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A combined integrated multi-method approach for the assessment of the thermal maturity of sedimentary basins

机译:一种组合的集成多方法方法,用于评估沉积盆地的热成熟度

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The reliable assessment of thermal maturity of sedimentary successions is crucial for the evaluation of hydrocarbon generation/expulsion.Uncertainties in thermal maturity assessment up to 0.2-0.3%of vitrinite reflectance values can occur according to commonly adopted parameters(eg.,vitrinite reflec- tance,Tmax,etc.)especially when exploring Lower Paleozoic shale gas targets that are devoid of vitrinite macerals.This level of uncertainties is not acceptable in thermal modelling and can negatively influence decisions on the development of prospects. This contribution provides a new methodological workflow to assess thermal maturity of organic matter dispersed in sediments and hosting sedimentary succession to largely reduce such uncertainties. The multi-method approach consists in combining optical analysis and Raman and FTIR spectroscopy of organic matter dispersed in sediments with X-ray diffraction of the inorganic fine-grained fraction of sedimentary successions. The four techniques have been systematically compared in diagenesis for the first time.Results are from an about 3000 m deep Cretaceous-Silurian section that shows a regular and highly resolved trend of increasing thermal maturity with depth on the base of spectroscopic and XRD data,and a general agreement among vitrinite reflectance,FTIR quantitative and qualitative indexes,pyrolysis and Raman indexes.Levels of thermal maturity of dispersed organic matter range from immature-early mature stages of hydrocarbon generation in the Cretaceous-Jurassic section to mid-late mature in the Triassic and Silurian units.Moreover,fine grained sedimentary rocks record an increasing trend of thermal maturity from early diagenesis in the Cretaceous-Jurassic section to late diagenesis for the Triassic and Silurian sections.
机译:沉积序列的热成熟度的可靠的评估是用于烃生成/ expulsion.Uncertainties在热成熟度评估可达镜质组反射值的0.2-0.3%可以根据通常采用的参数发生(例如,镜质组反射的评价关键,最高温度等),特别是当探索是没有不确定性的镜质体macerals.This水平的下古生界页岩气指标不热建模可以接受的,可以在发展前景产生负面影响的决定。这种贡献提供了一个新的方法的工作流程,以评估分散沉积物和托管沉积层序,以大大减少这种不确定性有机质热成熟度。多方法的方法在于合成光学分析和分散在沉积物与沉积序列的无机细粒部分的X射线衍射有机物拉曼和红外光谱。四个技术已经在成岩被系统相比,所述第一time.Results是从约3000米深白垩 - 志留部分,其示出了光谱和X射线衍射数据的基础上增加热成熟度随深度的规则和高分辨率的趋势,并镜质组反射,FTIR定量和定性指标,热解和分散有机物范围热成熟的拉曼indexes.Levels之间的总协议从不成熟早期在白垩纪侏罗纪部分成熟烃生成的阶段三叠中后期成熟和志留系units.Moreover,细粒沉积岩从白垩纪 - 侏罗纪部分早期成岩记录热成熟度有增加的趋势,以晚成岩为三叠纪和志留系部分。

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