Key Laboratory of Geographic Information Science of the Ministry of Education, School of Geographic Sciences, East China Normal University, Shanghai 200241, China.
Laboratory of Mass Spectrometry Analysis, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 200032, China.
Environ Sci Technol. 2023 Aug 1;57(30):11163-11172. doi: 10.1021/acs.est.3c03948. Epub 2023 Jul 5.
Optical characteristics and molecular compositions of brown carbon (BrC) were investigated during winter 2019 at a rural site of China with a focus on nitro-aromatic compounds (NACs) and imidazoles (IMs). The abundance of gaseous nitrophenols relative to CO during the campaign maximized at noontime, being similar to O, while the particulate NACs during the haze periods strongly correlated with toluene and NO, suggesting that NACs in the region are largely formed from the gas-phase photooxidation. Strong correlations of particulate IMs in the dry haze periods with the mass ratio of EC/PM and the concentration of levoglucosan were observed, indicating that IMs during the dry events are largely derived from biomass burning emissions. However, an increase in IMs with the increasing aerosol liquid water content and pH was observed in the humid haze events, along with much lower abundances of levoglucosan and K relative to PM, suggesting that IMs were mostly formed from aqueous reactions in the humid haze periods. These IMs exponentially increased with an increasing NH owing to an aqueous reaction of carbonyls with free ammonia. Our findings for the first time revealed an enhancing effect of ammonia on BrC formation in China, especially in humid haze periods.
在 2019 年冬季,我们在中国的一个农村地区进行了棕色碳(BrC)的光学特性和分子组成研究,重点关注硝基芳烃化合物(NACs)和咪唑类化合物(IMs)。在研究期间,气态的硝基酚相对于 CO 的丰度在正午时达到最大值,与 O 相似,而在雾霾期间的颗粒态 NACs 与甲苯和 NO 强烈相关,表明该地区的 NACs 主要是由气相光氧化形成的。在干燥的雾霾期间,颗粒态 IMs 与 EC/PM 质量比和左旋葡聚糖浓度之间存在强烈的相关性,表明在干燥事件中,IMs 主要来自生物质燃烧排放。然而,在潮湿的雾霾事件中,随着气溶胶液水含量和 pH 值的增加,IMs 增加,而与 PM 相比,左旋葡聚糖和 K 的含量较低,表明在潮湿的雾霾期间,IMs 主要是由水相反应形成的。由于羰基与游离氨的水相反应,这些 IMs 随 NH 的增加呈指数增长。我们的研究结果首次揭示了氨在中国对 BrC 形成的增强作用,特别是在潮湿的雾霾时期。