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首页> 外文期刊>Planetary and space science >Towards biomarker analysis of hydrocarbons trapped in individual fluid inclusions: First extraction by ErYAG laser
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Towards biomarker analysis of hydrocarbons trapped in individual fluid inclusions: First extraction by ErYAG laser

机译:进行捕获在单个流体包裹体中的烃的生物标志物分析的方法:首先用ErYAG激光提取

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摘要

Fluid inclusions act as sealed vessels containing information about the fluid environment in which the minerals precipitated, and until decrepitated, the chemical composition of the fluid inside the inclusion stays intact. In many cases fluid inclusions contain trapped hydrocarbons, which may provide useful information in paleontological, organic geochemical and astrobiological research since they act as containers of non-contaminated organic matter with a defined minimum age. Here we present a novel concept for extraction of fluid inclusions in preparation for application to extract single fluid inclusions. The method is based on the illumination of a sample with an ErYAG laser (λ = 2940 nm). The wavelength of the laser is absorbed by water and organic material, and with the minerals encapsulating the inclusions transparent to the wavelength, the fluid will expand and the inclusion will decrepitate. The initial results of our study demonstrate that fluid inclusions can be extracted by the use of an ErYAG laser, and that organic biomarkers may survive the process, readily available for GC-MS analysis.
机译:流体包裹体充当密封的容器,其中包含有关矿物沉淀在其中的流体环境的信息,直到被破坏之前,包裹体内部流体的化学成分保持完整。在许多情况下,流体包裹体中含有被困的碳氢化合物,由于它们可以作为未污染有机物的容器,并具有规定的最低年龄,因此可以在古生物学,有机地球化学和天体生物学研究中提供有用的信息。在这里,我们提出提取流体夹杂物的新概念,以准备提取单个流体夹杂物。该方法基于用ErYAG激光(λ= 2940 nm)照射样品。激光的波长被水和有机材料吸收,并且矿物包裹了对波长透明的内含物,流体将膨胀,内含物将逐渐消失。我们研究的初步结果表明,可以通过使用ErYAG激光来提取流体中的内含物,并且有机生物标记物可以在整个过程中幸存下来,可轻松用于GC-MS分析。

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