2015年7月在斯匹次卑尔根岛Ny-Ålesund上空测量的强烈生物质燃烧气溶胶事件的微物理特性和辐射影响

C. Ritter, M. Burgos, M. Burgos, C. Böckmann, D. Mateos, J. Lisok, K. Markowicz, B. Moroni, D. Cappelletti, R. Udisti, M. Maturilli, R. Neuber
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引用次数: 19

摘要

在这项工作中,对2015年7月在Ny-Ålesund(斯匹次卑尔根,欧洲北极)观测到的强烈生物质燃烧事件进行了评估。利用多波长拉曼激光雷达、太阳光度计和探空仪测量的数据,得出了不同相对湿度下生物质燃烧气溶胶的尺寸分布、折射率和单次散射反照率等微物理特性。堆积型颗粒以双峰型分布为主,以小峰型为主。在80%以上的相对湿度下,吸湿性增长表现为颗粒直径的增加和折射率(实部和虚部)的轻微下降。在355nm和532nm处,单次散射反照率均在0.9左右,表明气溶胶有一定的吸收。激光雷达比的值在355nm处约为26sr,在532nm处约为50sr,几乎与相对湿度无关。此外,利用光度计数据和当地基线地面辐射网(BSRN)的地面辐射值,通过与晴朗背景日的比较,纯粹从观测数据得出生物质燃烧事件的辐射影响。我们发现可见光辐射有强烈的冷却,而红外线辐射有轻微的升温。与纯粹由观测资料得出的晴朗背景日比较得出的净气溶胶强迫值为-95 W/m2 /单位AOD500。
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Microphysical properties and radiative impact of an intense biomass burning aerosol event measured over Ny-Ålesund, Spitsbergen in July 2015
Abstract In this work, an evaluation of an intense biomass burning event observed over Ny-Ålesund (Spitsbergen, European Arctic) in July 2015 is presented. Data from the multi-wavelengths Raman-lidar KARL, a sun photometer and radiosonde measurements are used to derive some microphysical properties of the biomass burning aerosol as size distribution, refractive index and single scattering albedo at different relative humidities. Predominantly particles in the accumulation mode have been found with a bi-modal distribution and dominance of the smaller mode. Above 80% relative humidity, hygroscopic growth in terms of an increase of particle diameter and a slight decrease of the index of refraction (real and imaginary part) has been found. Values of the single scattering albedo around 0.9 both at 355 nm and 532 nm indicate some absorption by the aerosol. Values of the lidar ratio are around 26 sr for 355 nm and around 50 sr for 532 nm, almost independent of the relative humidity. Further, data from the photometer and surface radiation values from the local baseline surface radiation network (BSRN) have been applied to derive the radiative impact of the biomass burning event purely from observational data by comparison with a clear background day. We found a strong cooling for the visible radiation and a slight warming in the infra-red. The net aerosol forcing, derived by comparison with a clear background day purely from observational data, obtained a value of –95 W/m2 per unit AOD500.
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