Chattopadhyay Basab, Madathiparambil Aldritt S, Mürer Fredrik K, Cerasi Pierre, Chushkin Yuriy, Zontone Federico, Gibaud Alain, Breiby Dag W
PoreLab, Department of Physics, Norwegian University of Science and Technology (NTNU), Høgskoleringen 5, Trondheim, 7491, Norway.
Petroleum Department, SINTEF Industry, Trondheim, 7465, Norway.
J Appl Crystallogr. 2020 Nov 30;53(Pt 6):1562-1569. doi: 10.1107/S1600576720013850. eCollection 2020 Dec 1.
Despite the abundance of shales in the Earth's crust and their industrial and environmental importance, their microscale physical properties are poorly understood, owing to the presence of many structurally related mineral phases and a porous network structure spanning several length scales. Here, the use of coherent X-ray diffraction imaging (CXDI) to study the internal structure of microscopic shale fragments is demonstrated. Simultaneous wide-angle X-ray diffraction (WAXD) measurement facilitated the study of the mineralogy of the shale microparticles. It was possible to identify pyrite nanocrystals as inclusions in the quartz-clay matrix and the volume of closed unconnected pores was estimated. The combined CXDI-WAXD analysis enabled the establishment of a correlation between sample morphology and crystallite shape and size. The results highlight the potential of the combined CXDI-WAXD approach as an upcoming imaging modality for 3D nanoscale studies of shales and other geological formations via serial measurements of microscopic fragments.
尽管地壳中页岩储量丰富,且具有工业和环境重要性,但由于存在许多结构相关的矿物相以及跨越多个长度尺度的多孔网络结构,其微观物理性质仍知之甚少。在此,展示了使用相干X射线衍射成像(CXDI)来研究微观页岩碎片的内部结构。同步广角X射线衍射(WAXD)测量有助于研究页岩微粒的矿物学。可以将黄铁矿纳米晶体识别为石英 - 粘土基质中的内含物,并估计了封闭的不连通孔隙的体积。CXDI - WAXD联合分析能够建立样品形态与微晶形状和尺寸之间的相关性。结果突出了CXDI - WAXD联合方法作为一种即将出现的成像方式的潜力,可通过对微观碎片的系列测量对页岩和其他地质构造进行三维纳米尺度研究。