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Operation of the Airmodus A11 nano Condensation Nucleus Counter at various inlet pressures and various operation temperatures, and design of a new inlet system

机译:Airmodus A11纳米冷凝核计数器在各种入口压力和各种操作温度下的运行,以及新进气系统的设计

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摘要

Measuring sub-3 nm particles outside of controlled laboratory conditions is a challenging task, as many of the instruments are operated at their limits and are subject to changing ambient conditions. In this study, we advance the current understanding of the operation of the Airmodus A11 nano Condensation Nucleus Counter (nCNC), which consists of an A10 Particle Size Magnifier (PSM) and an A20 Condensation Particle Counter (CPC). The effect of the inlet line pressure on the measured particle concentration was measured, and two separate regions inside the A10, where supersaturation of working fluid can take place, were identified. The possibility of varying the lower cut-off diameter of the nCNC was investigated; by scanning the growth tube temperature, the range of the lower cut-off was extended from 1-2.5 to 1-6 nm. Here we present a new inlet system, which allows automated measurement of the background concentration of homogeneously nucleated droplets, minimizes the diffusion losses in the sampling line and is equipped with an electrostatic filter to remove ions smaller than approximately 4.5 nm. Finally, our view of the guidelines for the optimal use of the Airmodus nCNC is provided.
机译:在受控实验室条件之外测量3 nm以下的微粒是一项艰巨的任务,因为许多仪器都在其极限下运行,并且会受到环境条件变化的影响。在这项研究中,我们提高了对Airmodus A11纳米凝结核子计数器(nCNC)操作的当前理解,该计数器由A10粒度放大镜(PSM)和A20凝结粒子计数器(CPC)组成。测量了入口管线压力对所测颗粒浓度的影响,并确定了A10内部两个可以发生工作流体过饱和的独立区域。研究了改变nCNC的下截止直径的可能性;通过扫描生长管温度,下限的范围从1-2.5扩展到1-6 nm。在这里,我们介绍了一个新的进气系统,该系统可以自动测量均匀成核的液滴的本底浓度,最大程度减少采样线中的扩散损失,并配备了静电过滤器,可去除小于约4.5 nm的离子。最后,我们对最佳使用Airmodus nCNC的指南提出了看法。

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