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Secondary organic aerosol from biogenic VOCs overWest Africa during AMMA

机译:AMMA期间来自西非生物VOC的二次有机气溶胶

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This paper presents measurements of organic aerosols above subtropicalWest Africa during the wet season using data from the UK Facility for Airborne Atmospheric Measurements (FAAM) aircraft. Measurements of biogenic volatile organic compounds (BVOC) at low altitudes over these subtropical forests were made during the African Monsoon Multidisciplinary Analysis (AMMA) field experiment during July and August 2006 mainly above Benin, Nigeria and Niger. Data from an Aerodyne Quadrupole Aerosol Mass Spectrometer show a median organic aerosol loading of 1.07μgm~(-3) over tropical West Africa, which represents the first regionally averaged assessment of organic aerosol mass (OM) in this region during the wet season. This is broadly in agreement with global model predictions based on partitioning schemes, although there are large uncertainties associated with such estimates. In contrast our own calculations based on aerosol yields from isoprene and monoterpenes during chamber studies under represent the OM measured in this region on a comparable scale to the under representations of OM by predictive models in the mid latitudes. As global models rely on similar yield calculations in their global estimates, as our calculations this points to further systematic differences between global model estimates and measurements of SOA, most likely caused by use of incorrect BVOC emission rates. The under predictions of OM by our calculations and those in the mid latitudes employ yieldsextrapolated from chamber data obtained at higher mass concentrations-more recent yield data for α-pinene obtained at ambient concentrations in a flow through chamber (Shilling et al., 2008) show considerably better agreement with our data.
机译:本文使用来自英国机载大气测量设施(FAAM)飞机的数据介绍了湿季西非副热带地区上空的有机气溶胶的测量。在2006年7月至8月的非洲季风多学科分析(AMMA)田间试验中,主要在贝宁,尼日利亚和尼日尔上空进行了这些亚热带森林低海拔地区生物挥发性有机化合物(BVOC)的测量。来自Aerodyne四极杆气溶胶质谱仪的数据显示,热带西非上空的有机气溶胶中位数为1.07μgm〜(-3),这是该地区在雨季首次对该区域的有机气溶胶质量(OM)进行了平均评估。这与基于分区方案的全局模型预测大致上是一致的,尽管与此类估计相关的不确定性很大。相比之下,我们自己的计算是基于腔室研究期间异戊二烯和单萜的气溶胶产量,代表在该地区测得的OM与在中纬度地区通过预测模型测得的OM的下限相当。由于全局模型在其全局估计中依赖相似的产量计算,因此在我们的计算中,这表明全局模型估计和SOA度量之间存在进一步的系统差异,这很可能是由于使用了不正确的BVOC排放率所致。根据我们的计算以及在中纬度地区对OM的预测不足,采用了从较高质量浓度下获得的室数据推算出的产量-在流通室中在环境浓度下获得的有关α-pine烯的最新产量数据(Shilling等人,2008)与我们的数据显示出更好的一致性。

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