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Light absorption of brown carbon aerosol in the PRD region of China

机译:棕色碳气在中国珠三角区的光吸收

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The strong spectral dependence of light absorption of brown carbon?(BrC) aerosol is regarded to influence aerosol's radiative forcing significantly. The Absorption Angstrom Exponent?(AAE) method has been widely used in previous studies to attribute light absorption of BrC at shorter wavelengths for ambient aerosols, with a theoretical assumption that the AAE of "pure" black carbon (BC) aerosol equals to?1.0. In this study, the AAE method was applied to both urban and rural environments in the Pearl River Delta?(PRD) region of China, with an improvement of constraining the realistic AAE of "pure" BC through statistical analysis of on-line measurement data. A three-wavelength photo-acoustic soot spectrometer?(PASS-3) and aerosol mass spectrometers?(AMS) were used to explore the relationship between the measured AAE and the relative abundance of organic aerosol to BC. The regression and extrapolation analysis revealed that more realistic AAE values for "pure" BC aerosol (AAEBC) were 0.86, 0.82, and 1.02 between 405 and 781?nm, and 0.70, 0.71, and 0.86 between 532 and 781?nm, in the campaigns of urbanwinter, urbanfall, and ruralfall, respectively. Roadway tunnel experiments were conducted and the results further confirmed the representativeness of the obtained AAEBC values for the urban environment. Finally, the average light absorption contributions of BrC (?relative uncertainties) at 405?nm were quantified to be 11.7?% (5?%), 6.3?% (4?%), and 12.1?% (7?%) in the campaigns of urbanwinter, urbanfall, and ruralfall, respectively, and those at 532?nm were 10.0?% (2?%), 4.1?% (3?%), and 5.5?% (5?%), respectively. The relatively higher BrC absorption contribution at 405?nm in the ruralfall campaign could be reasonably attributed to the biomass burning events nearby, which was then directly supported by the biomass burning simulation experiments performed in this study. This paper indicates that the BrC contribution to total aerosol light absorption at shorter wavelengths is not negligible in the highly urbanized and industrialized PRD region.
机译:棕色碳的光吸收的强光谱依赖性被认为显着影响气溶胶的辐射强迫。吸收埃克斯特罗姆(AAE)方法已广泛用于以前的研究,以将BRC的光吸收以较短的环境气雾剂,具有理论上的假设,即“纯”黑碳(BC)气溶胶的AAE等于?1.0 。在这项研究中,AAE方法应用于中国珠江三角洲的城乡环境(PRD)地区,通过在线测量数据的统计分析改善了“纯”BC的逼真AAE 。三波长的照片声学烟灰谱仪?(Pass-3)和气溶胶质谱仪?(AMS)用于探讨测量的AAE与BC的有机气溶胶的相对丰度之间的关系。回归和外推分析表明,“纯”BC气溶胶(AAEBC)的更现实的AAE值为0.86,0.82和1.02,在405和781Ω·Nm之间,0.70,0.71和0.86之间,在532和781?nm之间,分别是Urbanwinter,Urbanfall和农村的竞选。进行了巷道隧道实验,结果进一步证实了所获得的AAEBC值为城市环境的代表性。最后,量化了405〜NM的BRC(α相对不确定因素)的平均光吸收贡献为11.7〜%(5?%),6.3□%(4〜%),12.1℃(7?%)乌尔米特,城市属性和农村的竞选,以及532纳米的竞选活动分别为10.0?%(2?%),4.1□?%(3?%)和5.5℃(5?%)。在农村活动中,405岁的BRC吸收贡献相对较高的BRC吸收贡献可以合理地归因于附近的生物质燃烧事件,然后通过本研究中进行的生物质燃烧模拟实验直接支持。本文表明,在高层城市化和工业化的珠三角地区,BRC对较短波长下的全气溶胶光吸收的贡献在不可忽视。

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