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Interstitial Light Hydrocarbon Gases in Jumbo Piston Cores Offshore Indonesia: Thermogenic or Biogenic?

机译:巨型轻型碳氢化合物气体在朱姆博活塞核心海核心海底:热原或生物学?

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Interstitial light hydrocarbon gases were measured to 12 m below seabed in two Jumbo piston cores acquired in deepwater sediments offshore Indonesia. Determinations were made for dissolved methane, ethene, ethane, propene, propane, isobutane, n-butane, iso-pentane, and n-pentane, as well as for carbon dioxide. Stable carbon isotopic ratios of methane and ethane were also measured. Such gas measurements are typically performed in deepwaters around the world as elements of surface geochemical exploration programs for the purpose of distinguishing biogenic from thermogenic sources in seep gases. Various gas source models have been developed in the literature to aid in accurate interpretation for systems that have been biodegraded, fractionated, and/or mixed during migration. In these models, assumptions are made about the ranges of composition of the end-member gas types and maturities. The compositional ranges of the thermogenic and biogenic end members have been empirically derived from a large database of drilled-hole gas data and various theoretical considerations. In addition to this literature base, tens of thousands of near-surface marine sediment cores have been acquired worldwide and analyzed for interstitial gases on a proprietary SGE basis over the last 35-40 years. Interpretation of these results has helped to fine-tune the accepted end-member compositions of the source models. However, essentially all of the SGE sediment cores have reached a maximum 5 m below the seabed. Our acquisition and analysis of cores down to 12 m has revealed information about gas compositions not apparent from the former SGE coring efforts. In particular, ethane concentrations are in the accepted thermogenic range, but their stable carbon isotopic compositions are not. Near-surface gases formerly interpreted to have an unambiguous thermogenic component are here shown to be purely biogenic. Our conclusions may change the boundaries of the biogenic end member used for the indication of thermogenic gas traces in near-surface sediments.
机译:在海底在印度尼西亚深水沉积物中获得的两种Jumbo活塞芯的海床下,测量了间质烃气体。对溶解甲烷,乙烯,乙烷,丙烯,丙烷,异丁烷,正丁烷,异戊烷和正戊烷以及二氧化碳制备测定。还测量甲烷和乙烷的稳定碳同位素比例。这种气体测量通常在世界各地的深水中作为表面地球化学勘探程序的元素进行,以区分生物原源在渗漏气体中的热源。在文献中已经开发了各种气体源模型,以帮助准确地解释已经在迁移期间生物降解,分馏和/或混合的系统。在这些模型中,假设是关于端构件气体类型的组成的范围和到期性。热生物和生物端构件的组成范围已经从钻孔空气数据和各种理论考虑的大型数据库源自源自源自源自大型数据库。除了这种文学基础之外,已经在全球范围内获得了成千上万的近表面海洋沉积核心,并在过去35-40岁的基础上分析了专有的间质气体。解释这些结果有助于微调源模型的已接受的最终成员组成。然而,基本上所有的SGE沉积物核心都达到了海底下方的最大5米。我们的收购和分析核心下降至12米,揭示了有关前雕刻芯效力的气体组合物的信息。特别地,乙烷浓度在接受的热源范围内,但它们的稳定碳同位素组合物不是。以前解释为具有明确的热生成的近表面气体在此显示纯生物是。我们的结论可以改变生物末端构件的边界,用于近表面沉积物中的热气体痕迹。

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