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The continuous analysis of nitrate and ammonium in aerosols by the steam jet aerosol collector (SJAC): extension and validation of the methodology

机译:蒸汽喷射气溶胶收集器(sJaC)对气溶胶中硝酸盐和铵的连续分析:方法学的扩展和验证

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摘要

Classical methodology based on the application of filters for sampling, followed by extraction and analysis, introduces severe artifacts for semi-volatile compounds like ammonium nitrate. These filter methods do not meet the requirements for the assessment of the impact of aerosols on acidification, air quality and especially on the radiative balance, in terms of required speed, detection limits and selectivity. These artifacts are avoided by using a steam jet aerosol collector sampler, based on scavenging of aerosols by droplet formation, in combination with on-line analytical techniques such as ion-chromatography for nitrate and membrane separation followed by conductivity detection for ammonium. The SJAC sampler combines very low blanks with high efficiency of collection of particles. The ammonium detector and the IC system, based on 1-point internal standard calibration in combination with correction for curved calibration graphs, enables detection of ammonium and nitrate at background conditions, the detection limit is about 0.02 mug m(-3) of ammonium and nitrate. Accuracy is, depending on ambient concentration, in the order of 5-10\% relative, at a range of 0.05-50 mug m(-3). The: time resolution is 15-120min, depending on required detection limit, and is short enough for continuously monitoring the chemical composition of aerosols. Quality assurance and quality control experiments and intercomparison experiments with classical filter methods, thermo-denuder systems, denuder difference methods and other continuous monitoring techniques have shown that the results are reliable. The instrument has successfully been employed in field campaigns in Europe and the US. (C) 2001 Elsevier Science Ltd. All rights reserved.
机译:基于应用过滤器进行采样,然后进行提取和分析的经典方法论,对半挥发性化合物(如硝酸铵)引入了严重的伪影。这些过滤方法在所需的速度,检测极限和选择性方面,不符合评估气溶胶对酸化,空气质量,尤其是对辐射平衡的影响的要求。通过使用蒸汽喷射气溶胶收集器采样器来避免这些伪影,该采样器基于通过液滴形成清除气溶胶的方法,结合在线分析技术(例如用于硝酸盐和膜分离的离子色谱法,然后用于铵的电导率检测)。 SJAC采样器将极低的空白与高效率的颗粒收集结合在一起。铵离子检测器和IC系统基于1点内标校正并结合曲线校正图的校正,可在背景条件下检测铵和硝酸盐,检出限约为0.02马克杯m(-3),并且硝酸盐准确度取决于环境浓度,相对范围为5-10%,范围为0.05-50马克杯m(-3)。时间分辨率为15-120分钟,取决于所需的检测极限,并且足够短以连续监测气溶胶的化学成分。使用经典过滤方法,热剥蚀系统,剥蚀差异方法和其他连续监测技术进行的质量保证和质量控制实验以及比较实验表明,该结果是可靠的。该仪器已成功用于欧洲和美国的野战活动。 (C)2001 Elsevier ScienceLtd。保留所有权利。

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