首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Characterization of Organic Particles from Incense Burning Using an Aerodyne High-Resolution Time-of-Flight Aerosol Mass Spectrometer
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Characterization of Organic Particles from Incense Burning Using an Aerodyne High-Resolution Time-of-Flight Aerosol Mass Spectrometer

机译:使用Aerodyne高分辨率飞行时间气溶胶质谱仪对香燃烧中的有机颗粒进行表征

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摘要

Incense burning is a common ritual in Asian communities both indoors in residential homes and outdoors in temple premises. Organic particles from burning of incense sticks, incense coils, and mosquito coils after extensive dilution (>1000x) were characterized by the Aerodyne high-resolution time-of-flight aerosol mass spectrometer (HR-ToF-AMS). The obtained mass spectra in general resemble those reported for biomass burning aerosols. Ion peaks with m/z values higher than 100 accounted for 15%-25% of the organic signals in the unit-mass-resolution (UMR) mass spectra. In the high-resolution (HR) mass spectra, the ion peaks at m/z 60 and 73 are found to be related to the sugar anhydrides as in particles from other biomass burning processes. In addition, the ion peaks at m/z 107,121,137,151,167, and 181, some of which (e.g., m/z 137 and 167) have been observed in particles from biomass burning but not yet assigned, were assigned to lignin-related components. Elemental analysis from the HR data reveals that a large portion of particulate organics from incense burning are oxygenated (O/C between 0.3 and 0.5) and unsaturated (and/or cyclic) in nature. Results from this study also highlight that mass spectra from HR-ToF-AMS measurements concerning primary emissions such as incense burning contain very useful information in the high m/z (>100) region about the chemical characteristics of those primary organic particles.
机译:在亚洲社区中,无论是在住宅室内还是在庙宇场所,焚香都是一种常见的仪式。 Aerodyne高分辨率飞行时间气溶胶质谱仪(HR-ToF-AMS)对经过广泛稀释(> 1000x)后烧香,熏香和蚊香的有机颗粒进行了表征。总体上,所获得的质谱类似于生物质燃烧气溶胶的报道质谱。 m / z值高于100的离子峰占单位质量分辨率(UMR)质谱图中有机信号的15%-25%。在高分辨率(HR)质谱图中,发现m / z 60和73处的离子峰与糖酐相关,就像其他生物质燃烧过程中的颗粒一样。另外,在来自生物质燃烧的颗粒中观察到但尚未分配的,在m / z 107,121,137,151,167和181处的离子峰被指定为木质素相关组分。其中一些(例如,m / z 137和167)已被观察到。来自HR数据的元素分析表明,香炉燃烧产生的大部分颗粒有机物在自然界中被氧化(O / C在0.3到0.5之间)和不饱和(和/或环状)。这项研究的结果还突出表明,HR-ToF-AMS测量涉及主要排放物(如香燃烧)的质谱图在高m / z(> 100)区域中包含有关这些主要有机颗粒化学特性的非常有用的信息。

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