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荧光性微粒在气溶胶及微粒技术中应用的研究
引用本文:王贤清,B. Y. H. Liu , D. Y. H. Pui. 荧光性微粒在气溶胶及微粒技术中应用的研究[J]. 化工学报, 1983, 34(3): 246-256
作者姓名:王贤清  B. Y. H. Liu    D. Y. H. Pui
作者单位:华东石油学院,Particle Technology Laboratory, Mechanical Eng. Dept., University of Minnesota,Particle Technology Laboratory, Mechanical Eng. Dept., University of Minnesota Minneapolis, U. S. A,Minneapolis, U. S. A
摘    要:以荧色物作标记微粒是微粒技术研究中的一项新方法.荧色物具有很高的分析灵敏度,用通常的荧光光度比色仪,可将其浓度测至1×10~(-10)g/ml;若采用Bergund-Liu气溶胶发生器,就可以得到已知直径及浓度的荧光性标准微粒,这对于研究微粒的空气动力学行为以及对于处理微粒状物料设备的标定是十分有效的.本文介绍了单分散气溶胶发生器,通过实验得出了使用荧光性微粒的一些重要条件,其中包括;溶剂的选择、微粒的发生与捕集、微粒中荧色物的提取及分析.文中还比较了两种常用的荧色物(荧光素钠及若丹明B)用于微粒技术的可能性,并应用这一技术对一种轴流式旋风分离器作了研究,得到了微粒在分离器各部位沉积情况的数据,它表明,该旋风分离器的分高效率和Stokes数间有一定的函数关系.


Use of Fluorescent Particles in Aerosol and Particle Research
B. Y. H. Liu and D. Y. H. PuiParticle Technology Laboratory,Mechanical Eng. Dept.,University of Minnesota,Minneapolis,U. S. A.Wang Xianqing,B. Y. H. Liu and D. Y. H. PuiEast China Petroleum InstitutePartical Technology Laboratory,Mechanical Eng. Dept.,University of Minnesota,Minneapolis,U. S. A.. Use of Fluorescent Particles in Aerosol and Particle Research[J]. Journal of Chemical Industry and Engineering(China), 1983, 34(3): 246-256
Authors:B. Y. H. Liu  D. Y. H. PuiParticle Technology Laboratory  Mechanical Eng. Dept.  University of Minnesota  Minneapolis  U. S. A.Wang Xianqing  B. Y. H. Liu  D. Y. H. PuiEast China Petroleum InstitutePartical Technology Laboratory  Mechanical Eng. Dept.  University of Minnesota  Minneapolis  U. S. A.
Abstract:This paper describes the generation of monodisperse fluorescence aerosols for instrument calibration study. Important considerations in the use of these aerosols are discussed. These include solution preparation, monodisperse aerosol generation, material extraction and analysis. A comparison of two commonly used materials, i. e., uranine (sodium salt of fluorescein) and Rbodamine B was made. It was found that uranine is most suitable to be used because of its higher detection sensitivity and higher solubility in the solvent.The use of these aerosols in the wind tunnel and laminar flow dust chamber have been described. The technique has been applied to the evaluation of a new type of an axial cyclone. Detailed information concerning particle precipitation in the cyclone is given. It was found that the collection efficiency of the cyclone is a function of the Stokes number.
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