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Optimal microbubble production rate from a flow-focusing microfluidic device as a function of nozzle size, gas pressure, and liquid flow rate

机译:从流动聚焦的微流体装置的最佳微胶布生产速率作为喷嘴尺寸,气体压力和液体流速的函数

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Previous studies have shown that flow-focusing microfluidic devices (FFMDs) produce monodisperse microbubbles with tunable diameters in a continuous process and that microbubble diameter is a function of gas and liquid flow rate. However, there is currently no model for microbubble production rate from an FFMD. In this paper, PDMS-based, rectangular-nozzle FFMDs are characterized in order to determine parameters and a model for optimal microbubble production - high production rate while maintaining monodispersity. Parameters tested include nozzle width, liquid phase concentration, gas pressure, and liquid flow rate. Microbubble diameter and production rates were determined optically using a high speed camera. The data was fit in order to determine an empirical model for microbubble diameter and highest production rate as a function of FFMD parameters. We encountered a quadratic relationship between production rate and diameter and a linear relationship between pressure and microbubble diameter sensitivity to gas and liquid flow rate.
机译:以前的研究表明,流动聚焦的微流体装置(FFMDS)在连续过程中具有可调谐直径的单分散微泡,并且微泡直径是气体和液体流速的函数。但是,目前没有FFMD的微泡生产率的模型。在本文中,基于PDMS的矩形喷嘴FFMDS的特征在于确定参数和模型,以实现最佳的微泡生产 - 高生产率,同时保持单分散性。测试的参数包括喷嘴宽度,液相浓度,气体压力和液体流速。使用高速相机光学测定微胶石直径和生产率。数据适合,以确定作为FFMD参数的微泡直径和最高生产率的实证模型。我们在生产速率和直径之间遇到了二次关系,压力与微泡直径对气体流速的敏感性之间的线性关系。

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