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在微流控并行化装置中采用同轴环面世界到芯片接口,大规模生产单乳液和复合乳液。

High-volume production of single and compound emulsions in a microfluidic parallelization arrangement coupled with coaxial annular world-to-chip interfaces.

机构信息

Precision and Intelligence Laboratory, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

Lab Chip. 2012 Sep 21;12(18):3426-35. doi: 10.1039/c2lc40245a. Epub 2012 Jul 18.

Abstract

This study describes a microfluidic platform with coaxial annular world-to-chip interfaces for high-throughput production of single and compound emulsion droplets, having controlled sizes and internal compositions. The production module consists of two distinct elements: a planar square chip on which many copies of a microfluidic droplet generator (MFDG) are arranged circularly, and a cubic supporting module with coaxial annular channels for supplying fluids evenly to the inlets of the mounted chip, assembled from blocks with cylinders and holes. Three-dimensional flow was simulated to evaluate the distribution of flow velocity in the coaxial multiple annular channels. By coupling a 1.5 cm × 1.5 cm microfluidic chip with parallelized 144 MFDGs and a supporting module with two annular channels, for example, we could produce simple oil-in-water (O/W) emulsion droplets having a mean diameter of 90.7 μm and a coefficient of variation (CV) of 2.2% at a throughput of 180.0 mL h(-1). Furthermore, we successfully demonstrated high-throughput production of Janus droplets, double emulsions and triple emulsions, by coupling 1.5 cm × 1.5 cm - 4.5 cm × 4.5 cm microfluidic chips with parallelized 32-128 MFDGs of various geometries and supporting modules with 3-4 annular channels.

摘要

本研究描述了一种具有同轴环面芯片接口的微流控平台,用于高通量生产具有可控尺寸和内部组成的单乳液和复乳液液滴。该生产模块由两个截然不同的元件组成:一个圆形排列着许多微流控液滴生成器(MFDG)的平面方芯片,和一个带有同轴环形通道的立方支撑模块,用于将流体均匀地供应到安装在芯片上的入口,该模块由带有圆柱和孔的块组装而成。进行了三维流动模拟,以评估同轴多环形通道中流速的分布。例如,通过将 1.5 cm × 1.5 cm 的微流控芯片与并行的 144 个 MFDG 和带有两个环形通道的支撑模块相耦合,我们可以在 180.0 mL h(-1) 的流速下生产具有 90.7 μm 平均直径和 2.2%的变异系数(CV)的简单油包水(O/W)乳液液滴。此外,我们通过将 1.5 cm × 1.5 cm - 4.5 cm × 4.5 cm 的微流控芯片与具有各种几何形状的并行 32-128 个 MFDG 和带有 3-4 个环形通道的支撑模块相耦合,成功地演示了高通量生产的 Janus 液滴、双乳液和三重乳液。

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