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UNDERSTANDING FUNDAMENTAL PHYSICS OF AQUEOUS DROPLET GENERATION MECHANISMS IN THE AQUEOUS ENVIRONMENT

机译:在水环境中理​​解水液滴产生机理的基本物理

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Recent advent of Aqueous-Two-Phase-System (ATPS), more biologically friendly compared to conventional oil-water systems, has shown great potential to rapidly generate aqueous droplets without tedious post-processing. However, understanding of underlying physics of droplet formation in ATPS is still in its infancy. In this paper, we investigate hydrodynamic behaviors and mechanisms of all-aqueous droplet formation in two flow-focusing droplet generators. Two incompatible polymers namely polyethylene glycol (PEG) and dextran (DEX) are mixed in water to make ATPS. The influence of inlet pressures and flow-focusing configurations on droplet sizes, and thread breakup length is studied. Flow regime mapping for two different configurations of droplet generators possessing junction angles of 30° and 90° is also obtained. The results show that droplet size is very susceptible to the junction angle while inlet pressures of the PEG and DEX flows readily control four main flow regimes including back flow, dripping, jetting and stratified.
机译:与传统的油-水系统相比,生物两相系统(ATPS)的最新出现在生物学上更为友好,它显示出巨大的潜力,可以迅速产生水滴,而无需进行繁琐的后处理。但是,对ATPS中液滴形成的基本物理学的了解仍处于起步阶段。在本文中,我们研究了在两个流动聚焦液滴发生器中全水液滴形成的水动力行为和机理。将两种不相容的聚合物,即聚乙二醇(PEG)和右旋糖酐(DEX)在水中混合,制成ATPS。研究了入口压力和流动聚焦结构对液滴尺寸和断线长度的影响。还获得了具有30°和90°接合角的液滴发生器的两种不同配置的流态映射。结果表明,液滴的大小非常容易受到连接角的影响,而PEG和DEX流动的入口压力很容易控制四种主流流动形式,包括回流,滴落,喷射和分层。

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