首页> 外文期刊>Earth-Science Reviews: The International Geological Journal Bridging the Gap between Research Articles and Textbooks >Clay mineralogy and unconventional hydrocarbon shale reservoirs in the USA. II. Implications of predominantly illitic clays on the physico-chemical properties of shales
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Clay mineralogy and unconventional hydrocarbon shale reservoirs in the USA. II. Implications of predominantly illitic clays on the physico-chemical properties of shales

机译:美国的粘土矿物学和非常规烃页岩储层。二。页岩的主要化学性质对页岩理化性质的影响

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Re-interpretation of R3 mixed-layer illite-smectite (VS) as consisting only of thin (<50 angstrom) illite leads to the question of whether this really matters in the context of the overall physico-chemical properties of the shales in which this clay material is found, such as in the unconventional hydrocarbon shale reservoirs of the USA. It is argued here that the distinction between regarding the clay mineralogy of these shales as partly smectitic or wholly illitic is important, particularly when one considers the interactions between charged clay surfaces and aqueous pore fluids. These interactions are broadly discussed within the framework of the double electric layer (DEL) theory which successfully accounts for a range of phenomena that are observed in colloidal sols of clay minerals dispersed in aqueous solutions of varied chemical composition. Particle interactions in these sols depend to a large extent on the thickness of the DEL. In general, this thickness is controlled by the balance between the external surface charge density of the clay particle and the electrolyte concentration of the aqueous solution, because the higher the surface charge density the thicker will be the DEL, and the more concentrated the aqueous solution the thinner will be the DEL. Although shales are not colloids, in situations where the pore size is similar to that of the thickness of the DEL the same principles that govern particle-fluid interactions in the colloidal state should still apply. It turns out that the pore size distribution in shales is probably mainly in the mesopore range (2-50 angstrom) and the lower part of this range certainly falls within the thickness of the DEL associated with highly charged particles. The external surface charge density of illite may be up to about 5 times greater than that of smectite and for this reason may be expected to be highly reactive, particularly when present as fine-grained high surface area particles, and to impact upon at least some of the physico-chemical properties of shale as a whole. The characteristics to be discussed include particle size, surface area, ion exchange properties, porosity, swelling and dispersion, and these, in turn, could affect various aspects of unconventional hydrocarbon reservoirs, particularly declines in permeability from initially promising values. Many other processes might be relevant such as creep behaviour of the lithology, which is heavily influenced by clay type and abundance, salt precipitation and induced downhole diagenesis. In addition, the cation exchange between the dominant clay mineral and the fluid used for hydraulic fracture is undoubtedly an issue that needs to be addressed. (C) 2016 Elsevier B.V. All rights reserved.
机译:将R3混合层伊利石-蒙脱石(VS)重新解释为仅由稀薄的伊利石(<50埃)构成,这就引起了一个问题,即这在页岩的整体物理化学性质的背景下是否真的重要?发现了粘土材料,例如在美国的非常规油气页岩储层中。在此认为,将这些页岩的粘土矿物学部分地视为近晶或完全硅藻土是重要的,特别是当考虑带电粘土表面与含水孔隙流体之间的相互作用时。在双电层(DEL)理论的框架内对这些相互作用进行了广泛的讨论,该理论成功地解释了在各种化学组成的水溶液中分散的粘土矿物的胶体溶胶中观察到的一系列现象。这些溶胶中的颗粒相互作用在很大程度上取决于DEL的厚度。通常,该厚度由粘土颗粒的外表面电荷密度和水溶液的电解质浓度之间的平衡来控制,因为表面电荷密度越高,DEL越厚,水溶液越浓。较薄的将是DEL。尽管页岩不是胶体,但在孔径与DEL厚度相似的情况下,仍应应用在胶体状态下控制粒子-流体相互作用的相同原理。事实证明,页岩中的孔径分布可能主要在中孔范围内(2-50埃),并且该范围的下部肯定落在与高电荷粒子相关的DEL的厚度之内。伊利石的外表面电荷密度可能比蒙皂石的外表面电荷密度高约5倍,因此,可以预期它具有很高的反应性,特别是当以细颗粒的高表面积颗粒形式存在时,并且会影响至少一些页岩整体的理化特性要讨论的特征包括粒径,表面积,离子交换特性,孔隙率,溶胀和分散,这些反过来又可能影响非常规油气藏的各个方面,尤其是渗透率从最初的有希望的值下降。许多其他过程也可能是相关的,例如岩性的蠕变行为,这受粘土类型和丰度,盐分沉淀和井下成岩作用的影响很大。另外,占优势的粘土矿物和用于水力压裂的流体之间的阳离子交换无疑是一个需要解决的问题。 (C)2016 Elsevier B.V.保留所有权利。

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