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首页> 外文期刊>Atmospheric chemistry and physics >Aircraft vertical profiles during summertime regional and Saharan dust scenarios over the north-western Mediterranean basin: aerosol optical and physical properties
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Aircraft vertical profiles during summertime regional and Saharan dust scenarios over the north-western Mediterranean basin: aerosol optical and physical properties

机译:在夏季地区地中海盆地夏季地区区域和撒哈拉尘场景期间飞机垂直曲线:气溶胶光学和物理性质

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Accurate measurements of the horizontal and vertical distribution of atmospheric aerosol particle optical properties are key for a better understanding of their impact on the climate. Here we present the results of a measurement campaign based on instrumented flights over north-eastern Spain. We measured vertical profiles of size-segregated atmospheric particulate matter (PM) mass concentrations and multi-wavelength scattering and absorption coefficients in the western Mediterranean basin (WMB). The campaign took place during typical summer conditions, characterized by the development of a vertical multi-layer structure, under both summer regional pollution episodes (REGs) and Saharan dust events (SDEs). REG patterns in the region form under high insolation and scarce precipitation in summer, favouring layering of highly aged fine-PM strata in the lower few km a . s . l . The REG scenario prevailed during the entire measurement campaign. Additionally, African dust outbreaks and plumes from northern African wildfires influenced the study area. The vertical profiles of climate-relevant intensive optical parameters such as single-scattering albedo (SSA); the asymmetry parameter?( g ); scattering, absorption and SSA ?ngstr?m exponents (SAE, AAE and SSAAE); and PM mass scattering and absorption cross sections (MSC and MAC) were derived from the measurements. Moreover, we compared the aircraft measurements with those performed at two GAW–ACTRIS (Global Atmosphere Watch–Aerosol, Clouds and Trace Gases) surface measurement stations located in north-eastern Spain, namely Montseny (MSY; regional background) and Montsec d'Ares (MSA; remote site). Airborne in?situ measurements and ceilometer ground-based remote measurements identified aerosol air masses at altitudes up to more than 3.5? km a . s . l . The vertical profiles of the optical properties markedly changed according to the prevailing atmospheric scenarios. During SDE the SAE was low along the profiles, reaching values? ?1.0 in the dust layers. Correspondingly, SSAAE was negative, and AAE reached values up to 2.0–2.5, as a consequence of the UV absorption increased by the presence of the coarse dust particles. During REG, the SAE increased to? ?2.0, and the asymmetry parameter g was rather low (0.5–0.6) due to the prevalence of fine PM, which was characterized by an AAE close to 1.0, suggesting a fossil fuel combustion origin. During REG, some of the layers featured larger AAE ( ?1.5), relatively low SSA at 525? nm ( ?0.85) and high MSC ( ?9? m 2 ?g ?1 ) and were associated with the influence of PM from wildfires. Overall, the SSA and MSC near the ground ranged around 0.85 and 3? m 2 ?g ?1 , respectively, and increased at higher altitudes, reaching values above 0.95 and up to 9? m 2 ?g ?1 . The PM, MSC and MAC were on average larger during REG compared to SDE due to the larger scattering and absorption efficiency of fine PM compared with dust. The SSA and MSC had quite similar vertical profiles and often both increased with height indicating the progressive shift toward PM with a larger scattering efficiency with altitude. This study contributes to our understanding of regional-aerosol vertical distribution and optical properties in the WMB, and the results will be useful for improving future climate projections and remote sensing or satellite retrieval algorithms.
机译:精确测量大气气溶胶粒子光学特性的水平和垂直分布是更好地理解其对气候影响的关键。在这里,我们介绍了基于西班牙东北部的仪表飞行的测量活动的结果。我们测量了西部地中海盆地(WMB)的大小隔离大气颗粒物质(PM)质量浓度和多波长散射和吸收系数的垂直曲线。该活动在典型的夏季条件下进行,其特点是在夏季区域污染集(REGS)和撒哈拉尘埃(SDES)下的垂直多层结构的发展。在夏季的高缺失和稀缺降水下的区域形式中的reg模式,有利于较低几km a的高度老化的细本层层。 s。湖在整个测量活动期间,REG方案占了。此外,来自北方非洲野火的非洲尘埃爆发和羽毛影响了研究区。气候相关强化光学参数的垂直型材,如单散散射玻璃(SSA);不对称参数?(g);散射,吸收和SSA?NGSTR?M代表(SAE,AAE和SSAE); PM质量散射和吸收横截面(MSC和MAC)衍生自测定。此外,我们将飞机测量与位于西班牙东北部(MSY;区域背景)和Montsec d'Ares(MSY;区域背景)和蒙特塞特(MSY;区域背景)和蒙特塞特(MSA;远程网站)。空气中的风速呢?原位测量和CeiLometer地面的远程测量识别出高达3.5以上的海拔气溶胶空气质量? km a。 s。湖光学性质的垂直轮廓根据主要的大气场景显着改变。在SDE期间,SAE沿着曲线较低,达到值? ?在灰尘层中1.0。相应地,Ssaae是阴性的,AAE达到2.0-2.5的值,因此通过粗尘颗粒的存在增加了UV吸收。在reg期间,SAE增加到了? & α2.0,并且由于细PM的患病率,不对称参数G为相当低(0.5-0.6),其特征在于接近1.0的AAE,表明化石燃料燃烧起源。在reg期间,一些层次以较大的aae(&?1.5),在525时相对较低的SSA? NM(α0.85)和高MSC(&Δ9≤m2?g≤1)并且与来自野火的PM的影响有关。总体而言,地面附近的SSA和MSC约为0.85和3? m 2?g?1,分别在较高的高度上增加,达到0.95以上的值,最多9? m 2?g?1。与SDE相比,PM,MSC和MAC平均较大,由于灰尘细m的散射和吸收效率较大。 SSA和MSC具有相似的垂直型材,并且通常随着高度的高度增加,并且具有较大的散射效率,具有较大的散射效率。该研究有助于了解WMB中区域气溶胶垂直分布和光学性质的理解,结果对于改善未来的气候预测和遥感或卫星检索算法有用。

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