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首页> 外文期刊>Atmospheric chemistry and physics >Two years of near real-time chemical composition of submicron aerosols in the region of Paris using an Aerosol Chemical Speciation Monitor (ACSM) and a multi-wavelength Aethalometer
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Two years of near real-time chemical composition of submicron aerosols in the region of Paris using an Aerosol Chemical Speciation Monitor (ACSM) and a multi-wavelength Aethalometer

机译:使用气溶胶化学形态监测器(ACSM)和多波长测湿仪,巴黎地区近两年的亚微米气溶胶化学成分近乎实时

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Aerosol mass spectrometer (AMS) measurements have been successfully used towards a better understanding of non-refractory submicron (PMsub1/sub) aerosol chemical properties based on short-term campaigns. The recently developed Aerosol Chemical Speciation Monitor (ACSM) has been designed to deliver quite similar artifact-free chemical information but for low cost, and to perform robust monitoring over long-term periods. When deployed in parallel with real-time black carbon (BC) measurements, the combined data set allows for a quasi-comprehensive description of the whole PMsub1/sub fraction in near real time. Here we present 2-year long ACSM and BC data sets, between mid-2011 and mid-2013, obtained at the French atmospheric SIRTA supersite that is representative of background PM levels of the region of Paris. This large data set shows intense and time-limited (a few hours) pollution events observed during wintertime in the region of Paris, pointing to local carbonaceous emissions (mainly combustion sources). A non-parametric wind regression analysis was performed on this 2-year data set for the major PMsub1/sub constituents (organic matter, nitrate, sulfate and source apportioned BC) and ammonia in order to better refine their geographical origins and assess local/regional/advected contributions whose information is mandatory for efficient mitigation strategies. While ammonium sulfate typically shows a clear advected pattern, ammonium nitrate partially displays a similar feature, but, less expectedly, it also exhibits a significant contribution of regional and local emissions. The contribution of regional background organic aerosols (OA) is significant in spring and summer, while a more pronounced local origin is evidenced during wintertime, whose pattern is also observed for BC originating from domestic wood burning. Using time-resolved ACSM and BC information, seasonally differentiated weekly diurnal profiles of these constituents were investigated and helped to identify the main parameters controlling their temporal variations (sources, meteorological parameters). Finally, a careful investigation of all the major pollution episodes observed over the region of Paris between 2011 and 2013 was performed and classified in terms of chemical composition and the BC-to-sulfate ratio used here as a proxy of the local/regional/advected contribution of PM. In conclusion, these first 2-year quality-controlled measurements of ACSM clearly demonstrate their great potential to monitor on a long-term basis aerosol sources and their geographical origin and provide strategic information in near real time during pollution episodes. They also support the capacity of the ACSM to be proposed as a robust and credible alternative to filter-based sampling techniques for long-term monitoring strategies.
机译:气溶胶质谱仪(AMS)的测量已成功用于通过短期活动更好地了解非难熔亚微米(PM 1 )气溶胶的化学性质。最近开发的气溶胶化学形态监测器(ACSM)旨在提供非常相似的无人工痕迹的化学信息,但成本低廉,并且可以长期进行强大的监测。当与实时黑碳(BC)测量并行部署时,组合的数据集可以几乎实时地对整个PM 1 组分进行准全面的描述。在这里,我们介绍了在2011年中至2013年中之间为期2年的ACSM和BC数据集,这些数据集是从法国大气SIRTA超级站点获得的,该站点代表了巴黎地区的背景PM水平。这个庞大的数据集显示了在巴黎地区冬季观察到的严重且有时间限制的污染事件(数小时),表明当地的碳排放量(主要是燃烧源)。对这2年的主要PM 1 成分(有机物,硝酸盐,硫酸盐和来源的BC)和氨进行了非参数风向回归分析,以便更好地优化其地理分布起源并评估当地/地区/被推荐的捐款,其信息对于有效的缓解策略是必不可少的。尽管硫酸铵通常显示出明显的平缓模式,但硝酸铵部分显示出相似的特征,但是,在较少的预期下,它也表现出区域和局部排放的重要贡献。春季和夏季,区域背景有机气溶胶(OA)的贡献显着,而冬季则证明了更明显的本地起源,也观察到其模式为源自家用木材燃烧的BC。利用时间分辨的ACSM和BC信息,调查了这些成分的季节性差异每周昼夜廓线,并有助于确定控制其随时间变化的主要参数(来源,气象参数)。最后,我们对2011年至2013年期间在巴黎地区观察到的所有主要污染事件进行了仔细调查,并根据化学成分和BC /硫酸盐比进行了分类,在这里用作当地/区域/被污染者的代名词PM的贡献。总而言之,这些最初的为期2年的质量控制ACSM测量清楚地表明了其长期监测气溶胶来源及其地理来源以及在污染发生期间几乎实时提供战略信息的巨大潜力。它们还支持ACSM的功能,可作为长期监测策略中基于过滤器的采样技术的可靠而可靠的替代方案。

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