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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Characterization of three new condensation particle counters for sub-3?nm particle detection during the Helsinki CPC workshop: the ADI versatile water CPC, TSI 3777 nano enhancer and boosted TSI 3010
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Characterization of three new condensation particle counters for sub-3?nm particle detection during the Helsinki CPC workshop: the ADI versatile water CPC, TSI 3777 nano enhancer and boosted TSI 3010

机译:赫尔辛基CPC研讨会期间三种新的缩合颗粒计数器的表征三种新的缩合颗粒计数器:ADI多功能水CPC,TSI 3777纳米增强剂和增强TSI 3010

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In this study we characterized the performance of three new particle counters able to detect particles smaller than 3?nm during the Helsinki condensation particle counter (CPC) workshop in summer 2016: the Aerosol Dynamics Inc. (ADI; Berkeley, USA) versatile water condensation particle counter (vWCPC), TSI 3777 nano enhancer (TSI Inc., Shoreview, USA) and modified and boosted TSI 3010-type CPC from Université Blaise Pascal called a B3010. The performance of all CPCs was first measured with charged tungsten oxide test particles at temperature settings which resulted in supersaturation low enough to not detect any ions produced by a radioactive source. Due to similar measured detection efficiencies, additional comparison between the 3777 and vWCPC were conducted using electrically neutral tungsten oxide test particles and with positively charged tetradodecylammonium bromide. Furthermore, the detection efficiencies of the 3777 and vWCPC were measured with boosted temperature settings yielding supersaturation which was at the onset of homogeneous nucleation for the 3777 or confined within the range of liquid water for the ADI vWCPC. Finally, CPC-specific tests were conducted to probe the response of the 3777 to various inlet flow relative humidities, of the B3010 to various inlet flow rates and of the vWCPC to various particle concentrations. For the 3777 and vWCPC the measured 50?% detection diameters (d50s) were in the range of 1.3–2.4?nm for the tungsten oxide particles, depending on the particle charging state and CPC temperature settings, between 2.5 and 3.3?nm for the organic test aerosol, and in the range of 3.2–3.4?nm for tungsten oxide for the B3010.
机译:在这项研究中,我们表征了三种新的粒子计数器的性能,可以在2016年夏季赫尔辛基冷凝粒子柜台(CPC)车间中检测小于3Ω·NM的颗粒:Aerosol Dynamics Inc.(Adi; Berkeley,USA)多功能水凝结粒子计数器(VWCPC),TSI 3777纳米增强剂(TSI Inc.,Shoreview,USA)和来自UniversitéBlaisePascal的修改和提升TSI 3010型CPC,称为B3010。首先在温度设置下用带电氧化钨试验颗粒测量所有CPC的性能,导致过饱和以不足以检测通过放射源产生的任何离子。由于类似测量的检测效率,3777和VWCPC之间的额外比较是使用电中性氧化钨试验颗粒进行和带正电的四聚亚铵溴化物进行的。此外,通过增强温度设定测量3777和VWCPC的检测效率,得到过饱和,其在3777的均匀成核的发作时或限制在ADI VWCPC的液态水范围内。最后,进行CPC特异性测试以探测B3010对各种入口流动相对湿度的3777对各种入口流程和VWCPC至各种颗粒浓度的响应。对于3777和VWCPC,测量的50μm检测直径(D50s)为钨氧化物颗粒的1.3-2.4·Nm,取决于颗粒充电状态和CPC温度设置,在2.5和3.3Ω·NM之间有机测试气溶胶,以及用于B3010的氧化钨的3.2-3.4·nm。

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