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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Design and Validation of a Volatility Hygroscopic Tandem Differential Mobility Analyzer (VH-TDMA) to Characterize the Relationships Between the Thermal and Hygroscopic Properties of Atmospheric Aerosol Particles
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Design and Validation of a Volatility Hygroscopic Tandem Differential Mobility Analyzer (VH-TDMA) to Characterize the Relationships Between the Thermal and Hygroscopic Properties of Atmospheric Aerosol Particles

机译:挥发性吸湿串联微分淌度分析仪(VH-TDMA)的设计和验证,用于表征大气气溶胶颗粒的热学和吸湿性之间的关系

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摘要

The nature of atmospheric aerosols is extremely complex and often requires advanced analytical tools for the determination of its physical and chemical properties. In particular, the interaction of particles with atmospheric water is a complex function of both particle size and composition. The ability of a particle to grow in a humid environment can be measured by humidity tandem differential mobility analyzing techniques (H-TDMA). In this article, we present a new development combining thermo-desorption and humidification aerosol conditioning in series that allows to measure changes in the hygroscopic behavior of aerosol at 90% relative humidity (RH) after conditioning of the particle by thermo-desorption to a temperature between 25°C and 300°C. The main feature of this system, named Volatility Hygroscopic—Tandem Differential Mobility Analyzer (VH-TDMA), is to allow for rapid (10 minutes) series of scans to control particle response to l-thermal conditioning, 2- RH increase to 90% and 3—a combination of both thermal and RH conditioning. The VH-TDMA is, therefore, suited to investigate particle ageing through a simple coupling of H-TDMA and V-TDMA performances. The aim of the present article is to describe the instrument design and to validate its performances by focusing on the measurement of hygroscopic behavior of pure inorganic particles such as sodium chloride or ammonium sulfate, as well as internally mixed organic-inorganic particles. Based on laboratory experiments and applications to natural aerosols, we show that the VH-TDMA system can be used to investigate the hygroscopic properties of the non-volatile fraction of ambient sub-micrometer aerosols in the range of 20 to 150 nm and the influence of the more volatile fraction of the particle on hygroscopic growth.
机译:大气气溶胶的性质极其复杂,通常需要先进的分析工具来确定其物理和化学性质。特别地,颗粒与大气水的相互作用是颗粒大小和组成的复杂函数。粒子在潮湿环境中生长的能力可以通过湿度串联差动迁移率分析技术(H-TDMA)进行测量。在本文中,我们提出了一种将热脱附和加湿气溶胶调理相结合的新开发成果,该技术可以在通过热解吸将微粒调理到一定温度后,在90%相对湿度(RH)下测量气溶胶的吸湿性能变化。在25°C至300°C之间。该系统的主要功能(称为挥发性吸湿性-串联差动分析仪(VH-TDMA))允许快速(10分钟)系列扫描,以控制粒子对l-热调节的响应,2- RH增加至90%和3-热调节和RH调节的组合。因此,VH-TDMA适合通过简单地将H-TDMA和V-TDMA性能耦合来研究颗粒老化。本文的目的是通过重点测量诸如氯化钠或硫酸铵之类的纯无机颗粒以及内部混合的有机-无机颗粒的吸湿性能来描述仪器的设计并验证其性能。基于实验室实验和对天然气溶胶的应用,我们表明,VH-TDMA系统可用于研究环境亚微米气溶胶在20至150 nm范围内的非挥发性部分的吸湿性能以及吸湿性增长时颗粒的挥发性分数越高。

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