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Remotely detected MRI velocimetry in microporous bead packs

机译:远程检测MRI测速仪在微孔微珠包装中的应用

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摘要

Many NMR and MRI methods probe fluid dynamics within macro- and mesoporous materials, but with few exceptions, they report on its macroscopically averaged properties. MRI methods are generally unable to localize microscopic features of flow within macroscopic samples because the fraction of the enclosing detector volume occupied by these features is so small. We have recently overcome this problem using remotely detected MRI velocimetry, a technique in which spatial, chemical, and velocity information about elements of the flow is encoded with a conventional NMR coil and detected sensitively at the sample outflow by a volume-matched microdetector. Here, we apply this method to microporous model systems, recording MRI images that correlate local velocity, spin relaxation, and time-of-flight in microscopic resolution and three spatial dimensions. Our results illustrate that remotely detected MRI is an effective approach to elucidate flow dynamics in porous materials including bead pack microreactors and chromatography columns.
机译:许多NMR和MRI方法探测大孔和中孔材料中的流体动力学,但除少数例外,他们报告了其宏观平均性能。 MRI方法通常无法在宏观样本中定位流动的微观特征,因为这些特征所占据的封闭检测器体积的比例很小。我们最近通过使用远程检测MRI测速技术克服了这个问题,该技术使用常规NMR线圈对有关流元素的空间,化学和速度信息进行编码,并通过体积匹配的微检测器在样品流出时灵敏地进行检测。在这里,我们将这种方法应用于微孔模型系统,并记录与局部速度,自旋弛豫和飞行时间相关的MRI图像,这些图像具有微观分辨率和三个空间维度。我们的结果表明,远程检测MRI是阐明多孔材料(包括微珠包装微反应器和色谱柱)中流动动态的有效方法。

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