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首页> 外文期刊>Journal of synchrotron radiation >A new mini-triaxial cell for combined high-pressure and high-temperature in situ synchrotron X-ray microtomography experiments up to 400°C and 24 MPa
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A new mini-triaxial cell for combined high-pressure and high-temperature in situ synchrotron X-ray microtomography experiments up to 400°C and 24 MPa

机译:用于组合高压和高温的新型迷你三轴电池,原位同步X射线显微镜实验高达400°C和24 MPa

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摘要

A new experimental triaxial cell for in situ synchrotron X-ray micro-computed tomography aimed at imaging small samples of (6 mm × 19 mm) at high temperatures (up to 400°C) and pressures (up to 24 MPa confining) is presented. The system has flow-through capabilities, independent axial and radial pressure control, and has been developed and tested at the 8.3.2. beamline at the Advanced Light Source. The characteristics of this new experimental rig are described, along with the challenges, mainly concerning the combination of X-ray transparency with vessel strength at high temperature, and solutions found during the development stage. An experiment involving oil shale pyrolysis under subsurface conditions, highlighting the importance of a device able to operate in this pressure and temperature range, is also introduced. The availability of this cell enables an unprecedented range of experiments in the Earth Sciences, with a special focus on subsurface geothermal processes.
机译:用于原位同步X射线微型计算机断层扫描的新实验三轴电池,用于在高温(高达400°C)和压力下成像(6mm×19mm)的小样本和压力(最多24MPa限制) 。 该系统具有流通功能,独立的轴向和径向压力控制,并在8.3.2开发和测试。 高级光源的束线。 描述了这种新的实验钻机的特性以及挑战,主要是关于在高温下与血管强度的血管强度的组合,以及在发育阶段期间发现的溶液。 还介绍了涉及油页岩热解的实验,突出了能够在该压力和温度范围内操作的装置的重要性。 该细胞的可用性使地球科学的实验范围是前所未有的实验,特别关注地下地热过程。

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