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Pinched flow fractionation: Continuous size separation of particles utilizing a laminar flow profile in a pinched microchannel

机译:夹流分离:利用夹流微通道中的层流分布连续分离颗粒

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摘要

A concept of "pinched flow fractionation" for the continuous size separation and analysis of particles in microfabricated devices has been proposed and demonstrated. In this method, particles suspended in liquid were continuously introduced into a microchannel having a pinched segment and were aligned to one sidewall in the pinched segment by another liquid flow without particles. The particles were then separated perpendicularly to the flow direction according to their sizes by the spreading flow profile inside the microchannel. Polymer microbeads were successfully separated, and the effects of the flow rate and channel shapes on the separation performance were examined. Also, separated particles were collected independently by making branches at the end of the pinched segment. Since this method utilizes only the laminar flow profile inside a microchannel, complicated outer field control could be eliminated, which is usually required for other kinds of particle separation methods such as field flow fractionation. Also, this method can be applied both for particle size analysis and for preparation of monodispersed particles, since separation can be rapidly and continuously performed.
机译:已经提出并证明了用于连续尺寸分离和分析微型设备中颗粒的“夹流分馏”的概念。在该方法中,将悬浮在液体中的颗粒连续地引入具有收缩段的微通道中,并通过没有颗粒的另一液体流与该收缩段中的一个侧壁对准。然后根据微粒的大小,通过微通道内部散布的流动剖面将微粒垂直于流动方向分离。成功地分离了聚合物微珠,并研究了流速和通道形状对分离性能的影响。另外,通过在收缩段的末端形成分支独立收集分离的颗粒。由于此方法仅利用微通道内部的层流剖面,因此可以消除复杂的外部场控制,这通常是其他种类的粒子分离方法(例如场流分馏)所必需的。而且,由于可以快速且连续地进行分离,因此该方法既可以用于粒度分析,也可以用于制备单分散的颗粒。

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