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Application of PeakForce tapping mode of atomic force microscope to characterize nanomechanical properties of organic matter of the Bakken Shale

机译:原子力显微镜PeakForce攻丝模式在表征巴肯页岩有机质纳米力学特性中的应用

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Organic-rich shale, which is a heterogeneous material, has been studied extensively from various perspectives. Among all the components that constitute shale, organic matter is less known in regards to its mechanical properties. Since organic matter is relatively the softer part compared to inorganic minerals, high concentrations of it can have a significant impact on bulk mechanical properties of the rock, which can affect field operations such as hydraulic fracturing. In this study, four shale samples from the Bakken Formation in Williston Basin, North Dakota, were examined by a combination of experimental methods including X-ray diffraction (XRD), Rock-Eval pyrolysis, optical and scanning electron microscopy (SEM) along with atomic force microscope (AFM). PeakForce Quantitative Nano-mechanical Mapping mode in AFM was used particularly, to map the modulus of organic matter in nano-scale. XRD analysis showed that quartz and clays are the main constituent minerals in the shale samples. Geochemical results showed that all samples are extremely organic-rich, and the organic matter is mostly type II, varying from thermally immature to oil generation window. Elastic properties test results demonstrated that surface topographic features including pores, microfractures and grain boundaries would have a negative impact on AFM data, and a data filtering procedure was conducted on AFM data to get rid of wrong values. The elastic modulus of identified organic matter (bitumen and micrinite) was measured in the range of 7-23 GPa with a significant heterogeneity in a single studied organic particle and dependent upon the type of organic particle.
机译:富含有机物的页岩是一种非均质材料,已经从各种角度进行了广泛的研究。在构成页岩的所有组分中,有机物的机械性能鲜为人知。由于有机物相对于无机矿物而言是较软的部分,因此有机物的高浓度会对岩石的整体机械性能产生重大影响,从而影响水力压裂等现场作业。在这项研究中,北达科他州威利斯顿盆地Bakken组的四个页岩样品通过包括X射线衍射(XRD),Eval-Eval热解,光学和扫描电子显微镜(SEM)在内的实验方法的组合进行了研究。原子力显微镜(AFM)。特别是使用AFM中的PeakForce定量纳米机械映射模式,以纳米级映射有机物的模量。 XRD分析表明,石英和粘土是页岩样品中的主要矿物成分。地球化学结果表明,所有样品都富含有机物,有机物大部分为II型,从热不成熟到生油窗口不等。弹性性能测试结果表明,包括孔隙,微裂缝和晶界在内的表面形貌特征将对AFM数据产生负面影响,并对AFM数据执行了数据过滤程序以消除错误的值。确定的有机物(沥青和微晶石)的弹性模量在7-23 GPa的范围内,在单个研究的有机颗粒中具有明显的异质性,具体取决于有机颗粒的类型。

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