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Design of a mobile aerosol research laboratory and data processing tools for effective stationary and mobile field measurements

机译:设计移动式气溶胶研究实验室和数据处理工具,以进行有效的固定和移动现场测量

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A compact mobile aerosol research laboratory (MoLa) for stationary and mobile measurements of aerosol and trace gas characteristics was developed at the Max Planck Institute for Chemistry (MPIC) in Mainz, Germany. Major efforts were made to design an aerosol inlet system which is optimized and characterised for both, stationary and mobile measurements using a particle loss modelling approach. The instrumentation on board allows the determination of a multitude of physical and chemical aerosol parameters, for example particle number and mass concentration (PM_(1/2.5/10)), particle size distributions in the diameter range 6 nm up to 32 (mu)m, and chemical composition of the sub-micron aerosol. Furthermore, trace gas concentrations of O_(3), SO_(2), CO, CO_(2), NO, NO_(2) and water vapour as well as meteorological parameters like temperature, relative humidity, pressure, wind, solar radiation and precipitation are measured together with various housekeeping parameters. All instruments collect data with high time resolution in the second to minute-range. The measurement platform, as well as data acquisition and handling tools, are optimized for efficient application to various measurement settings. The mobile laboratory is designed to be used for mobile investigation of anthropogenically influenced environments. Possible applications include pollutant mapping, chasing of mobile sources or Lagrangian-type measurements in emission plumes, but also stationary measurements with possible frequent position changes and a well-characterised instrument setup. In addition to the design and features of the mobile laboratory, its inlet system and instrumentation as well as examples of applications of this platform are presented. Challenges associated with such measurements and approaches to extract the desired information from the mobile datasets are discussed.
机译:位于德国美因兹的马克斯·普朗克化学研究所(MPIC)建立了一个紧凑的移动式气溶胶研究实验室(MoLa),用于固定和移动式测量气溶胶和痕量气体的特性。做出了巨大的努力来设计一种气溶胶入口系统,该系统针对使用颗粒损失建模方法进行的静态和移动测量均进行了优化和表征。机上仪器可确定多种物理和化学气溶胶参数,例如颗粒数和质量浓度(PM_(1 / 2.5 / 10),直径范围从6 nm到32(mu)的粒径分布m,以及亚微米气溶胶的化学组成。此外,O_(3),SO_(2),CO,CO_(2),NO,NO_(2)和水蒸气的痕量气体浓度以及诸如温度,相对湿度,压力,风,太阳辐射和降水量与各种管家参数一起测量。所有仪器都可以在秒到分钟范围内以高分辨率捕获数据。测量平台以及数据采集和处理工具经过优化,可有效应用于各种测量设置。移动实验室旨在用于人为影响环境的移动调查。可能的应用包括污染物测绘,移动源的追踪或排放羽流中的拉格朗日类型的测量,还包括位置可能频繁变化的固定测量以及功能齐全的仪器设置。除了移动实验室的设计和功能之外,还介绍了其入口系统和仪器以及该平台的应用示例。讨论了与此类测量和从移动数据集中提取所需信息的方法相关的挑战。

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