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South African EUCAARI measurements: seasonal variation of trace gases and aerosol optical properties

机译:南非Eucaari测量:痕量气体和气溶胶光学性能的季节变化

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In this paper we introduce new in situ observations of atmospheric aerosols, especially chemical composition, physical and optical properties, on the eastern brink of the heavily polluted Highveld area in South Africa. During the observation period between 11 February 2009 and 31 January 2011, the mean particle number concentration (size range 10–840 nm) was 6310 cm3 and the estimated volume of sub-10 μm particles 9.3 μm3 m?3. The aerosol absorption and scattering coefficients at 637 nm were 8.3 Mm?1 and 49.5 Mm?1, respectively. The mean single-scattering albedo at 637 nm was 0.84 and the ?ngstr?m exponent of scattering was 1.5 over the wavelength range 450–635 nm. The mean O3, SO2, NOx and H2S-concentrations were 37.1, 11.5, 15.1 and 3.2 ppb, respectively. The observed range of concentrations was large and attributed to the seasonal variation of sources and regional meteorological effects, especially the anticyclonic re-circulation and strong winter-time inversions. In a global context, the levels of gases and particulates were typical for continental sites with strong anthropogenic influence, but clearly lower than the most polluted areas of south-eastern Asia. Of all pollutants observed at the site, ozone is the most likely to have adverse environmental effects, as the concentrations were high also during the growing season. The measurements presented here will help to close existing gaps in the ground-based global atmosphere observation system, since very little long-term data of this nature is available for southern Africa.
机译:在本文中,我们对大气气溶胶的原地观测,特别是化学成分,物理和光学性质,在南非大量污染的高群地区的东边缘介绍。在2009年2月11日至2011年1月31日之间的观察期间,平均粒子数浓度(10-840nm)为6310cm 3和估计的亚10μm颗粒体积9.3μm3m≤3。在637nm处的气溶胶吸收和散射系数分别为8.3mm?1和49.5mm?1。在637nm处的平均单散射Albedo为0.84,散射的αngstrΔm指数在波长范围内为1.5,在450-635nm的波长范围内。平均O 3,SO2,NOx和H 2 S浓度分别为37.1,11.5,15.1和3.2ppb。观察到的浓度范围大,归因于来源的季节性变化和区域气象影响,特别是反气旋再循环和强烈的冬季时间倒置。在全球性的背景下,对于具有强烈的人为影响的欧洲部位,气体和颗粒的水平是典型的,但显然低于东南亚最污染的地区。在现场观察到的所有污染物中,臭氧是最有可能具有不良环境影响的污染物,因为浓度也很高,也在生长季节期间。这里提出的测量将有助于在基于地面的全球气氛观测系统中闭合现有的差距,因为南部非洲的这种性质的长期数据很少。
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