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首页> 外文期刊>Atmospheric chemistry and physics >Influence of biomass burning and anthropogenic emissions on ozone, carbon monoxide and black carbon at the Mt. Cimone GAW-WMO global station (Italy, 2165 m a.s.l.)
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Influence of biomass burning and anthropogenic emissions on ozone, carbon monoxide and black carbon at the Mt. Cimone GAW-WMO global station (Italy, 2165 m a.s.l.)

机译:生物量燃烧和人为排放对山顶臭氧,一氧化碳和黑碳的影响。 Cimone GAW-WMO全球站(意大利,2165 m.s.l.)

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摘要

This work investigates the variability of ozone (O3), carbon monoxide (CO) and equivalent black carbon (BC) at the Italian Climate Observatory "O. Vittori" (ICO-OV), part of the Mt. Cimone global GAW-WMO station (Italy). For this purpose, ICO-OV observations carried out in the period January 2007-June 2009, have been analyzed and correlated with the outputs of the FLEXPART Lagrangian dispersion model to specifically evaluate the influence of biomass burning (BB) and anthropogenic emissions younger than 20 days. During the investigation period, the average O3, CO and BC at ICO-OV were 54 ± 3 ppb, 122 ± 7 ppb and 213 ± 34 ng m-3 (mean ± expanded uncertainty with p < 95%), with clear seasonal cycles characterized by summer maxima and winter minima for O3 and BC and spring maximum and summer minimum for CO. According to FLEXPART outputs, BB impact is maximized during the warm months from July to September but appeared to have a significant contribution to the observed tracers only during specific transport events. We characterised in detail five "representative" events with respect to transport scales (i.e. global, regional and local), source regions and O3, CO and BC variations. For these events, very large variability of enhancement ratios O3/CO (from -0.22 to 0.71) and BC/CO (from 2.69 to 29.83 ng m-3 ppb-1) were observed. CO contributions related with anthropogenic emissions (COant) contributed to 17.4% of the mean CO value observed at ICO-OV, with the warm months appearing particularly affected by transport events of air-masses rich in anthropogenic pollution. The proportion of tracer variability that is described by FLEXPART COant peaked to 37% (in May-September) for CO, 19% (in May-September) for O3 and 32% (in January-April) for BC. During May-September, the analysis of the correlation among CO, O3 and BC as a function of the COant indicated that ICO-OV was influenced by air-masses rich in anthropogenic pollution transported from the regional to the global scale. On the other side, CO and O3 were negatively correlated during October-December, when FLEXPART does not show significant presence of recent anthropogenic emissions and only a few observations are characterized by enhanced BC. Such behaviour may be attributed to an ensemble of processes concurrent in enhancing O3 with low CO (upper troposphere/lower stratosphere intrusions) and to O3 titration by NO in polluted air-masses along with lower photochemical activity. An intermediate situation occurs in January-April when CO and O3 were almost uncorrelated and BC enhancements were associated to relatively old (10 days) anthropogenic emissions.
机译:这项工作是在意大利山地气候观测站“ O. Vittori”(ICO-OV)处调查臭氧(O3),一氧化碳(CO)和当量黑碳(BC)的变异性。 Cimone全球GAW-WMO站(意大利)。为此,已对2007年1月至2009年6月期间进行的ICO-OV观测进行了分析,并将其与FLEXPART拉格朗日色散模型的输出相关联,以专门评估生物量燃烧(BB)和20岁以下的人为排放物的影响天。在研究期间,ICO-OV的平均O3,CO和BC分别为54±3 ppb,122±7 ppb和213±34 ng m-3(均值±扩展不确定度, p <95 %),具有清晰的季节周期,其特征是O3和BC的夏季最大值和最小值,而CO的最大值和最小值为春季。 根据FLEXPART的输出,在7月至9月的温暖月份,BB的影响最大。但似乎仅在特定的运输事件中对观察到的示踪剂有重大贡献。我们针对交通规模(即全球,区域和本地),源区域以及O3,CO和BC变化详细描述了五个“代表性”事件。对于这些事件,观察到增强比O3 / CO(从-0.22到0.71)和BC / CO(从2.69到29.83 ng m-3 ppb-1)的变化很大。 与人为排放有关的CO贡献量(COant)占ICO-OV观测到的平均CO值的17.4%,而温暖的月份似乎受到富含人为污染的气团运输事件的特别影响。 FLEXPART COant描述的示踪剂变异性比例最高,一氧化碳为37%(5月至9月),O3为19%(5月至9月),而BC为32%(1月至4月)。在5月至9月期间,对CO,O3和BC之间作为COant函数的相关性的分析表明,ICO-OV受从区域到全球范围内运输的富含人为污染的气团的影响。另一方面,在10月至12月期间,CO和O3呈负相关,这时FLEXPART没有显示出近期人为排放物的显着存在,并且只有少数观察结果以BC增强为特征。此类行为可能归因于以低CO增强O3(对流层上部/平流层下部侵入体)增强O3的同时进行的过程的综合,以及在污染的空气质量中通过NO进行O3滴定以及较低的光化学活性。中间情况发生在1月至4月,此时CO和O3几乎不相关,而BC增强与相对较旧的(人为10天)人为排放有关。

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