...
首页> 外文期刊>Atmospheric chemistry and physics >Seasonal variation and origins of volatile organic compounds observed during 2 years at a western Mediterranean remote background site (Ersa, Cape Corsica)
【24h】

Seasonal variation and origins of volatile organic compounds observed during 2 years at a western Mediterranean remote background site (Ersa, Cape Corsica)

机译:在西部地中海偏远地点(Ersa,Cape Corsica)中观察到季节性变化和挥发性有机化合物的起源

获取原文
   

获取外文期刊封面封底 >>

       

摘要

An original time series of about 300 atmospheric measurements of a wide range of volatile organic compounds (VOCs) was obtained at a remote Mediterranean station on the northern tip of Corsica (Ersa, France) over 25?months from June 2012 to June 2014. This study presents the seasonal variabilities of 35 selected VOCs and their various associated sources. The VOC abundance was largely dominated by oxygenated VOCs (OVOCs) along with primary anthropogenic VOCs with a long lifetime in the atmosphere. VOC temporal variations were then examined. Primarily of local origin, biogenic VOCs exhibited notable seasonal and interannual variations, related to temperature and solar radiation. Anthropogenic compounds showed increased concentrations in winter (JFM months) followed by a decrease in spring/summer (AMJ/JAS months) and higher winter concentration levels in 2013 than in 2014 by up to 0.3? μ g?m ?3 in the cases of propane, acetylene and benzene. OVOC concentrations were generally high in summertime, mainly due to secondary anthropogenic/biogenic and primary biogenic sources, whereas their lower concentrations during autumn and winter were potentially more influenced by primary/secondary anthropogenic sources. Moreover, an apportionment factorial analysis was applied to a database comprising a selection of 14 individual or grouped VOCs by means of the positive matrix factorization (PMF) technique. A PMF five-factor solution was taken on. It includes an anthropogenic factor (which contributed 39?% to the total concentration of the VOCs selected in the PMF analysis) connected to the regional background pollution, three other anthropogenic factors (namely short-lived anthropogenic sources, evaporative sources, and long-lived combustion sources, which together accounted for 57?%) originating from either nearby or more distant emission areas (such as Italy and south of France), and a local biogenic source (4?%). Variations in these main sources impacting VOC concentrations observed at the Ersa station were also investigated at seasonal and interannual scales. In spring and summer, VOC concentrations observed at Ersa were the lowest in the 2-year period, despite higher biogenic source contributions. During these seasons, anthropogenic sources advected to Ersa were largely influenced by chemical transformations and vertical dispersion phenomena and were mainly of regional origins. During autumn and winter, anthropogenic sources showed higher contributions when European air masses were advected to Ersa and could be associated with potential emission areas located in Italy and possibly more distant ones in central Europe. Higher VOC winter concentrations in 2013 than in 2014 could be related to contribution variations in anthropogenic sources probably governed by their emission strength with external parameters, i.e. weaker dispersion phenomena and the pollutant depletion. High-frequency observations collected during several intensive field campaigns conducted at Ersa during the three summers 2012–2014 confirmed findings drawn from bi-weekly samples of the 2-year period in terms of summer concentration levels and source apportionment. However, they also suggested that higher sampling frequency and temporal resolution, in particular to observe VOC concentration variations during the daily cycle, would have been necessary to confirm the deconvolution of the different anthropogenic sources identified following the PMF approach. Finally, comparisons of the 25?months of Ersa observations with VOC measurements conducted at 17 other European monitoring stations highlighted the representativeness of the Ersa station for monitoring seasonal variations in VOC regional pollution impacting continental Europe. Nevertheless, VOC winter concentration levels can significantly vary between sites, pointing out spatial variations in anthropogenic source contributions. As a result, Ersa concentration variations in winter were more representative of VOC regional pollution impacting central Europe. Moreover, interannual and spatial variations in VOC winter concentration levels were significantly impacted by synoptic phenomena influencing meteorological conditions observed in continental Europe, suggesting that short observation periods may reflect the variability of the identified parameters under the specific meteorological conditions of the study period.
机译:在2012年6月至2014年6月到2014年6月,在北北端的偏远地中海站(France)的偏远地中海站在偏远地中海站,获得了大约300种大气测量的原始时间序列。研究提出了35个选定的VOC和各种相关来源的季节性变性。 VOC丰度主要由含氧VOC(OVOCS)与含有较长的大气寿命长的含氧VOC(OVOC)主导。然后检查VOC时间变化。主要是局部起源,生物转霉展现出明显的季节性和持续的变化,与温度和太阳辐射相关。人为化合物在冬季(JFM月份)上显示出浓度增加,然后在2013年春季/夏季(AMJ / JAS月份)和冬季浓度水平更高的冬季浓度较高,而不是2014年最高0.3?在丙烷,乙炔和苯的情况下μg≤3。霍普浓度通常在夏季较高,主要是由于次级人为/生物和原发性生物源,而秋季和冬季的浓度较低潜在受到初级/继发性人为源的影响。此外,通过正矩阵分解(PMF)技术将分配阶段分析应用于包括选择14个单独或分组VOC的数据库。采用PMF五因素溶液。它包括人为因子(其在PMF分析中选择的VOC的总浓度39〜%)与区域背景污染,其他三种其他人为因子(即短暂的人为来源,蒸发来源和长期存在)燃烧源,其中共同占源自附近或更远的排放区域(如法国意大利)和局部生物源(4?%)的57倍)。在季节性和际尺度上还调查了在ERSA站观察到的这些主要来源的变化。尽管较高的生物来源贡献,春夏在春季和夏季,在ERSA观察到的VOC浓度是2年期间最低的。在这些季节期间,向ORSA建立的人为源主要受到化学转化和垂直分散现象的影响,主要是区域起源。在秋季和冬季,当欧洲空气群众向ersa建立欧洲人并且可能与位于意大利的潜在排放区域以及中欧可能更遥远的地方有关时,人为来源表现出更高的贡献。 2013年的较高的VOC冬季浓度比2014年比2014年的贡献变异可能与其发射强度的贡献变化有关,其排放强度与外部参数,即分散现象较弱和污染物枯竭。在2012-2014三个夏天在Oersa进行的几个密集型场运动期间收集的高频观察,确认从2年期间的双每周样本绘制的调查结果在夏季浓度水平和源分配方面。然而,他们还建议采样频率和时间分辨率,特别是在日常循环期间观察VOC浓度变化,以确认在PMF方法之后确定的不同人体源的解作。最后,25岁?几个月的ersa观察与17个其他欧洲监测站进行的VOC测量的观察结果强调了ERSA站的代表性,用于监测欧洲欧洲大陆官方污染的季节性变化。然而,VOC冬季浓度水平可以在部位之间显着变化,指出人为源贡献的空间变化。因此,冬季的ERSA浓度变化更具代表性欧洲伏申域污染的代表性。此外,VOC冬季浓度水平的持续和空间变化因影响大陆欧洲观察到的气象状况的天气现象而显着影响,这表明短暂的观察期可能反映了研究期的特定气象条件下所识别的参数的可变性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号