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首页> 外文期刊>Russian journal of Pacific geology >Hydrocarbon Potential of Paleo- and Modern Suprasubduction Provinces: Tectonic, Geodynamic, Mineralogical-Geochemical, and Biochemical Aspects
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Hydrocarbon Potential of Paleo- and Modern Suprasubduction Provinces: Tectonic, Geodynamic, Mineralogical-Geochemical, and Biochemical Aspects

机译:古和现代Suprasubdection省份的碳氢化合物潜力:构造,地球动力学,矿物学 - 地球化学和生物化学方面

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The paper is devoted to the integrated analysis of the interdisciplinary problem of the genesis of hydrocarbon potential in suprasubduction provinces. A geodynamic model is proposed for the formation of petroleum pools on the shelves of the Meso-Cenozoic back-arc basins in the western Pacific Ocean. Original data on the tectonics and composition of the mantle peridotites of the Polar Ural ophiolite complexes are given for comparison. These data are used to consider the low-temperature lizardite–chrysotile and high-temperature antigorite types of peridotite serpentinization in the back-arc basins and in the mantle wedges above the subduction zones of the paleozoic Paleouralian ocean. It is established that these processes are responsible for the abiogenic synthesis of hydrogen and methane. Of great theoretical and applied importance are the conclusions concerning the high antiquity of serpentinization as a hydrogen source, the possible relationships of the origin of life and its early evolution with hydrogen emission in the benthal, the predominance of chemoautotrophic prokaryotes with hydrogen exchange among the primary producers of organic matter in anaerobic conditions, and the high probability of naphthidogenesis based on the prokaryotic communities in the Archean and Proterozoic. The origin of hydrocarbons in the framework of the considered model is regarded from a viewpoint of a polygenetic paradigm of oil and gas generation.
机译:本文致力于省麻管省省份烃潜力成因跨学科跨学科综合分析。提出了一种地球动力学模型,用于在西太平洋中西洋学岩体背弧盆地的架上形成石油池。给出了对极性尿布岩配合物的构造和组成的原始数据进行比较。这些数据用于考虑后弧盆地中的低温蜥蜴菊甲状腺肿和高温脱光型橄榄石蛇形化,并在古生代古育海洋的俯冲区上方的地幔楔形物中。建立这些过程负责氢和甲烷的致力学合成。理论和应用重要性是关于蛇形化作为氢气源的高古代古代古代的结论,生命起源的可能性及其早期进化与氢气发射的氢气发射,化学营养性原核与氢交换中的主要促进厌氧条件下有机质生产商,以及基于原始核心群体的萘甲酰胺的高可能性。从石油和气体产生的多基因范式的观点来看,所考虑模型框架中的碳氢化合物的起源。

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