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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Evidence in biomass burning smoke for a light-absorbing aerosol with properties intermediate between brown and black carbon
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Evidence in biomass burning smoke for a light-absorbing aerosol with properties intermediate between brown and black carbon

机译:生物质燃烧烟雾的证据,用于棕色和黑色碳之间的性质中间体

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Biomass combustion produces black carbon (BC) and brown carbon (BrC) aerosols that contribute substantially to warming the Earth's atmosphere. Accurate knowledge of their emissions and absorption per unit mass (mass absorption cross-section; MAC) can be used to quantify the radiative impact of these combustion products. We isolated particles generated from laboratory biomass burning fires by morphology and found that some particles from biomass burning do not correspond to either BC or BrC according to common operational definitions. Unlike BrC, these particles strongly absorb red light, with a MAC and spectral dependence of absorption between that of BrC and BC. They also have intermediate volatility: they survive thermodenuding at 250 degrees C but do not heat to incandescence in a single particle soot photometer (SP2) instrument. We also found evidence for intermediate properties in ambient wildfire smoke from the 2013 Rim Fire in California. More work is needed to understand how much this intermediate material contributes to atmospheric light absorption from typical combustion, whether or not it corresponds to "tar balls," and how it may affect previous MAC measurements that were attributed to enhanced absorption by transparent coatings. Copyright (c) 2019 American Association for Aerosol Research
机译:生物质燃烧产生黑碳(BC)和棕色碳(BRC)气溶胶,其贡献大量促使地球的大气层。每单位质量(大量吸收横截面; MAC)准确了解其排放和吸收量,可用于量化这些燃烧产物的辐射影响。我们通过形态学从实验室生物质燃烧燃烧产生的粒子,发现来自生物质燃烧的一些颗粒不对应于BC或BRC根据常见的操作定义。与BRC不同,这些颗粒强烈地吸收红光,具有BRC和BC的MAC和光谱依赖性的吸收。它们还具有中间挥发性:它们在250摄氏度下恒温存活,但在单个粒子光度计(SP2)仪器中不会加热到白炽灯。我们还发现2013年加利福尼亚州的2013年rim火灾中的环境野火烟雾中间特性的证据。需要更多的工作来了解这种中间材料从典型的燃烧中有助于大气吸收,无论是否对应于“焦油球”,以及它如何影响归因于透明涂层的增强吸收的先前MAC测量。版权所有(c)2019美国气溶胶研究协会

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