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Visualization of gas flow and diffusion in porous media

机译:可视化多孔介质中的气体流动和扩散

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The transport of gases in porous materials is a crucial component of many important processes in science and technology. In the present work. we demonstrate how magnetic resonance micros- copy with continuous flow laser-polarized noble gases makes it possible to "light up" and thereby visualize, with unprecedented sensitivity and resolution, the dynamics of gases in samples of silica aerogels and zeolite molecular sieve particles. The "polarization- weighted" images of gas transport in aerogel fragments are correlated to the diffusion coefficient of xenon obtained from NMR pulsed-field gradient experiments. The technique provides a unique means of studying the combined effects of flow and diffusion in systems with macroscopic dimensions and microscopic internal pore structure.
机译:气体在多孔材料中的传输是科学技术中许多重要过程的重要组成部分。在目前的工作中。我们证明了利用连续流动激光偏振的稀有气体的磁共振显微镜技术如何能够“照亮”并以前所未有的灵敏度和分辨率可视化二氧化硅气凝胶和沸石分子筛颗粒样品中的气体动力学。气凝胶碎片中气体传输的“极化加权”图像与从NMR脉冲场梯度实验获得的氙的扩散系数相关。该技术提供了一种独特的方法,可以研究具有宏观尺寸和微观内部孔隙结构的系统中流动和扩散的综合影响。

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