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The case for vestiges of Early Solar System biota in carbonaceous chondrites: petroleum geochemical snapshots and possible future petroleum prospects on Mars Expedition

机译:含碳软骨中早期太阳系Biota的案例:石油地球化学快照和可能的未来石油前景在火星探险中

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This research documents the analysis and interpretation of selected Carbonaceous Chondrites (CC) including Murchison, Allende, NWA 3003, Dhofar 735, Orgueil, Tagish Lake and Vigarano using organic petrology, scanning electron microscopy, and petroleum geochemistry The kerogen microstructures and bitumen within CCs closely resemble remnant 2,5 Ga terrestrial microbial-like structures and their biodegraded components and solid bitumen. In both instances, organoclasts are associated with framboidal iron sulfides or oxides and clay-like minerals, The organic-rich kerogens within three CCs (especially Murchison) might have served as petroleum source rocks for the early generation of hydrocarbons The maturity varies between 0.7% (Orgueil) and 1.24% (Murchison), to 5.1 % Ro (Vigarano) with predicted maturation temperatures of 100° to 475°C Geochemical analysis of selected CCs (Murchison, Orgueil, and Tagish Lake) reveal the organic richness and the presence of low molecular weight n-alkanes (C10 to C20), complex cyclo-and isoalkanes, nonhydrocarbons, elemental sulfur with abundant aromatic compounds, most of them similar to bacterial and algal derived petroleum products. Apart from the concept of panspermia, the data highlights that three CCs sustained a formation temperature (<200°C) capable of supporting bacterial growth in a cooler early Solar System environment In effect, the information encoded within these extraterrestrial sediments represents a cosmic analogue to terrestrial geopolymers and bitumen that may include some crude oil biomarkers. Therefore, the authors propose a model of a "universal unconventional petroleum system", which implies a prospect of oil and gas within the Martian environment and elsewhere within the Solar System.
机译:本研究记录了所选择的碳质Chondrites(CC)的分析和解释,包括Murchison,Allende,NWA 3003,Dhofar 735,Orgueil,Tagish和Vigarano使用有机探测器,扫描电子显微镜和石油地球化学在CCS中密切相关类似于残余的2,5 Ga陆生微生物样结构及其生物降解组分和固体沥青。在这两种情况下,有机钙与硫化硫化铁或氧化物和粘土状矿物质有关,三种CCS(特别是Murchison)中的有机富有的kerogens可能是用于早期碳氢化合物的石油源岩,到期时间在0.7%之间变化。 (Orgueil)和1.24%(Murchison的),5.1%RO(Vigarano)与选定的CC(Murchison的,Orgueil和塔吉什湖)的100℃至475℃地球化学分析的预测成熟温度揭示有机丰富度和存在低分子量正烷烃(C10至C20),复合环 - 和异烷烃,芳烃,元素硫,具有丰富的芳族化合物,大多数与细菌和藻类衍生的石油产品相似。除了粉虱的概念外,数据突出显示,三个CCS持续一种能够在较冷的早期太阳系环境中支持细菌生长的形成温度(<200℃),在这些外星沉积物内编码的信息代表宇宙类似物可包括一些原油生物标志物的陆地地缘聚合物和沥青。因此,作者提出了一种“普遍的非传统石油系统”的模型,这意味着火星环境中的石油和天然气的前景以及太阳系内的其他地方。

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