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Size distribution of alkyl amines in continental particulate matter and their online detection in the gas and particle phase

机译:欧式颗粒物质中烷基胺的尺寸分布及其在气体和粒子相中的在线检测

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An ion chromatographic method is described for the quantification of the simple alkyl amines: methylamine (MA), dimethylamine (DMA), trimethylamine (TMA), ethylamine (EA), diethylamine (DEA) and triethylamine (TEA), in the ambient atmosphere. Limits of detection (3σ) are in the tens of pmol range for all of these amines, and good resolution is achieved for all compounds except for TMA and DEA. The technique was applied to the analysis of time-integrated samples collected using a micro-orifice uniform deposition impactor (MOUDI) with ten stages for size resolution of particles with aerodynamic diameters between 56 nm and 18 μm. In eight samples from urban and rural continental airmasses, the mass loading of amines consistently maximized on the stage corresponding to particles with aerodynamic diameters between 320 and 560 nm. The molar ratio of amines to ammonium (R3NH+/NH4+) in fine aerosol ranged between 0.005 and 0.2, and maximized for the smallest particle sizes. The size-dependence of the R3NH+/NH4+ ratio indicates differences in the relative importance of the processes leading to the incorporation of amines and ammonia into secondary particles. The technique was also used to make simultaneous hourly online measurements of amines in the gas phase and in fine particulate matter using an Ambient Ion Monitor Ion Chromatograph (AIM-IC). During a ten day campaign in downtown Toronto, DMA, TMA + DEA, and TEA were observed to range from below detection limit to 2.7 ppt in the gas phase. In the particle phase, MAH+ and TMAH+ + DEAH+ were observed to range from below detection limit up to 15 ng m?3. The presence of detectable levels of amines in the particle phase corresponded to periods with higher relative humidity and higher mass loadings of nitrate. While the hourly measurements made using the AIM-IC provide data that can be used to evaluate the application of gas-particle partitioning models to amines, the strong size-dependence of the R3NH+/NH4+ ratio indicates that using bulk measurements may not be appropriate.
机译:描述了用于定量简单烷基胺:甲胺(MA),二甲胺(DMA),三甲胺(TMA),乙胺(EA),二乙胺(DEA)和三乙胺(茶),在环境大气中的定量离子色谱法。检测极限(3σ)是所有这些胺的几十pmol范围,除了TMA和DEA之外的所有化合物都可以实现良好的分辨率。该技术应用于使用微孔均匀沉积抗冲击器(Moudi)收集的时间综合样本的分析,其具有十个阶段,用于颗粒的颗粒,空气动力学直径在56nm和18μm之间。在城市和农村大陆航空的八个样本中,胺的大规模加载在与320和560nm之间的空气动力学直径相对应的阶段上一致地最大化。精细气溶胶中胺(R3NH + / NH4 +)的摩尔比范围为0.005至0.2,最大化为最小颗粒尺寸。 R3NH + / NH4 +比的尺寸依赖性表明了导致胺和氨掺入次级颗粒的过程的相对重要性的差异。该技术还用于使用环境离子监测离子色谱仪(AIM-IC)在气相和细颗粒物中同时在线测量胺的同时在线测量。在多伦多市中心,DMA,TMA + DEA和茶中的一天竞选期间,从低于检测限额为2.7 PPT在气相中的范围内。在颗粒相中,观察到Mah +和Tmah + + DEAH +范围从低于检测限直至15ngm≤3。在颗粒相中存在可检测水平的胺对应于具有较高相对湿度和硝酸盐较高的质量载荷的周期。虽然使用AIM-IC制造的每小时测量提供可用于评估将气体粒子分配模型应用于胺的数据,但R3NH + / NH4 +比的强大依赖性表明使用批量测量可能不合适。

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