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A miniature disk electrostatic aerosol classifier (mini-disk EAC) for personal nanoparticle sizers

机译:用于个人纳米粒度仪的微型圆盘静电气溶胶分类器(微型圆盘EAC)

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摘要

We have developed a miniature disk electrostatic aerosol classifier (mini-disk EAC) for use in electrical mobility-based personal nanoparticle instrumentation for measurement of personal exposures to nanoaerosols. The prototype consists of two parallel disk electrodes separated by an electrically insulating spacer, to create the particle classification zone. The aerosol enters and exits the classification zone along the bottom disk electrode. An additional, particle-free sheath flow is used to improve the measurement resolution. The transmission measurement of the mini-disk EAC for DMA-classified particles shows that particle losses due to diffusion and electrical image forces were low. The particle penetration at 10 nm diameter (the designed lower size limit for the classifier) was 67% when the prototype was operated at the aerosol and sheath flow rates of 0.5 and 1.01 min~(-1) respectively. The performance of the mini-disk EAC was experimentally characterized using the particle cutoff curves that describe their penetration through the classifier as a function of applied voltage across the two disk electrodes. Based on the measurement of particle penetration at different aerosol and sheath flows, it was found that the aerosol and sheath flow rates of 0.5 and 1.51min~(-1) were optimal for classifier operation. Finally, a semi-empirical model was also developed to describe the transfer function of the mini-disk EAC for non-diffusive particles.
机译:我们已经开发出一种微型圆盘静电气溶胶分类器(微型圆盘EAC),用于基于电动迁移率的个人纳米颗粒仪器中,用于测量个人对纳米气溶胶的暴露程度。该原型包含两个平行的盘状电极,这些电极由一个电绝缘垫片隔开,以创建粒子分类区域。气雾沿着底部圆盘电极进入和离开分类区域。额外的无颗粒鞘流用于提高测量分辨率。微型磁盘EAC对DMA分类的颗粒的透射测量结果表明,由于扩散和电成像力引起的颗粒损失较低。当原型分别以0.5和1.01 min〜(-1)的气溶胶和鞘流速运行时,直径为10 nm的颗粒渗透率(分类器的设计下限)为67%。微型磁盘EAC的性能使用颗粒截止曲线进行了实验表征,该颗粒截止曲线描述了它们通过分类器的渗透率与两个磁盘电极上施加电压的关系。通过对不同气溶胶和鞘气流量下颗粒渗透的测量,发现气溶胶和鞘气流量分别为0.5和1.51min〜(-1)是分类器运行的最佳选择。最后,还建立了一个半经验模型来描述微型磁盘EAC对非扩散粒子的传递函数。

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