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Clues for a standardised thermal-optical protocol for the assessment of organic and elemental carbon within ambient air particulate matter

机译:用于评估环境空气颗粒物中有机碳和元素碳的标准化热光协议的线索

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摘要

Along with some research networking programmes, the European Directive 2008/50/CE requires chemical speciation of fine aerosol (PM2.5), including elemental (EC) and organic carbon (OC), at a few rural sites in European countries. Meanwhile, the thermal-optical technique is considered by the European and US networking agencies and normalisation bodies as a reference method to quantify EC-OC collected on filters. Although commonly used for many years, this technique still suffers from a lack of information on the comparability of the different analytical protocols (temperature protocols, type of optical correction) currently applied in the laboratories. To better evaluate the EC-OC data set quality and related uncertainties, the French National Reference Laboratory for Ambient Air Quality Monitoring (LCSQA) organised an EC-OC comparison exercise for French laboratories using different thermaloptical methods (five laboratories only). While there is good agreement on total carbon (TC) measurements among all participants, some differences can be observed on the EC/TC ratio, even among laboratories using the same thermal protocol. These results led to further tests on the influence of the optical correction: results obtained from different European laboratories confirmed that there were higher differences between OCTOT and OCTOR measured with NIOSH 5040 in comparison to EUSAAR-2. Also, striking differences between ECTOT/ECTOR ratios can be observed when comparing results obtained for rural and urban samples, with ECTOT being 50% lower than ECTOR at rural sites whereas it is only 20% lower at urban sites. The PM chemical composition could explain these differences but the way it influences the EC-OC measurement is not clear and needs further investigation. Meanwhile, some additional tests seem to indicate an influence of oven soiling on the EC-OC measurement data quality. This highlights the necessity to follow the laser signal decrease with time and its impact on measurements. Nevertheless, this should be confirmed by further experiments, involving more samples and various instruments, to enable statistical processing. All these results provide insights to determine the quality of EC-OC analytical methods and may contribute to the work toward establishing method standardisation.
机译:除了一些研究网络计划外,欧洲指令2008/50 / CE还要求在欧洲国家的一些农村地区对精细气溶胶(PM2.5)进行化学形态分析,包括元素(EC)和有机碳(OC)。同时,欧洲和美国的网络机构和标准化机构将热光技术视为量化收集在过滤器上的EC-OC的参考方法。尽管已被广泛使用多年,但该技术仍然缺乏有关实验室中当前使用的不同分析规程(温度规程,光学校正类型)的可比性的信息。为了更好地评估EC-OC数据集的质量和相关的不确定性,法国国家空气质量监测国家参考实验室(LCSQA)使用不同的热光学方法(仅五个实验室)为法国实验室组织了EC-OC比较练习。尽管所有参与者对总碳(TC)的测量都达成了良好的共识,但即使在使用相同热规程的实验室之间,也可以观察到EC / TC比率存在一些差异。这些结果导致进一步测试了光学校正的影响:从欧洲不同实验室获得的结果证实,与EUSAAR-2相比,使用NIOSH 5040测量的OCTOT和OCTOR之间存在较大差异。同样,当比较农村和城市样本的结果时,可以观察到ECTOT / ECTOR比率之间的显着差异,其中ECTOT在农村站点比ECTOR低50%,而在城市站点仅低20%。 PM的化学成分可以解释这些差异,但其影响EC-OC测量的方式尚不清楚,需要进一步研究。同时,一些其他测试似乎表明烤箱污染对EC-OC测量数据质量的影响。这突显了跟随激光信号随时间减小及其对测量的影响的必要性。但是,应该通过进一步的实验来证实这一点,包括更多的样本和各种仪器,以进行统计处理。所有这些结果为确定EC-OC分析方法的质量提供了见识,并可能有助于建立方法标准化。

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