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杆上实验室:基于尺寸的颗粒在螺旋通道中的分离与分选

Lab on a rod: Size-based particle separation and sorting in a helical channel.

作者信息

Palumbo Joshua, Navi Maryam, Tsai Scott S H, Spelt Jan K, Papini Marcello

机构信息

Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario M5S 3G8, Canada.

出版信息

Biomicrofluidics. 2020 Nov 11;14(6):064104. doi: 10.1063/5.0030917. eCollection 2020 Nov.

Abstract

Size-based particle separation using inertial microfluidics in spiral channels has been well studied over the past decade. Though these devices can effectively separate particles, they require a relatively large device footprint with a typical outer channel radius of approximately 15 mm. In this paper, we describe a microfluidic device with a footprint diameter of 5.5 mm, containing a helical channel capable of inertial particle separation fabricated using abrasive jet micromachining. The separation of particles in several channel geometries was studied using wide-field fluorescence microscopy. A maximum separation efficiency of approximately 90% was achieved at a flow rate of 1.5 ml/min with a purity of approximately 95% at the outlet, where large particles were collected. An accompanying computational fluid dynamics model was developed to allow researchers to quickly assess the separation capability of their helical or spiral devices.

摘要

在过去十年中,利用螺旋通道中的惯性微流体进行基于尺寸的颗粒分离已得到充分研究。尽管这些装置能够有效分离颗粒,但它们需要相对较大的设备占地面积,典型的外通道半径约为15毫米。在本文中,我们描述了一种占地面积直径为5.5毫米的微流体装置,该装置包含一个能够通过磨料喷射微加工制造的用于惯性颗粒分离的螺旋通道。使用宽场荧光显微镜研究了几种通道几何形状中颗粒的分离情况。在流速为1.5毫升/分钟时,实现了约90%的最大分离效率,在收集大颗粒的出口处纯度约为95%。同时开发了一个计算流体动力学模型,以使研究人员能够快速评估其螺旋或螺旋装置 的分离能力。

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