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Micro-flow analysis by molecular tagging velocimetry and planar Raman-scattering

机译:通过分子标记测速和平面拉曼散射进行微流分析

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摘要

The two dimensional molecular tagging velocimetry (2D-MTV) has been used to measure velocity fields of the flow in a micro mixer. Instead of commonly used micro particles an optical tagging of the flow has been performed by using a caged dye. The pattern generation is done by imaging a mask for the first time. This allows to generate nearly any imaginable pattern. The flow induces a deformation of the optically written pattern that can be tracked by laser induced fluorescence. The series of raw images acquired in this way were analyzed quantitatively with a novel optical flow based technique. The reference measurements have been carried out allowing to draw conclusions about the accuracy of this procedure. A comparison to the standard technique of μPIV has also been conducted. Apart from measuring flow velocities in microfluidic mixing processes, the spatial distribution of concentration fields for different species has also been measured. To this end, a new technique has been developed that allows spatial measurements from Planar Spontaneous Raman Scattering (PSRS). The Raman stray light of the relevant species has been spectrally selected by a narrow bandpass filter and thus detected unaffectedly by the Raman stray light of other species. The successful operation of this measurement procedure in micro flows will be demonstrated exemplary for a mixing process of water and ethanol.
机译:二维分子标记测速法(2D-MTV)已用于测量微型混合器中流体的速度场。代替常用的微粒,已经通过使用笼状染料对流进行了光学标记。通过第一次对掩模成像来完成图案生成。这允许产生几乎任何可想象的图案。该流动引起光学写入图案的变形,该变形可以被激光诱导的荧光追踪。用一种新颖的基于光流的技术对以此方式获取的一系列原始图像进行了定量分析。已经进行了参考测量,可以得出关于该过程准确性的结论。还与μPIV的标准技术进行了比较。除了测量微流体混合过程中的流速外,还测量了不同物种的浓度场的空间分布。为此,已经开发了一种新技术,该技术允许通过平面自发拉曼散射(PSRS)进行空间测量。相关物种的拉曼杂散光已通过窄带通滤波器进行了光谱选择,因此不受其他物种的拉曼杂散光的影响而被检测到。该测量程序在微流中的成功运行将以水和乙醇的混合过程为例进行演示。

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