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High yielding microbubble production method.

机译:高产微泡生产方法。

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摘要

Microfluidic approaches to microbubble production are generally disadvantaged by low yield and high susceptibility to (micro)channel blockages. This paper presents an alternative method of producing microbubbles of 2.6 μm mean diameter at concentrations in excess of 30 × 10 6 mL−1. In this method, the nitrogen gas flowing inside the liquid jet is disintegrated into spray of microbubble when air surrounding this coflowing nitrogen gas-liquid jet passes through a 100 μm orifice at high velocity. Resulting microbubble foam has the polydispersity index of 16%. Moreover, a ratio of mean microbubble diameter to channel width ratio was found to be less than 0.025, which substantially alleviates the occurrence of blockages during production.
机译:生产微泡的微流体方法通常因产量低和对(微)通道阻塞的敏感性高而受到不利。本文提出了一种替代方法,当浓度超过30×10 6 mL-1时,产生平均直径为2.6μm的微气泡。在该方法中,当围绕该同时流动的氮气-液体射流的空气高速通过100μm的孔口时,在液体射流内部流动的氮气分解为微气泡的喷雾。所得的微泡泡沫具有16%的多分散指数。此外,发现平均微气泡直径与通道宽度之比小于0.025,这基本上减轻了生产过程中堵塞的发生。

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