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Remote sensing and in-situ measurements of tropospheric aerosol, a PAMARCMiP case study

机译:对流层气溶胶的遥感和原位测量,PAMARCMiP案例研究

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摘要

In this work, a closure experiment for tropospheric aerosol is presented. Aerosol size distributions and single scattering albedo from remote sensing data are compared to those measured in-situ. An aerosol pollution event on 4 April 2009 was observed by ground based and airborne lidar and photometer in and around Ny-Alesund, Spitsbergen, as well as by DMPS, nephelometer and particle soot absorption photometer at the nearby Zeppelin Mountain Research Station. The presented measurements were conducted in an area of 40 x 20 km around Ny-Alesund as part of the 2009 Polar Airborne Measurements and Arctic Regional Climate Model Simulation Project (PAMARCMiP). Aerosol mainly in the accumulation mode was found in the lower troposphere, however, enhanced backscattering was observed up to the tropopause altitude. A comparison of meteorological data available at different locations reveals a stable multi-layer-structure of the lower troposphere. It is followed by the retrieval of optical and microphysical aerosol parameters. Extinction values have been derived using two different methods, and it was found that extinction (especially in the UV) derived from Raman lidar data significantly surpasses the extinction derived from photometer AOD profiles. Airborne lidar data shows volume depolarization values to be less than 2.5% between 500 m and 2.5 km altitude, hence, particles in this range can be assumed to be of spherical shape. In-situ particle number concentrations measured at the Zeppelin Mountain Research Station at 474 m altitude peak at about 0.18 μm diameter, which was also found for the microphysical inversion calculations performed at 850 m and 1500 m altitude. Number concentrations depend on the assumed extinction values, and slightly decrease with altitude as well as the effective particle diameter. A low imaginary part in the derived refractive index suggests weakly absorbing aerosols, which is confirmed by low black carbon concentrations, measured at the Zeppelin Mountain as well as on board the Polar 5 aircraft.
机译:在这项工作中,提出了对流层气溶胶的封闭实验。将遥感数据中的气溶胶尺寸分布和单次散射反照率与现场测量的值进行了比较。 2009年4月4日,斯匹次卑尔根州Ny-Alesund附近及其周围的地面,空中激光雷达和光度计,以及附近的齐柏林山研究站的DMPS,浊度计和颗粒烟灰吸收光度计观测到了一次气溶胶污染事件。提出的测量是在Ny-Alesund周围40 x 20 km的区域中进行的,这是2009年极地机载测量和北极区域气候模型模拟项目(PAMARCMiP)的一部分。在对流层较低层发现了主要以积累模式存在的气溶胶,但是在对流层顶高度观测到了增强的反向散射。比较不同位置可获得的气象数据,可以得出较低对流层的稳定多层结构。随后是光学和微物理气溶胶参数的检索。已经使用两种不同的方法得出了消光值,并且发现从拉曼激光雷达数据得出的消光(尤其是在紫外线中)大大超过了从光度计AOD轮廓得出的消光。机载激光雷达数据显示,在500 m和2.5 km高度之间,体积去极化值小于2.5%,因此,可以认为该范围内的粒子为球形。在Zeppelin Mountain研究站在474 m高度处测得的原位粒子数浓度峰值位于直径约0.18μm,这也是在850 m和1500 m高度执行的微物理反演计算中发现的。数浓度取决于假定的消光值,并随海拔高度和有效粒径而略有下降。导出的折射率中的虚部很低,表明吸收的气溶胶较弱,这是由齐柏林飞艇山和Polar 5飞机上测得的低黑碳浓度所证实的。

著录项

  • 来源
    《Atmospheric environment》 |2012年第6期|p.56-66|共11页
  • 作者单位

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

    University of Potsdam, Institute of Mathematics (IMP), Potsdam, Germany;

    C1RES/NOAA Earth System Research Laboratory, 325 Broadway, Boulder, CO 80309, USA;

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

    Department of Applied Environmental Science, Stockholm University, SE-106 91 Stockholm, Sweden;

    Department of Applied Environmental Science, Stockholm University, SE-106 91 Stockholm, Sweden;

    University of Potsdam, Institute of Mathematics (IMP), Potsdam, Germany;

    Environment Canada, Toronto, Canada;

    ERL, Demokritos National Center of Scientific Research, Institute of Nuclear Technology and Radiation Protection, Attiki, Greece;

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

    Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, Germany;

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

    Alfred Wegener Institute for Polar and Marine Research, Telegrafenberg A45, Potsdam, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    arctic; aerosols; lidar; arctic haze;

    机译:北极;气雾剂激光雷达北极霾;

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