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Probing the 3D molecular and mineralogical heterogeneity in oil reservoir rocks at the pore scale

机译:在孔隙尺度上探测油藏岩石中的3D分子和矿物学非均质性

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摘要

Innovative solutions have been designed to meet the global demand for energy and environmental sustainability, such as enhanced hydrocarbon recovery and geo-sequestration of CO2. These processes involve the movement of immiscible fluids through permeable rocks, which is affected by the interfacial properties of rocks at the pore scale. Overcoming major challenges in these processes relies on a deeper understanding about the fundamental factors that control the rock wettability. In particular, the efficiency of oil recovery strategies depends largely on the 3D wetting pattern of reservoir rocks, which is in turn affected by the adsorption and deposition of ‘contaminant’ molecules on the pores’ surface. Here, we combined high-resolution neutron tomography (NT) and synchrotron X-ray tomography (XRT) to probe the previously unobserved 3D distribution of molecular and mineralogical heterogeneity of oil reservoir rocks at the pore scale. Retrieving the distribution of neutron attenuation coefficients by Monte Carlo simulations, 3D molecular chemical mappings with micrometer dimensions could be provided. This approach allows us to identify co-localization of mineral phases with chemically distinct hydrogen-containing molecules, providing a solid foundation for the understanding of the interfacial phenomena involved in multiphase fluid flow in permeable media.
机译:设计了创新的解决方案来满足全球对能源和环境可持续性的需求,例如提高碳氢化合物的回收率和二氧化碳的固存。这些过程涉及不混溶流体通过可渗透岩石的运动,这受岩石在孔隙尺度上的界面特性的影响。克服这些过程中的主要挑战取决于对控制岩石润湿性的基本因素有更深入的了解。特别是,采油策略的效率在很大程度上取决于储层岩石的3D润湿模式,而3D润湿模式反过来又会受到“污染物”分子在孔表面的吸附和沉积的影响。在这里,我们结合了高分辨率中子断层扫描(NT)和同步中子X射线断层扫描(XRT),以探测以前未观察到的油藏岩石在孔隙尺度上的分子和矿物非均质性的3D分布。通过蒙特卡洛模拟检索中子衰减系数的分布,可以提供具有微米尺寸的3D分子化学图谱。这种方法使我们能够确定矿物相与化学上不同的含氢分子的共定位,从而为理解渗透性介质中涉及多相流体流动的界面现象提供了坚实的基础。

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