Faculty of Environmental Earth Science, Hokkaido University , Sapporo 060-0610, Japan.
J Phys Chem A. 2013 Dec 5;117(48):12912-21. doi: 10.1021/jp408672m. Epub 2013 Nov 22.
Ethylene ozonolysis was investigated in laboratory experiments using a Teflon bag reactor. A negative ion chemical ionization mass spectrometer (NI-CIMS) using SO2Cl(-) and Cl(-) as reagent ions was used for product analysis. In addition to the expected gas-phase products, such as formic acid and hydroperoxymethyl formate, oligomeric hydroperoxides composed of the Criegee intermediate (CH2OO) as a chain unit were observed. Furthermore, we observed secondary organic aerosol (SOA) formation from the ethylene ozonolysis, and the particle-phase products were also analyzed by NI-CIMS. The CH2OO oligomers were also observed as particle-phase components, suggesting that the oligomeric hydroperoxides formed in the gas phase partition into the particle phase. By adding methanol as a stabilized Criegee intermediate scavenger, both the gas-phase oligomer formation and SOA formation were strongly suppressed. This indicates that CH2OO plays a critical role in the formation of oligomeric hydroperoxides followed by SOA formation in ethylene ozonolysis. A new formation mechanism for the oligomeric hydroperoxides, which includes sequential addition of CH2OO to hydroperoxides, is proposed.
在实验室实验中使用特氟龙袋式反应器研究了乙烯臭氧化反应。使用亚硫酰氯(-)和氯(-)作为试剂离子的负离子化学电离质谱仪(NI-CIMS)用于产物分析。除了预期的气相产物,如甲酸和过氧羟甲基甲酸外,还观察到由 Criegee 中间体(CH2OO)作为链单元组成的低聚物过氧化物。此外,我们观察到乙烯臭氧化反应产生的二次有机气溶胶(SOA)的形成,并且还通过 NI-CIMS 分析了颗粒相产物。CH2OO 低聚物也作为颗粒相成分被观察到,这表明在气相中形成的低聚物过氧化物分配到颗粒相中。通过添加甲醇作为稳定的 Criegee 中间体清除剂,气相低聚物形成和 SOA 形成都受到强烈抑制。这表明 CH2OO 在乙烯臭氧化反应中形成低聚物过氧化物继而形成 SOA 中起着关键作用。提出了一种包括 CH2OO 向过氧化物的顺序加成的低聚物过氧化物的新形成机制。