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Space-resolved measurement of transport processes at liquid-liquid interfaces using laser-induced fluorescence

机译:使用激光诱导的荧光在液-液界面上进行空间分辨的传输过程测量

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Abstract: Modeling of liquid-liquid-extraction processes involves the concentration of the extracted component directly at the interface. Currently, only very few and specialized methods are available for the direct measurement of these concentrations. Therefore a new, fluorescence based measurement system with a high spatial resolution and a broad application spectrum was developed and tested. The detection principle is based on the use of fluorescent dyes, excited by an argon ion laser. The intensity of the emitted light is dependent on the concentration of the extracted component in the very near surroundings of the dye. This intensity distribution is reproduced by an optical, microscope based system onto a highly sensitive camera with a spatial resolution of 1 micrometer. This distribution is converted into a concentration profile at the interface using a calibration function and digital image processing routines. Measurements were performed in a commonly used stirred two phase reactor modified to meet the requirements of an optical measurement system. It could be shown that the concentration profiles at mobile and immobile interfaces can be visualized with a resolution of 1 micrometer. The profiles formed at the interface differ significantly according to the kinetic of the used extraction system and the flow profiles in the reactor and can be used for further modeling of the extraction processes. !17
机译:摘要:液-液萃取过程的建模涉及直接在界面处提取的组分的浓度。当前,只有很少的专门方法可直接测量这些浓度。因此,开发并测试了具有高空间分辨率和广泛应用范围的基于荧光的新型测量系统。检测原理是基于使用由氩离子激光激发的荧光染料。发射光的强度取决于在非常近的环境中提取的组分的浓度。该强度分布通过基于光学显微镜的系统复制到空间分辨率为1微米的高灵敏​​度相机上。使用校准功能和数字图像处理程序,可以在界面上将这种分布转换为浓度分布。在经改造以满足光学测量系统要求的常用搅拌两相反应器中进行测量。可以看出,在移动和固定界面上的浓度分布可以以1微米的分辨率可视化。根据所用萃取系统的动力学和反应器中的流动曲线,在界面处形成的轮廓明显不同,并可用于萃取过程的进一步建模。 !17

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