Lucy Malou Henningsen, C. H. Jensen, N. Schovsbo, A. T. Nielsen, G. Pedersen
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引用次数: 4
摘要
在富有机质页岩中,孔隙形成于有机质域中的油气成因过程中。因此,孔隙度与常规储层岩性明显不同。本文首次描述了丹麦博恩霍尔姆地区下古生代页岩的页岩结构和孔隙类型。利用聚焦离子束扫描电子显微镜(FIB-SEM)技术对孔进行了研究,该技术可以获得离子抛光表面的高分辨率SEM图像。页岩孔隙度受沉积组构、矿物组成、成岩作用和油气生成等多种因素的影响(Schieber 2013)。在这里,我们根据Henningsen & Jensen(2017)对Bornholm billegrave -2钻孔的下古生代页岩样本的研究(图1)来讨论其中的一些因素。页岩为干气成熟型(笔石反射率2.3%;Petersen et al. 2013),并被广泛用作丹麦其他地方深埋的古生代页岩的类比(Schovsbo et al. 2011;Gautier et al. 2014)。2015年,丹麦北部的Vendsyssel-1井对丹麦下古生代页岩气进行了测试。在约70米厚的气成熟富有机质层序中发现了天然气(Ferrand et al. 2016)。然而,由于天然气含量过低,许可证随后被放弃。目前的研究证实了Bornholm页岩和Vendsys self -1页岩的孔隙发育非常相似,这表明在丹麦的整个地下地层中都有很高的孔隙度。然而,不同页岩单元的孔隙度发育差异很大,这是丹麦古生代气藏迄今为止被忽视的一个方面。
Shale fabric and organic nanoporosity in lower Palaeozoic shales, Bornholm, Denmark
In organic-rich shales, pores form during oil and gas genesis within organic matter (OM) domains. The porosity thus differs markedly from that of conventional reservoir lithologies. Here we present the first description of shale fabric and pore types in the lower Palaeozoic shales on Bornholm, Denmark. The pores have been studied using the focused ion beam scanning electron microscope (FIB-SEM) technique, which allows for high resolution SEM images of ion polished surfaces. Shale porosity is influenced by many factors including depositional fabric, mineralogical composition, diagenesis and oil and gas generation (Schieber 2013). Here we discuss some of these factors based on a study of lower Palaeozoic shale samples from the Billegrav-2 borehole on Bornholm (Fig. 1) undertaken by Henningsen & Jensen (2017). The shales are dry gas-mature (2.3% graptolite reflectance; Petersen et al. 2013) and have been extensively used as analogies for the deeply buried Palaeozoic shales elsewhere in Denmark (Schovsbo et al. 2011; Gautier et al. 2014). The Danish lower Palaeozoic shale gas play was tested by the Vendsyssel-1 well drilled in northern Jylland in 2015. Gas was discovered within a c. 70 m thick gas-mature, organicrich succession (Ferrand et al. 2016). However, the licence was subsequently relinquished, due to a too low gas content. The present study confirms a close similarity of pore development between the shales on Bornholm and in the Vendsys sel-1 indicating a high porosity within this stratigraphic level throughout the subsurface of Denmark. However, the rather different development of porosity in the different shale units presents a hitherto neglected aspect of the Palaeozoic gas play in Denmark.
期刊介绍:
GEUS Bulletin publishes geoscience research papers, monographs and map descriptions with a focus on Denmark, Greenland and the wider North Atlantic and Arctic region. We welcome submissions that fit this remit. Specifically, we publish:
1.Short articles intended as rapid communications that are of immediate interest to the international geoscience community (these include new research, datasets, methods or reviews)
2.Regular-length articles that document new research or a review of a topic of interest
3.Monographs (single volume works, by arrangement with the editorial office)
4.Maps and descriptive texts (produced by GEUS for Greenland and Denmark, by arrangement with the editorial office)
GEUS Bulletin serves a broad geoscientific readership from research, industry, government agencies, NGOs and special interest groups.