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首页> 外文期刊>Geological Quarterly >Source rock geochemistry, petrography of reservoir horizons and origin of natural gas in the Devonian of the Lublin and Lviv basins (SE Poland and western Ukraine)
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Source rock geochemistry, petrography of reservoir horizons and origin of natural gas in the Devonian of the Lublin and Lviv basins (SE Poland and western Ukraine)

机译:卢布林和利沃夫盆地德文郡水库地平线,岩石地球化学,天然气的起源(Se Poland和Westerne乌克兰)

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摘要

The Rock-Eval source rock characteristics, mineral composition and type-porosity of reservoir horizons, and origin of natural gas in the Devonian of the Lublin and Lviv basins are described. In the Lower Devonian, the TOC content ranges from 0.01 to 1.82 wt.% in the Lublin Basin, and from 0.01 to 0.45 wt.% in the Lviv Basin. Transformation of organic matter varies from immature in the Lochkovian (Lviv Basin) to mature and overmature in the Emsian (Lublin Basin). The organic matter contains mainly Type-ll kerogen, and underwent primary and/or secondary oxidation processes. In the Middle Devonian, the TOC content varies from 0.00 to 1.63 wt.% in the Lublin Basin, and from 0.02 to 0.64 to 2.35 wt.% in the Lviv Basin. The organic matter contains mainly Type-I I kerogen and is immature in the Givetian of the Lviv Basin and mature in the Eifelian of the Lviv Basin and in the Eifelian and Givetian in the Lublin Basin. In the Upper Devonian, the TOC content is from 0.02 to 2.62 wt.% in the Lublin Basin, and from 0.04 to 1.43 wt.% in the Lviv Basin. Type-ll kerogen dominates in both basins. Organic matter is mature in the Upper Devonian in the Lublin Basin and in the Famennian of the Lviv Basin and overmature in the Frasnian of the Lviv Basin. The reservoir horizons in the Devonian of the Lublin and Lviv basins are developed in clastic, carbonate and sulphate rocks. Terrigenous rocks form several separate horizons in the Lower and Middle Devonian of the Lviv Basin, and in the Upper Devonian (Famennian) of the Lublin Basin. Their filtration properties relate to intergranular porosity, while the fracture space has subordinate significance. Carbonate rocks form thick saturated horizons in the Givetian in the Lviv Basin, and in the Eifelian, Givetian and Frasnian in the Lublin Basin. Their filtration properties are produced by fracture porosity. Sulphates and carbonate-sulphate rocks with fracture and cavern porosity play a role as reservoir horizons in the Middle Devonian of the Lublin Basin. The natural gas collected from the Upper Devonian of the Lublin Basin was generated mainly during low-temperature thermogenic processes, from Ordovician-Silurian Type-ll kerogen. The gas from the Middle Devonian reservoirs of the Lviv Basin was produced from Ordovician-Silurian Type-ll kerogen and partly from the Middle and Upper Devonian mixed Type-lll/ll kerogen with maturity from about 0.9 to 1.4%. Carbon dioxide was formed by both thermogenic and microbial processes. Molecular nitrogen was generated mainly through thermal transformation of organic matter and also from destruction of NH_4-rich illite of the clayey facies of the Ordovician-Silurian strata.
机译:描述了岩石源岩特性,储层地域的矿物成分和型孔隙率,以及卢布林和利沃河盆地的探针中的天然气的起源。在较低的德文郡中,TOC含量范围为0.01至1.82重量%。在卢布林盆地中的0.01至1.82重量%,在LVIV盆地中的0.01至0.45重量%。有机物质的转化在洛克夫(LVIV盆地)在EMSIAN(Lublin Bourin)的成熟和过度成熟中不成熟。有机物质主要含有型-11型Kerogen,并进行一次初级和/或二次氧化过程。在中间探测中,TOC含量在卢布林盆地中的0.00至1.63重量%。LVIV盆地中的0.02至0.64至2.35重量%。有机物质主要含有I型Cherogen,在LVIV盆地的LVIV盆地的Givetian和LVIV盆地的eifelian成熟中不成熟,在卢布林盆地的eIFelian和Givetian中。在上探测器中,TOC含量为0.02至2.62重量%。在卢布林盆地中的0.02至2.62重量%,在LVIV盆地中的0.04至1.43重量%。在两个盆地中占据型LL Kerogen。有机质在卢布林盆地的上探险中和在利沃夫盆地的弗拉斯尼亚的弗拉斯尼亚的神仙盆地和多年建筑中成熟。卢布林和利沃夫盆地郡德文郡的水库视野是在碎屑,碳酸盐和硫酸盐岩石中开发的。人造岩石在利沃夫盆地的下部和中德蒙斯和中部侦探中形成了几个单独的视野,并在卢布林盆地的上部德文郡(神农)。它们的过滤性质涉及晶间孔隙率,而裂缝空间具有从属意义。碳酸盐岩体在LVIV盆地的Givetian中形成厚的饱和视野,并在卢布林盆地的eifelian,Givetian和Frasnian中。它们的过滤性能由断裂孔隙率产生。硫酸盐和碳酸盐硫酸盐岩石与骨折和洞穴孔隙度在卢布林盆地中部侦探中的水库视野中起作用。从鲁布林盆地的上部侦察盆地收集的天然气主要在低温热原过程中产生,来自Ordovician-Silurian型LL Kerogen。来自中间侦察盆地的中间侦探储层的气体是由orovician-硅尔型-LL角蛋原产生的,部分来自中间和上部探针混合型-LLL / L1 Kerogen,其成熟度为约0.9至1.4%。通过热和微生物方法形成二氧化碳。主要通过有机物质的热转化产生分子氮,以及奥莫利安 - 硅里利亚地区的粘土相的NH_4富含NH_4的富有NH_4的富有的Imlite。

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