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Organosulfur Compounds: Molecular and Isotopic Evolution from Biota to Oil and Gas

机译:有机硫化合物:从生物群到石油和天然气的分子和同位素演化

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Organosulfur compounds (OSCs) play important roles in the formation, preservation, and thermal degradation of sedimentary organicmatter and the associated petroleum generation. Improved analytical techniques for S isotope analysis have recently enhanced our understanding of the mechanisms for OSC formation and maturation and their associated S isotope distributions. The close interaction of OSCs with inorganic S species throughout their formation and maturation affects their ~(34)S/~(32)S isotopic ratio (δ~(34)S), forming specific signatures for distinct sources and processes. Ultimately, thermal maturation homogenizes the δ~(34)S values of different fractions and individual compounds. Reservoir processes such as thermochemical sulfate reduction (TSR) introduce exogenous and isotopically distinct S into hydrocarbons and can significantly change the δ~(34)S of petroleum or kerogen. Specific OSCs react at different rates and thus can be used to evaluate the extent of processes such as TSR. This article reviews factors that affect the ~(34)S/~(32)S isotopic distribution of OSCs along pathways of formation, diagenesis, and thermal alteration.
机译:有机硫化合物(OSC)在沉积有机物的形成,保存和热降解以及相关的石油产生中起重要作用。最近,用于S同位素分析的改进分析技术增强了我们对OSC形成和成熟机理及其相关S同位素分布的理解。 OSC与无机S物种在其形成和成熟过程中的紧密相互作用会影响它们的〜(34)S /〜(32)S同位素比(δ〜(34)S),形成不同来源和过程的特定特征。最终,热成熟使不同馏分和单个化合物的δ〜(34)S值均匀化。诸如热化学硫酸盐还原(TSR)的油藏过程会将外源和同位素上不同的S引入烃中,并且可以显着改变石油或干酪根的δ〜(34)S。特定的OSC以不同的速率反应,因此可以用来评估诸如TSR之类的过程的程度。本文回顾了影响OSC的〜(34)S /〜(32)S同位素沿着形成,成岩作用和热蚀变途径分布的因素。

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