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首页> 外文期刊>Journal of Aerosol Science >Impactor designed to increase mass output rate of nanoparticles from a pneumatic nebulizer
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Impactor designed to increase mass output rate of nanoparticles from a pneumatic nebulizer

机译:撞击器旨在提高气动雾化器中纳米颗粒的质量输出率

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A modular impactor was designed to remove large droplets from aerosols generated by a pneumatic nebulizer, the Six-Jet Atomizer from TSI Inc. (Shoreview, MN), with the aim of generating dry nanoparticles. Three interchangeable nozzle heads were designed to provide droplet cutoff diameters of 0.5, 1, and 2um at an air flow rate of 8.3 x 10~(-4) m~3 s~(-1) (50 L min~(-1)), which corresponds to all six jets of the nebulizer operated at 25 °C and an air pressure of 241 kPa (35 psi). The collection and output characteristics of the 0.5 μm impactor were evaluated from dry particle size distributions produced by nebulizing an aqueous solution with a NaCl mass fraction of 1% both with and without the impactor present. The impactor characteristic cutoff curve was sharp (impactor geometric standard deviation, GSD_(imp)=1.15-1.19) with a 50% cutoff diameter d_(50) that ranged from 0.48 μm at 3.0 x 10~(-4)m~3s~(-1) to 0.74 μm at 11.7 x 10~(-4)m~3s~(-1). The rate of dry NaCl particle generation ranged from 0.5 to 5gs~(-1) (0.04 to 0.4 g day~(-1)) with mass median diameters MMD_P=80-123 nm and geometric standard deviations GSD_P=1.6-1.8 (depending on flow rate). Anomalous negative impactor efficiencies were observed at flow rates >8.3 x 10~(-4)m~3s~(-1) for 100 to 400 nm droplets and at all flow rates for droplets smaller than 100 nm. This phenomenon will be investigated further as a way to increase the generation rate of nanoparticles. A step-by-step procedure is presented for the selection of an appropriate impactor design and operating flow rate for a desired maximum aerosol particle size.
机译:设计了模块化撞击器,以去除由气动雾化器(得自TSI Inc.(密歇根州,Shoreview,MN)的六喷嘴雾化器)产生的气溶胶中的大液滴,目的是生成干燥的纳米颗粒。设计了三个可互换喷嘴头,以8.3 x 10〜(-4)m〜3 s〜(-1)(50 L min〜(-1))的空气流量提供0.5、1,2um的液滴截止直径),这对应于在25°C和241 kPa(35 psi)的气压下运行的雾化器的所有六个喷嘴。从通过雾化含有和不含有撞击器的NaCl质量分数为1%的水溶液产生的干粒度分布,评估了0.5μm撞击器的收集和输出特性。冲击器特征截止曲线很尖锐(冲击器几何标准偏差,GSD_(imp)= 1.15-1.19),截止直径d_(50)的50%范围在3.0 x 10〜(-4)m〜3s〜时为0.48μm。在11.7 x 10〜(-4)m〜3s〜(-1)时为(-1)至0.74μm。 NaCl干燥颗粒的生成速率为0.5至5gs〜(-1)(0.04至0.4g日〜(-1)),质量中值直径MMD_P = 80-123 nm,几何标准偏差GSD_P = 1.6-1.8(取决于流量)。对于100至400 nm的液滴,在流速> 8.3 x 10〜(-4)m〜3s〜(-1)时,以及在所有流速小于100 nm的液滴中,都观察到异常的负撞击效率。将进一步研究这种现象,以增加纳米粒子的产生速率。提出了分步过程,以针对所需的最大气溶胶粒径选择合适的冲击器设计和工作流速。

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