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首页> 外文期刊>International Journal of Polymer Analysis and Characterization >Field-flow fractionation in microfluidic channels of low aspect ratio
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Field-flow fractionation in microfluidic channels of low aspect ratio

机译:低纵横比的微流体通道中的场流分馏

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摘要

The shape of the steady-state three-dimensional flow velocity profile established in carrier liquid flowing inside the rectangular cross-sectional channel for field-flow fractionation should be taken into account to optimize the separation. The central parts of this profile in the planes parallel to the main channel walls are flat with almost identical flow velocities which drop down to zero at the side walls. The separated species transported by the flow in the close-to-side walls regions move with lower average velocities compared to the species transported in the central part of the channel and are undesirably broadened. The hydrodynamic splitting of the carrier liquid at the entry of the channel where the sample is injected only into the central part of the channel eliminates the excessive zone broadening. The aspect ratio of the breadth to the thickness of the channel ratio can thus be reduced. The effect of various aspect ratios on the shape of the flow velocity profile is calculated and the results are used to optimize the aspect ratio of microfluidic channels. The experiments carried out by microthermal field-flow fractionation confirmed that the aspect ratio cannot be reduced to a value of 1, proposed by other authors.
机译:应考虑在用于场流分级的矩形横截面内部流动的载体液体中建立的稳态三维流速曲线形状,以优化分离。该轮廓在平行于主通道壁的平面中的该轮廓的中心部分是平的,几乎相同的流速,在侧壁处下降至零。由靠近壁区域中的流动传送的分离物种与在通道的中心部分中传送的物种相比,通过较低的平均速度移动并且不希望地扩大。载体液体在仅在通道的中心部分注入样品的通道进入时的流体动力分离消除了过度的区域展现。因此可以减少宽度与信道比厚度的纵横比。计算各种纵横比对流速曲线形状的影响,并使用结果来优化微流体通道的纵横比。通过微热场 - 流动分级进行的实验证实,纵横比不能降低到其他作者提出的值1的值。

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