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Aerosol Decadal Trends: In-situ Measurements of Number Concentration and Optical Properties

机译:气溶胶Decadal趋势:数量浓度和光学性质的原位测量

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Decadal trends of climate-relevant aerosol variables were evaluated within the framework of the WMO-GAW program, using the latest, quality-controlled information provided by NOAA, IMPROVE and EUSAAR/ACTRIS networks. Few in-situ measurement records of aerosol optical and physical properties exceed 10 years; this paper considers 10-year trends in light scattering, light absorption, and number concentration from 24, 10, and 16 stations, respectively, located in Europe, North America, Antarctica, and on Pacific Ocean islands. Three different statistical methods were used to identify significant trends and calculate their magnitudes, both for the overall record and for each month of the year; the three statistical methods generally agreed on the sign and significance of the trends, but differed on the magnitudes. High natural variability on time scales ranging from hours to years, as well as uncertainties caused by changes and biases in measurement methodology, are a major limitation for deriving statistically relevant trends. Close collaboration with station operators allowed identification of instrument problems and ruptures in the records, such as gaps, instrumental changes, or sampling protocol changes. No significant trends in optical properties were found for the three continental European sites. Statistically significant trends were found for the two European marine sites but the signs of the trends varied with aerosol property and location. Statistically significant decreasing trends for both scattering and absorption coefficient were found for most North American stations, although positive trends were found for a few desert and high-altitude sites. The decrease in scattering was greatest at the IMPROVE stations in the eastern US. No significant trends in scattering coefficient were found for the Arctic or Antarctic stations, whereas the Arctic station had a negative trend in absorption coefficient. The majority of the sites showed clear decreasing trends in number concentration, especially during the winter months. We could not find a consistent agreement between the trends of number concentration and particle optical properties in the few stations with long records of all of these properties. Regardless of the overall tendency of the 10-year trends, analysis of trends for specific seasons reveals additional complexity of aerosol variability.
机译:与气候有关的气溶胶变量十年的发展趋势进行了WMO-GAW计划的框架内评估,使用由NOAA提供的最新,质量控制信息,改善和EUSAAR / ACTRIS网络。气溶胶光学和物理特性的几个原位测量记录超过10年;本文从24,10,和16个站,分别位于欧洲,北美洲,南极洲,并在太平洋岛屿考虑了光散射,光吸收,数量浓度10年的发展趋势。三种不同的统计方法被用来确定显著趋势,并计算它们的大小,既为整体纪录,全年各月;这三个统计方法一般同意的标志和趋势的意义,但在不同的大小。在时间尺度从数小时到数年,以及引起的测量方法的变化和偏见不确定性高的自然变异,是获得统计相关趋势的主要限制。与站运营商紧密合作允许在记录仪器的问题和破裂,如间隙,仪器变化,或采样协议改变的识别。在光学性能没有显著的趋势被发现的三个欧洲大陆的网站。统计学显著趋势被发现了两个欧洲海洋站点,但的趋势迹象与气溶胶特性和位置可以改变。被发现的大多数北美站的散射和吸收系数统计上显著减少的趋势,但积极的趋势,发现了几个沙漠和高海拔的网站。在散射减少,在美国东部IMPROVE站最大。在散射系数不显著的趋势被发现北极或南极站,而北极站曾在吸收系数下降趋势。大多数网站显示出清晰的下降趋势,数量浓度,尤其是在冬季。我们无法找到数浓度与所有这些属性的长记录的几站的发展趋势和粒子光学性能之间的一致协议。无论10年的趋势,整体趋势下,针对特定的季节趋势的分析表明额外的气溶胶变化的复杂性。

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