首页> 外文期刊>Journal of synchrotron radiation >The emerging role of 4D synchrotron X-ray micro-tomography for climate and fossil energy studies: five experiments showing the present capabilities at beamline 8.3.2 at the Advanced Light Source
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The emerging role of 4D synchrotron X-ray micro-tomography for climate and fossil energy studies: five experiments showing the present capabilities at beamline 8.3.2 at the Advanced Light Source

机译:4D Synchrotron X射线微断层扫描用于气候和化石能源研究的新兴作用:五个实验,显示了先进光源的光束线8.3.2的目前能力

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摘要

Continuous improvements at X-ray imaging beamlines at synchrotron light sources have made dynamic synchrotron X-ray micro-computed tomography (SXR-mCT) experiments more routinely available to users, with a rapid increase in demand given its tremendous potential in very diverse areas. In this work a survey of five different four-dimensional SXR-mCT experiments is presented, examining five different parameters linked to the evolution of the investigated system, and tackling problems in different areas in earth sciences. SXR-mCT is used to monitor the microstructural evolution of the investigated sample with the following variables: (i) high temperature, observing in situ oil shale pyrolysis; (ii) low temperature, replicating the generation of permafrost; (iii) high pressure, to study the invasion of supercritical CO2 in deep aquifers; (iv) uniaxial stress, to monitor the closure of a fracture filled with proppant, in shale; (v) reactive flow, to observe the evolution of the hydraulic properties in a porous rock subject to dissolution. For each of these examples, it is shown how dynamic SXR-mCT was able to provide new answers to questions related to climate and energy studies, highlighting the significant opportunities opened recently by the technique.
机译:在同步调节光源的X射线成像束线上的持续改进使动态同步同步X射线微计算机断层扫描(SXR-MCT)实验更常然地提供给用户,在非常多样化的地区巨大潜力,需求迅速增加。在这项工作中,提出了对五种不同的四维SXR-MCT实验的调查,检查了与调查系统的演变相关的五个不同参数,并在地球科学中的不同领域解决问题。 SXR-MCT用于监测所研究的样品的微观结构演化与以下变量:(i)高温,观察原位油页岩热解; (ii)低温,复制永久冻土的产生; (iii)高压,研究深度含水层中超临界二氧化碳的入侵; (iv)单轴应力,监测骨折的封闭骨折,在页岩中; (v)反应流动,观察多孔岩体中的液压性能的演变以溶解。对于这些例子中的每一个,显示动态SXR-MCT如何能够为与气候和能源研究有关的问题提供新的答案,突出了该技术最近开放的重要机会。

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