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Chemical discrimination of the particulate and gas phases of miniCAST exhausts using a two-filter collection method

机译:使用双滤液法测定粉碎机颗粒和气体阶段的化学辨别

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摘要

Combustion of hydrocarbons produces both particulate- and gas-phase emissions responsible for major impacts on atmospheric chemistry and human health. Ascertaining the impact of these emissions, especially on human health, is not straightforward because of our relatively poor knowledge of how chemical compounds are partitioned between the particle and gas phases. Accordingly, we propose coupling a two-filter sampling method with a multi-technique analytical approach to fully characterize the particulate- and gas-phase compositions of combustion by-products. The two-filter sampling method is designed to retain particulate matter (elemental carbon possibly covered in a surface layer of adsorbed molecules) on a first quartz fiber filter while letting the gas phase pass through and then trap the most volatile components on a second black-carbon-covered filter. All samples thus collected are subsequently subjected to a multi-technique analytical protocol involving two-step laser mass spectrometry (L2MS), secondary ion mass spectrometry (SIMS), and micro-Raman spectroscopy. Using the combination of this two-filter sampling-multi-technique approach in conjunction with advanced statistical methods, we are able to unravel distinct surface chemical compositions of aerosols generated with different set points of a miniCAST burner. Specifically, we successfully discriminate samples by their volatile, semi-volatile, and nonvolatile polycyclic aromatic hydrocarbon (PAH) contents and reveal how subtle changes in combustion parameters affect particle surface chemistry.
机译:烃的燃烧产生了对大气化学和人类健康的主要影响负责的颗粒状和气相排放。确定这些排放的影响,特别是对人体健康的影响并不简单,因为我们对化合物如何在颗粒和气相之间分配的知识相对较差。因此,我们提出了一种用多种技术分析方法偶联一种双滤液取样方法,以完全表征燃烧副产物的颗粒和气相组成。双滤液采样方法设计成保持颗粒物质(可能在吸附分子的表面层覆盖的元素碳),同时使气相通过,然后在第二个黑色上捕获最挥发性的组分 - 碳覆盖过滤器。随后对如此收集的所有样品进行了一种涉及两步激光质谱(L2MS),二次离子质谱(SIMS)和微拉曼光谱的多技术分析方案。使用这种两滤波器采样 - 多技术方法的组合与先进的统计方法结合,我们能够用迷你岩燃烧器的不同设定点产生的气溶胶的不同表面化学成分。具体地,我们通过挥发性,半挥发性和非挥发性多环芳烃(PAH)含量成功地区分样品,并揭示了燃烧参数的细微变化如何影响颗粒表面化学。

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