Huang Huan, Bi Xin-hui, Peng Long, Wang Xin-ming, Sheng Guo-ying, Fu Jia-mo
Huan Jing Ke Xue. 2016 Jan 15;37(1):16-21.
Light absorption properties of water-soluble organic carbon (WSOC) were investigated in the urban area of Guangzhou. The fine particulate matter (PM₂.₅) and size-segregated samples were collected in September and December of 2014 and January of 2015. The variation of absorption with wavelength of WSOC was characterized by the absorption Angström exponent (AAEabs). The AAE values of WSOC in PM₂.₅ were 3.72 ± 0.41 in autumn and 3.91 ± 0.70 in winter, which were lower than those in Beijing and north America. The mass absorption efficiency (MAE) of WSOC at 365 nm wavelength was 0.52 m² · g⁻¹ in autumn and 0.92 m² · g⁻¹ in winter, exhibiting distinct variations between autumn and winter. In winter, the MAEwsoc values exhibited a decreasing trend with increasing particle size, and all size-segregated MAE(WSOC) values in autumn were lower than those in winter, particularly for the particles < 0.95 µm, suggesting more contribution of the secondary formation to WSOC. Comparing the MAE values of elemental carbon (EC) and WSOC, it could be found that the contribution of WSOC to the light extinction of particles couldn't be ignored when the particles were mainly emitted from primary sources.
对广州市区水溶性有机碳(WSOC)的光吸收特性进行了研究。在2014年9月、12月以及2015年1月采集了细颗粒物(PM₂.₅)和按粒径分级的样本。通过吸收埃斯特朗指数(AAEabs)表征了WSOC的吸收随波长的变化。PM₂.₅中WSOC的AAE值秋季为3.72±0.41,冬季为3.91±0.70,低于北京和北美的值。WSOC在365nm波长处的质量吸收效率(MAE)秋季为0.52 m²·g⁻¹,冬季为0.92 m²·g⁻¹,秋季和冬季呈现出明显差异。在冬季,MAEwsoc值随粒径增大呈下降趋势,秋季所有按粒径分级的MAE(WSOC)值均低于冬季,特别是对于粒径<0.95µm的颗粒物,表明二次形成对WSOC的贡献更大。比较元素碳(EC)和WSOC的MAE值可以发现,当颗粒物主要由一次源排放时,WSOC对颗粒物光消光的贡献不可忽视。