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Electrohydrodynamic enhanced transport and trapping of airborne particles to a microfluidic air-liquid interface

机译:电液动力学增强的运输和空气颗粒诱捕到微流体空气液体界面

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摘要

We introduce a novel approach for greatly improved transport and trapping of airborne sample to a microfluidic analysis system by integrating an electrohydrodynamic (EHD) air pump with a microfluidic air-liquid interface. In our system, a negative corona discharge partially ionizes the air around a sharp electrode tip while the electrostatic field accelerates airborne particles towards an electrically grounded liquid surface, where they absorb. The air-liquid interface is fixated at the microscale pores of a perforated silicon diaphragm, each pore functioning as a static Laplace valve. Our system was experimentally tested using airborne smoke particles of ammonium chloride and aqueous salt solution as the liquid. We measured that EHD enhanced transport of the particles from the air into the liquid is enhanced over 130 times compared to passive trapping.
机译:通过将电液动力学(EHD)空气泵与微流体空气液体界面集成,我们介绍一种新的一种新颖的方法,以便在微流体分析系统中大大改善到微流体分析系统。在我们的系统中,负电晕放电部分地将空气围绕着尖锐的电极尖端电离,而静电场将空气颗粒加速到电接近的液体表面上,在那里它们吸收。空气液体界面在穿孔硅隔膜的微观孔处固定,每个孔用作静电拉普拉斯阀。我们的系统使用氯化铵的空气烟雾和作为液体的空气烟雾颗粒进行实验测试。与被动捕获相比,我们测量了从空气中的颗粒从空气中加强颗粒的转运增强了130倍。

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