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Absorption properties of Mediterranean aerosols obtained from multi-year ground-based remote sensing observations

机译:从多年地面遥感观测获得的地中海气溶胶的吸收特性

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pstrongAbstract./strong Aerosol absorption properties are of high importance to assess aerosol impact on regional climate. This study presents an analysis of aerosol absorption products obtained over the Mediterranean basin or land stations in the region from multi-year ground-based AERONET observations with a focus on the Absorbing Aerosol Optical Depth (AAOD), Single Scattering Albedo (SSA) and their spectral dependence. The AAOD and Absorption Angstr??m Exponent (AAE) dataset is composed of daily averaged AERONET level 2 data from a total of 22 Mediterranean stations having long time series, mainly under the influence of urban-industrial aerosols and/or soil dust. This dataset covers the 17-yr period 1996a??2012 with most data being from 2003a??2011 (~89% of level-2 AAOD data). Since AERONET level-2 absorption products require a high aerosol load (AOD at 440 nm 0.4), which is most often related to the presence of desert dust, we also consider level-1.5 SSA data, despite their higher uncertainty, and filter out data with an Angstr??m exponent 1.0 in order to study absorption by carbonaceous aerosols. The SSA dataset includes AERONET level-2 products. Sun-photometer observations show that values of AAOD at 440 nm vary between 0.024 ?± 0.01 (resp. 0.040 ?± 0.01) and 0.050 ?± 0.01 (0.055 ?± 0.01) for urban (dusty) sites. Analysis shows that the Mediterranean urban-industrial aerosols appear "moderately" absorbing with values of SSA close to ~0.94a??0.95 ?± 0.04 (at 440 nm) in most cases except over the large cities of Rome and Athens, where aerosol appears more absorbing (SSA ~0.89a??0.90 ?± 0.04). The aerosol Absorption Angstr??m Exponent (AAE, estimated using 440 and 870 nm) is found to be larger than 1 for most sites over the Mediterranean, a manifestation of mineral dust (iron) and/or brown carbon producing the observed absorption. AERONET level-2 sun-photometer data indicate a possible East-West gradient, with higher values over the eastern basin (AAEsubEast/sub = 1.39/AAEsubWest/sub = 1.33). The North-South AAE gradient is more pronounced, especially over the western basin. Our additional analysis of AERONET level-1.5 data also shows that organic absorbing aerosols significantly affect some Mediterranean sites. These results indicate that current climate models treating organics as nonabsorbing over the Mediterranean certainly underestimate the warming effect due to carbonaceous aerosols./p.
机译:> >摘要。气溶胶吸收特性对于评估气溶胶对区域气候的影响非常重要。这项研究从多年地面AERONET观测资料中分析了该地区地中海盆地或陆地站获得的气溶胶吸收产品,重点是吸收气溶胶光学深度(AAOD),单散射反照率(SSA)及其它们的分布。光谱依赖性。 AAOD和吸收角指数指数(AAE)数据集由来自22个地中海地区长期时间序列的每日平均AERONET 2级数据组成,这些数据主要受城市-工业气溶胶和/或土壤尘埃的影响。该数据集涵盖1996a至2012年的17年期间,大部分数据来自2003a至2011年(约占2级AAOD数据的89%)。由于AERONET 2级吸收产品需要很高的气溶胶负荷(440 nm> 0.4时的AOD),这通常与沙漠尘埃的存在有关,因此,尽管不确定性较高,我们也考虑使用1.5级SSA数据,并进行过滤为了研究碳质气溶胶的吸收,Angstr ?? m指数<1.0的数据。 SSA数据集包括AERONET 2级产品。太阳光度计的观察结果表明,城市(尘土飞扬)场所在440 nm处的AAOD值在0.024±0.01(0.040±0.01)和0.050±0.01(0.055±0.01)之间变化。分析表明,在大多数情况下,除了罗马和雅典的大城市以外,地中海城市工业气溶胶似乎“适度”吸收,SSA值接近〜0.94a ?? 0.95?±0.04(在440 nm处)。吸收更多(SSA〜0.89a≤0.90≤±0.04)。在地中海上大部分地区,发现气溶胶吸收角指数(AAE,使用440和870 nm估计)大于1,这是矿物尘(铁)和/或褐碳的表现形式,产生了所观察到的吸收。 AERONET 2级太阳光度计数据表明可能存在东西向梯度,东部盆地上的值更高(AAE East = 1.39 / AAE West = 1.33)。南北AAE梯度更为明显,尤其是在西部盆地。我们对AERONET 1.5级数据的附加分析还表明,吸收有机物的气溶胶会严重影响某些地中海地区。这些结果表明,当前的气候模式将有机物视为在地中海地区不被吸收,这肯定低估了碳质气溶胶对气候的影响。

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