic isotopic fractionation of -8.9 +/- 1.0%. A similar carbon isotopic relationship among alkanes has been observed in some serpentinite-hosted seafloor hydrothermal systems, indicating that the same process is responsible for the abiological hydrocarbon in general serpentinization fields, not only in the Hakuba Happo hot spring. Moreover, our model is also applicable to other potentially abiogenic natural gases and experimentally synthesized hydrocarbon products. For the first time, the intramolecular C-13 composition of propane from a natural sample derived from a serpentinite-hosted system was determined. The intramolecular C-13 distribution in propane shows the important potential to identify different polymerization mechanisms that cannot be discriminated by compound-specific isotopic analysis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已经提出,蛇形素托管的水热/温泉系统在早期地球上生命的起源和早期演进中起着重要作用,因为有机化合物的辐条合成可以伴随蛇形化。然而,在正在进行的蛇形化系统中观察到的明显辐射烃的生产机制仍然受到限制。我们举报了日本客家Hakuba Happo的陆地蛇纹石托管温泉中碳氢化合物的新地球化学研究。我们已经进行了观察到的C-1至C-5烃的复合特异性和特异性特异性碳同位素分析。 δC-13值与逆碳数之间的正线性关系在Happo样品中的C-1至C-5直链烷烃中发现。这种同位素趋势与本研究开发的简单聚合模型一致。我们的模型假设,对于任何特定的烷烃,随后的所有添加的碳具有相同的同位素组合物,并且在生长碳链中的第一碳中的第一碳在C-13中耗尽。该模型的适合表明,Happo烷烃可以通过甲烷的聚合产生,恒定的动力学同位素分馏-8.9 +/- 1.0%。在一些蛇形素托管的海底水热系统中观察到烷烃中类似的碳同位素关系,表明相同的过程是一般蛇形化领域的灭绝烃负责,不仅在Hakuba Happo温泉中。此外,我们的模型也适用于其他潜在的辐射天然气和实验合成的烃产品。首次,确定来自来自衍生自蛇形宿主宿主系统的天然样品的丙烷的分子内C-13组成。丙烷中的分子内C-13分布表明了鉴定不同聚合机制的重要潜力,其不能通过化合物特异性同位素分析来区分。 (c)2017 Elsevier Ltd.保留所有权利。

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