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Spatiotemporal variability and sources of aerosol water-soluble organic nitrogen (WSON), in the Eastern Mediterranean

机译:地中海东部的时空变异和气溶胶水溶性有机氮气(Wson)

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This study aims to characterize the variability and sources of water-soluble organic nitrogen (WSON) in aerosol over Cyprus in the Eastern Mediterranean. Measurements of PM10 particles were conducted during the calendar year of 2011 at two sites, located at a roadside location in Nicosia (urban traffic) and in the rural area of Agia Marina Xyliatou (regional background). Filter samples were analyzed for water-soluble total nitrogen (WSTN), nitrate and ammonium, to determine WSON. Additional analyses were performed, for water-soluble organic carbon (WSOC), organic and elemental carbon (OC and EC), major ions and trace metals. Annual mean WSON concentrations of 0.20 and 0.16 mu gN m(-3) were determined at the urban traffic and regional background sites, respectively. The organic fraction of WSTN was about 20%, with limited inter-site and seasonal variability. Distinct seasonal patterns were observed at the two sites, with warm-period concentrations being significantly higher at the regional background site, while the enhanced local emissions during winter at the traffic site smoothed out the observed variability. Mean WSON/WSOC ratios of 0.09-0.12 were calculated at the two sites, with the two parameters being weakly correlated. A roadside WSON enhancement was verified, although moderate on an annual basis (9%). However, concentrations in Nicosia were more than one time higher than the background during winter. The observed temporal and inter-site variability highlighted the necessity of source apportionment, which was performed using Positive Matrix Factorization (PMF) modeling, utilizing the analytical datasets at the two sites. In this way, the estimated contribution of regional transport of processed aerosols was found to be more pronounced at the regional background site (59% vs. 38%), while a sizeable input (35%) was linked to vehicular emissions at the traffic site. An additional anthropogenic impact, probably related to biomass burning, was estimated at both sites (16%), while contributions of natural sources like mineral dust (4-8%) and marine aerosol (2-3%) were smaller.
机译:本研究旨在在地中海东部地中海的塞浦路斯在塞浦路斯中的水溶性有机氮(Wson)的变异性和来源。 PM10颗粒的测量是在2011年的历前的两个地点进行的,位于尼科西亚(城市交通)和Agia Marina Xyliatou(区域背景)的农村地区。分析过滤样品用于水溶性总氮(WSTN),硝酸盐和铵,以确定威尔。进行另外的分析,用于水溶性有机碳(WSOC),有机和元素碳(OC和EC),主要离子和痕量金属。在城市交通和区域背景网站上确定了0.20和0.16亩GN M(-3)的年平均值浓度。 WSTN的有机级分为约20%,具有有限的间位和季节性变异性。在两个地点观察到不同的季节性模式,在区域背景现场具有暖期浓度显着较高,而交通场地冬季期间的增强的当地排放平滑了观察到的可变性。在两个位点计算平均威尔/ WSOC比率为0.09-0.12,两个参数弱相关。验证了路边的WSON增强,但每年适中(9%)。然而,在冬季期间,尼科西亚的浓度比背景高出一次。观察到的时间和站点的可变性强调了源分配的必要性,它使用正矩阵分子(PMF)建模来利用两个站点的分析数据集来执行。通过这种方式,发现已加工气溶胶区域运输的估计贡献在区域背景现场(59%vs.38%)更加明显,而大量的投入(35%)与交通网站的车辆排放相关联。在两个位点估计额外的人为抗冲击,可能与生物质燃烧有关,而矿物粉尘(4-8%)和海洋气溶胶(2-3%)等天然来源的贡献较小。

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