首页> 外文会议>NATC North Africa Technical Conference >Hot Shales Facies Heterogeneity: Highlights from the Mineralogical and Geochemical Analyses of the Lower Silurian Source Rock of a Palaezoic Basin (SW Algeria).
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Hot Shales Facies Heterogeneity: Highlights from the Mineralogical and Geochemical Analyses of the Lower Silurian Source Rock of a Palaezoic Basin (SW Algeria).

机译:Hot Shales 相片异质性:来自古古古河流域的下硅里利亚源岩(SW Algeria)的矿物学和地球化学分析的亮点。

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In Northern Africa, the Lower Silurian organic-rich shales charge both intra-paleozoic and basal Triassic reservoirs and might have an important potential for shale gas. The shales were deposited in a confined marine environment during the Lower Silurian transgression. On the Gondwana scale, they are laterally discontinuous while their distribution and thickness are controlled by palaeo-reliefs inherited from tectonic and Ordovician glacial events (Luning et al., 2000). On the field-scale, the mineralogical and geochemical analyses of cutting samples indicate significant vertical and lateral facies variations, which contradict the apparent homogeneity of this formation. The study is based on 80 cutting samples from 5 wells of a Palaezoic basin in SW Algeria, with a maximum spacing of 13 km (Fig. 1). Each sample has been analysed in terms of its mineralogy / petrography (QEMSCAN analysis) and organic matter features (Rockeval pyrolysis). The fully automated QEMSCAN system (Quantitative Evaluation of Materials by Scanning Electron Microscopy) provided a bulk modal analysis, particle maps, a textural analysis, mineral-by-mineral chemical assay and trace mineral hunt. The cutting analysis facilitated the identification of 21 minerals, which were subsequently clustered into 5 assemblages (1) carbonate, (2) mica, Fe-oxide and siderite, (3) Clay, (4) Clay, pyrite, chlorite and feldspar and (5) remaining minor minerals. The focus of this presentation is to describe the observed heterogeneity and to discuss the parameters that control the vertical and lateral distribution of these facies (sedimentology, diagenesis...). The Lower Silurian “Hot Shales” are highly heterogeneous and exhibit strong vertical and lateral facies variations, which might explain the complex distribution of TOC values and brittleness properties. Through a combination of geochemical and mineralogical analyses from cutting samples, it will be possible to model the source rock heterogeneity, predict the distribution of TOC values and brittleness properties and ultimately evaluate the shale gas potential.
机译:在北非,较低的硅藻土有机富士人既充满了古生代和基础三叠纪储层,也可能对页岩气有重要潜力。在较低的硅藻土的违规期间,Shales沉积在狭窄的海洋环境中。在Gondwana的规模上,它们是横向不连续的,而他们的分布和厚度由构造和奥陶语冰川事件(Luning等,2000)继承。在田间规模的情况下,切割样品的矿物学和地球化学分析表明了显着的垂直和侧面的变化,这与这种形成的表观均匀性相矛盾。该研究基于80个来自SW阿尔及利亚的古古古河盆地的80个切割样品,最大间距为13 km(图1)。在其矿物学/岩体(QEMSCAN分析)和有机物特征(rockeval热解)方面已经分析了每个样品。全自动QEMSCAN系统(通过扫描电子显微镜对材料进行定量评估)提供了批量模态分析,粒子图,纹理分析,矿物化学品系和痕量矿物捕获。切割分析促进了21种矿物质的鉴定,随后将其聚集成5个组装(1)碳酸盐,(2)云母,Fe氧化物和硫酸盐,(3)粘土,(4)粘土,粘土,氯酸盐和长石和( 5)剩余的少量矿物质。该呈现的焦点是描述观察到的异质性,并讨论控制这些相的垂直和横向分布的参数(沉积学,成岩作用......)。下硅子“热链”是高度异构的,表现出强烈的垂直和侧面相变,这可能解释了TOC值和脆性性质的复杂分布。通过从切割样品中的地球化学和矿物学分析的组合,可以模拟源岩异质性,预测TOC值和脆性性能的分布,最终评估页岩气体电位。

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