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首页> 外文期刊>PLoS One >Solid-phase excitation-emission matrix spectroscopy for chemical analysis of combustion aerosols
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Solid-phase excitation-emission matrix spectroscopy for chemical analysis of combustion aerosols

机译:固相激发 - 发射基质光谱分析燃烧气溶胶的化学分析

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Exposure to ultrafine combustion aerosols such as particulate matter (PM) from residential woodburning, forest fires, cigarette smoke, and traffic emission have been linked to adverse health outcomes. Excitation-emission matrix (EEM) spectroscopy presents a sensitive and cost-effective alternative for analysis of PM organic fraction. However, as with other analytical chemistry methods, the miniaturization is hindered by a solvent extraction step and a need for benchtop instrumentation. We present a methodology for collecting and in-situ analysis of airborne nanoparticles that eliminates labor-intensive sample preparation and miniaturizes the detection platform. Nanoparticles are electrostatically collected onto a transparent substrate coated with solid-phase (SP) solvent—polydimethylsiloxane (PDMS). The PM organic fraction is extracted into PDMS and analyzed in-situ , thus avoiding liquid-phase extraction. In the SP-EEM analysis, we evaluated external and internal excitation schemes. Internal excitation shows the lowest scattering interference but leads to signal masking from PDMS fluorescence for λ250nm. The external excitation EEM spectra are dependent on the excitation light incident angle; ranges of 30–40° and 55–65° show the best results. SP-EEM spectra of woodsmoke and cigarette smoke samples are in good agreement with the EEM spectra of liquid-phase extracts. The SP-EEM technique can be used to develop wearable sensors for exposure assessments and environmental monitoring.
机译:暴露于来自住宅木材植物,森林火灾,香烟烟雾和交通排放的超细燃烧气溶胶如颗粒物质(PM)已与不利的健康结果有关。激发 - 发射矩阵(EEM)光谱呈现敏感且经济效率的替代方案,用于分析PM有机级分。然而,与其他分析化学方法一样,通过溶剂萃取步骤阻碍小型化,并且需要支撑台仪器。我们提出了一种用于收集和原位分析空气纳米颗粒的方法,消除了劳动密集型样品制备和小型化检测平台。将纳米颗粒静电地收集到涂有固相(SP)溶剂 - 聚二甲基硅氧烷(PDMS)的透明基材上。将PM有机级分萃取到PDMS中并分析原位,从而避免液相萃取。在SP-EEM分析中,我们评估了外部和内部励磁方案。内部激发显示了散射干扰的最低散射干扰,但导致来自PDMS荧光的信号掩蔽λ<250nm。外部励磁EEM光谱取决于激发光入射角;范围为30-40°和55-65°,显示出最佳效果。木质OK和香烟烟雾样品的SP-EEM光谱与液相提取物的EEM光谱很好。 SP-EEM技术可用于开发可穿戴传感器以进行曝光评估和环境监测。

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