Nepomuceno Pereira Sérgio, Preißler Jana, Guerrero-Rascado Juan Luis, Silva Ana Maria, Wagner Frank
Évora Geophysics Center, Rua Romão Ramalho 59, 7000 Évora, Portugal ; Andalusian Institute for Earth System Research IISTA-CEAMA, University of Granada, Autonomous Government of Andalusia, Avenida del Mediterráneo s/n, 18006 Granada, Spain.
Évora Geophysics Center, Rua Romão Ramalho 59, 7000 Évora, Portugal ; Centre for Climate and Air Pollution Studies (C-CAPS), National University of Ireland Galway, University Road, Galway, Ireland.
ScientificWorldJournal. 2014;2014:421838. doi: 10.1155/2014/421838. Epub 2014 Jul 10.
Vertically resolved optical and microphysical properties of biomass burning aerosols, measured in 2011 with a multiwavelength Raman lidar, are presented. The transportation time, within 1-2 days (or less), pointed towards the presence of relatively fresh smoke particles over the site. Some strong layers aloft were observed with particle backscatter and extinction coefficients (at 355 nm) greater than 5 Mm(-1)sr(-1) and close to 300 Mm(-1), respectively. The particle intensive optical properties showed features different from the ones reported for aged smoke, but rather consistent with fresh smoke. The Ångström exponents were generally high, mainly above 1.4, indicating a dominating accumulation mode. Weak depolarization values, as shown by the small depolarization ratio of 5% or lower, were measured. Furthermore, the lidar ratio presented no clear wavelength dependency. The inversion of the lidar signals provided a set of microphysical properties including particle effective radius below 0.2 μm, which is less than values previously observed for aged smoke particles. Real and imaginary parts of refractive index of about 1.5-1.6 and 0.02i, respectively, were derived. The single scattering albedo was in the range between 0.85 and 0.93; these last two quantities indicate the nonnegligible absorbing characteristics of the observed particles.
本文展示了2011年用多波长拉曼激光雷达测量的生物质燃烧气溶胶的垂直分辨光学和微物理特性。1至2天(或更短)内的传输时间表明该地点存在相对新鲜的烟雾颗粒。观测到一些高空强层,其粒子后向散射系数和消光系数(355纳米处)分别大于5Mm⁻¹sr⁻¹和接近300Mm⁻¹。粒子的密集光学特性表现出与老化烟雾报道不同的特征,但与新鲜烟雾一致。埃斯特朗指数通常较高,主要高于1.4,表明主导的是积聚模态。测量到的退偏振值较弱,退偏振比小至5%或更低。此外,激光雷达比没有明显的波长依赖性。激光雷达信号反演得到了一组微物理特性,包括小于0.2微米的粒子有效半径,这小于先前观测到的老化烟雾粒子的值。分别得出折射率的实部和虚部约为1.5 - 1.6和0.02i。单次散射反照率在0.85至0.93之间;最后这两个量表明观测到的粒子具有不可忽略的吸收特性。