Wang Ruopeng, Rosen Matthew Scott, Candela Donald, Mair Ross William, Walsworth Ronald Lee
Harvard-Smithsonian Center for Astrophysics, Cambridge, MA 02138, USA.
Magn Reson Imaging. 2005 Feb;23(2):203-7. doi: 10.1016/j.mri.2004.11.012.
We report initial NMR studies of gas dynamics in a particle bed fluidized by laser-polarized xenon (129Xe) gas. We have made preliminary measurements of two important characteristics: gas exchange between the bubble and emulsion phases and the gas velocity distribution in the bed. We used T2* contrast to differentiate the bubble and emulsion phases by choosing solid particles with large magnetic susceptibility. Experimental tests demonstrated that this method was successful in eliminating 129Xe magnetization in the emulsion phase, which enabled us to observe the time dependence of the bubble magnetization. By employing the pulsed field gradient method, we also measured the gas velocity distribution within the bed. These results clearly show the onset of bubbling and can be used to deduce information about gas and particle motion in the fluidized bed.
我们报告了关于由激光极化氙气(¹²⁹Xe)流化的颗粒床中气体动力学的初步核磁共振研究。我们对两个重要特性进行了初步测量:气泡相和乳化相之间的气体交换以及床内的气体速度分布。我们通过选择具有大磁化率的固体颗粒,利用T2*对比度来区分气泡相和乳化相。实验测试表明,该方法成功消除了乳化相中的¹²⁹Xe磁化,这使我们能够观察到气泡磁化的时间依赖性。通过采用脉冲场梯度法,我们还测量了床内的气体速度分布。这些结果清楚地显示了鼓泡的开始,并可用于推断流化床中气体和颗粒运动的信息。