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The Role of Specific Surface Area and Cation Exchange Capacity in Determining Shale Rock Properties

机译:特定表面积和阳离子交换能力在确定页岩岩石性能方面的作用

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Surface area, surface charge and the exchangeability of cations have long been known as factors in determining the physical and mechanical properties of shales. Such properties are related to the fine grain size of the various clay minerals and also the particle shapes, edge-face microstructural arrangements and are impacted by the likes of salinity and depositional environment. In general, the siltier a given clay or shale, the lower their cation exchange capacity (CEC) and specific surface area (SSA). CEC and SSA have direct impacts on mechanical and flow properties. Wellbore instability can be caused by the development of osmotic pressures resulting from differences between pore fluid composition and drilling fluid composition and the resultant time dependent effects based on permeability. Such instability. can be mitigated by the use of oil-based muds or for example high KC1 water-based muds. Electrical and dielectric properties are also dependent on mineral surface charge and related directly to the CEC of a given shale, especially properties such as resistivity (or conductivity) and permittivity (dielectric constant). This paper will detail SSA and CEC values of shales from multiple basins worldwide and also from individual boreholes to demonstrate their role for shale rock properties.
机译:表面积,表面电荷和阳离子的可交换性长期被称为确定Halales的物理和机械性能的因素。这些性质与各种粘土矿物的细粒尺寸有关,以及颗粒形状,边缘面部微观结构布置,并且受到盐度和沉积环境的影响。通常,淤积粘土或页岩,其阳离子交换能力(CEC)和比表面积(SSA)较低。 CEC和SSA对机械和流动性能直接影响。井筒不稳定性可以由孔隙流体组合物和钻井液组合物之间产生的渗透压的发展和基于渗透率的所得时间依赖性效应引起的渗透压引起。这种不稳定。可以通过使用油基泥浆或例如高KC1水基泥浆来缓解。电气和介电性能也取决于矿物表面电荷,并且直接相关到给定页岩的CEC,尤其是电阻率(或导电性)和介电常数(介电常数)。本文将详细介绍来自全球多个盆地的SSA和CEC值,以及各个钻孔,以展示它们对页岩岩石特性的作用。

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