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首页> 外文期刊>Bulletin of the Korean Chemical Society >Convection Effects on PGSE-NMR Self-Diffusion Measurements at Low Temperature: Investigation into Sources of Induced Convective Flows
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Convection Effects on PGSE-NMR Self-Diffusion Measurements at Low Temperature: Investigation into Sources of Induced Convective Flows

机译:低温对流对PGSE-NMR自扩散测量的影响:对流诱导流动的研究

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摘要

The effects of convection on the measurement of the diffusion coefficients of liquids by the pulsed gradient spin echo (PGSE) NMR method at low temperature are discussed. To examine the generation of convective flows, we used four different types of sample tubes in the diffusion measurements with temperature variation; a normal 5 mm NMR tube, a Shigemi tube, an ELISE type tube, and a capillary tube. Below room temperature, the calculated diffusion coefficients of chloroform in 5 mm o.d. type tubes increased with decreasing temperature, while those in the capillary tube decreased linearly. The convective flow was found to be significant even at low temperature and it seemed to be mainly induced by the transverse temperature gradient. It was also found that the capillary tube was most appropriate to measure the diffusion coefficients, since its small diameter is effective in suppressing the convective flows at both high and low temperatures.
机译:讨论了对流对低温下脉冲梯度自旋回波(PGSE)NMR法测量液体扩散系数的影响。为了检查对流的产生,我们在具有温度变化的扩散测量中使用了四种不同类型的样品管。常规5 mm NMR管,Shigemi管,ELISE型管和毛细管。在室温以下,计算出的氯仿在5 mm o.d中的扩散系数。型管随着温度降低而增加,而毛细管中的管则线性下降。发现即使在低温下,对流也很明显,似乎主要由横向温度梯度引起。还发现毛细管最适合测量扩散系数,因为毛细管的小直径可有效抑制高温和低温下的对流。

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