State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics, Chinese Academy of Sciences , Beijing 100029, China.
University of Chinese Academy of Sciences , Beijing 100049, China.
Environ Sci Technol. 2017 Jan 17;51(2):762-770. doi: 10.1021/acs.est.6b04498. Epub 2017 Jan 6.
Secondary organic aerosol (SOA) constitutes a large fraction of OA, yet remains a source of significant uncertainties in climate models due to incomplete understanding of its formation mechanisms and evolutionary processes. Here we evaluated the effects of photochemical and aqueous-phase processing on SOA composition and oxidation degrees in three seasons in Beijing, China, using high-resolution aerosol mass spectrometer measurements along with positive matrix factorization. Our results show that aqueous-phase processing has a dominant impact on the formation of more oxidized SOA (MO-OOA), and the contribution of MO-OOA to OA increases substantially as a function of relative humidity or liquid water content. In contrast, photochemical processing plays a major role in the formation of less oxidized SOA (LO-OOA), as indicated by the strong correlations between LO-OOA and odd oxygen (O = O + NO) during periods of photochemical production (R = 0.59-0.80). Higher oxygen-to-carbon ratios of SOA during periods with higher RH were also found indicating a major role of aqueous-phase processing in changing the oxidation degree of SOA in Beijing. Episodes analyses further highlight that LO-OOA plays a more important role during the early stage of the formation of autumn/winter haze episodes while MO-OOA is more significant during the later evolution period.
二次有机气溶胶 (SOA) 构成了有机气溶胶 (OA) 的很大一部分,但由于其形成机制和演化过程的不完全理解,仍然是气候模型中的一个重要不确定性来源。在这里,我们使用高分辨率气溶胶质谱仪测量和正矩阵因子分析,评估了光化学和水相处理对中国北京三个季节 SOA 组成和氧化度的影响。我们的结果表明,水相处理对更氧化的 SOA(MO-OOA)的形成有主导作用,而 MO-OOA 对 OA 的贡献随着相对湿度或液相水含量的增加而显著增加。相比之下,光化学处理在较氧化 SOA(LO-OOA)的形成中起着主要作用,这可以从光化学生成期间 LO-OOA 与奇数氧(O = O + NO)之间的强相关性看出(R = 0.59-0.80)。在相对湿度较高的时期,SOA 的氧碳比也较高,这表明水相处理在改变北京 SOA 的氧化度方面起着主要作用。事件分析进一步强调,在秋冬霾事件形成的早期阶段,LO-OOA 起着更重要的作用,而在后期的演化阶段,MO-OOA 则更为显著。