Stable Sulfur Isotopes Revealed a Major Role of Transition-Metal Ion-Catalyzed SO2Oxidation in Haze Episodes

薄雾 硫酸盐 化学 硫黄 δ34S 气溶胶 环境化学 同位素分馏 大气化学 分馏 无机化学 臭氧 化学工程 有机化学 热液循环 流体包裹体 工程类
作者
Jianghanyang Li,Yanlin Zhang,Fang Cao,Wenqi Zhang,Mei‐Yi Fan,Xuhui Lee,Greg Michalski
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:54 (5): 2626-2634 被引量:125
标识
DOI:10.1021/acs.est.9b07150
摘要

Secondary sulfate aerosols played an important role in aerosol formation and aging processes, especially during haze episodes in China. Secondary sulfate was formed via atmospheric oxidation of SO2 by OH, O3, H2O2, and transition-metal-catalyzed (TMI) O2. However, the relative importance of these oxidants in haze episodes was strongly debated. Here, we use stable sulfur isotopes (δ34S) of sulfate aerosols and a Rayleigh distillation model to quantify the contributions of each oxidant during a haze episode in Nanjing, a megacity in China. The observed δ34S values of sulfate aerosols showed a negative correlation with sulfur oxidation ratios, which was attributed to the sulfur isotopic fractionations during the sulfate formation processes. Using the average fractionation factor calculated from our observations and zero-dimensional (0-D) atmospheric chemistry modeling estimations, we suggest that OH oxidation was trivial during the haze episode, while the TMI pathway contributed 49 ± 10% of the total sulfate production and O3/H2O2 oxidations accounted for the rest. Our results displayed good agreement with several atmospheric chemistry models that carry aqueous and heterogeneous TMI oxidation pathways, suggesting the role of the TMI pathway was significant during haze episodes.
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