Department of Civil and Environmental Engineering, University of California , Davis, California 95616, United States.
Department of Environmental Toxicology, University of California , Davis, California 95616, United States.
Environ Sci Technol. 2016 Feb 16;50(4):1681-90. doi: 10.1021/acs.est.5b04134. Epub 2016 Jan 27.
The optical properties, composition and sources of the wintertime aerosols in the San Joaquin Valley (SJV) were characterized through measurements made in Fresno, CA during the 2013 DISCOVER-AQ campaign. PM2.5 extinction and absorption coefficients were measured at 405, 532, and 870 nm along with refractory black carbon (rBC) size distributions and concentrations. BC absorption enhancements (Eabs) were measured using two methods, a thermodenuder and mass absorption coefficient method, which agreed well. Relatively large diurnal variations in the Eabs at 405 nm were observed, likely reflecting substantial nighttime emissions of wood burning organic aerosols (OA) from local residential heating. Comparably small diurnal variations and absolute nighttime values of Eabs were observed at the other wavelengths, suggesting limited mixing-driven enhancement. Positive matrix factorization analysis of OA mass spectra from an aerosol mass spectrometer resolved two types of biomass burning OA, which appeared to have different chemical composition and absorptivity. Brown carbon (BrC) absorption was estimated to contribute up to 30% to the total absorption at 405 nm at night but was negligible (<10%) during the day. Quantitative understanding of retrieved BrC optical properties could be improved with more explicit knowledge of the BC mixing state and the distribution of coating thicknesses.
利用 2013 年在美国加利福尼亚州弗雷斯诺市进行的 DISCOVER-AQ 项目中的测量结果,对圣华金谷(SJV)冬季气溶胶的光学特性、成分和来源进行了研究。在 405、532 和 870nm 波长处测量了 PM2.5 消光和吸收系数,以及难熔黑碳(rBC)的粒径分布和浓度。采用热沉降和质量吸收系数两种方法测量了 BC 吸收增强(Eabs),两种方法的结果非常吻合。在 405nm 处观察到 Eabs 的日变化较大,这可能反映了当地居民供暖中大量夜间排放的木质燃烧有机气溶胶(OA)。在其他波长处,Eabs 的日变化和绝对夜间值都比较小,这表明混合驱动增强作用有限。气溶胶质谱仪的 OA 质谱的正矩阵因子分析解析出两种生物质燃烧 OA,它们似乎具有不同的化学成分和吸光性。在夜间,BrC 吸收估计对 405nm 处的总吸收贡献高达 30%,但在白天可以忽略不计(<10%)。如果能更明确地了解 BC 的混合状态和涂层厚度分布,那么对 BrC 光学特性的定量理解将会得到改善。