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硫酸镁微液滴水和重水交换动力学的微区拉曼研究
引用本文:李开开,曾光,郭郁葱,张韫宏. 硫酸镁微液滴水和重水交换动力学的微区拉曼研究[J]. 光散射学报, 2011, 23(4): 376-380
作者姓名:李开开  曾光  郭郁葱  张韫宏
作者单位:北京理工大学化学物理研究所,北京,100081
基金项目:国家自然科学基金(20933001)
摘    要:本文利用微区拉曼技术,研究硫酸镁液滴水和重水交换的动力学.在低湿度时,由接触离子对连接形成的链状结构使硫酸镁液滴表面形成胶态结构,阻碍其与环境之间的水交换,造成表面和内部的结构差异.拉曼光谱的高空间分辨能力为观测这一特殊的表面结构提供了便利.沉积在聚四氟乙烯疏水基底上的硫酸镁重水液滴呈球形,可以实现对液滴表面和中心的两...

关 键 词:微区拉曼  传质受阻  重水  动力学
收稿时间:2011-06-30

Micro-Raman studies on the kinetics of the exchange between H2O and D2O of MgSO4 droplets
LI Kai-kai , ZENG Guang , GUO Yu-cong , ZHANG Yun-hong. Micro-Raman studies on the kinetics of the exchange between H2O and D2O of MgSO4 droplets[J]. Chinese Journal of Light Scattering, 2011, 23(4): 376-380
Authors:LI Kai-kai    ZENG Guang    GUO Yu-cong    ZHANG Yun-hong
Affiliation:(The Institute for Chemical Physics,Beijing Institute of Technology,Beijing 100081,China)
Abstract:In this paper,we will reveal the kinetics of evaporation of MgSO4/D2O droplets and the exchange between H2O and D2O in the mass transfer-limited MgSO4 droplets by micro-Raman spectroscopy.The gel layer causes a delay of the droplet in response to the change of ambient relative humidity,and results in the structural difference between the surface and the centre of MgSO4 droplets.Micro-Raman technique provides a good approach for detecting the surface structure in virtue of its high spatial resolution.In particular,as droplets are likely to maintain a spherical shape on a hydrophobic Teflon substrate,the laser beam can be tightly focused twice on the surface and in the center of the typically spherical droplets,thus the Raman spectra of the surface and the centre of the droplet can be obtained respectively and the diffusion of water in the droplet can be monitored.On the other hand,with an accumulation time of less than one second in a static mode,micro-Raman spectra of droplets can be obtained with high signal-to-noise ratio.The temporal scale allows the observation on the exchange of H2O and D2O in MgSO4 droplets with a slow exchanging rate,which is critical to understand the kinetics of the evaporation and condensation of water in mass transfer-limited MgSO4 droplet.
Keywords:micro-Raman  mass transfer limitation  D2O  kinetics
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