Na Kwangsam, Song Chen, Switzer Cameron, Cocker David R
Center for Environmental Research and Technology, Bourns College of Engineering, University of California, Riverside, California 92521, USA.
Environ Sci Technol. 2007 Sep 1;41(17):6096-102. doi: 10.1021/es061956y.
This study examines the influence of ammonia (NH3) on secondary organic aerosol (SOA) formation from the alpha-pinene/ozone oxidation system for dry and humid conditions. Aerosol yield differed depending on which OH scavenger was used, with the highest yield noted for CO, followed by cyclohexane and 2-butanol. Number and volume concentrations were quickly increased within the reactor by 15 and 8%, respectively, when NH3 was added after the reaction ceased. The increase in number concentration indicated the formation of new particles resulting from gas-to-particle conversion. Moreover, average particle size increased from 242 to 248 nm. The resulting aerosol growth was attributed to ammonium salts formed by the reaction between organic acids and NH3. When NH3 was added to aerosolized cis-pinonic acid in the environmental reactor, a dramatic increase in both number and volume concentrations of cis-pinonic acid was observed. This provides further evidence that NH3 can interact with gas-phase organic acids forming condensable salts and thereby enhancing SOA formation. Initially present NH3 significantly enhanced aerosol yield in alpha-pinene-ozone reactions, regardless of the presence of water vapor. The role of NH3 on SOA formation in the dry and humid conditions is discussed in terms of a theoretical modeling study.
本研究考察了氨气(NH₃)在干燥和潮湿条件下对α-蒎烯/臭氧氧化体系中二次有机气溶胶(SOA)形成的影响。气溶胶产率因所使用的羟基清除剂不同而有所差异,一氧化碳(CO)的产率最高,其次是环己烷和2-丁醇。反应停止后添加NH₃时,反应器内的粒子数浓度和体积浓度分别迅速增加了15%和8%。粒子数浓度的增加表明发生了气-粒转化从而形成了新粒子。此外,平均粒径从242纳米增加到了248纳米。气溶胶的增长归因于有机酸与NH₃反应形成的铵盐。在环境反应器中向雾化的顺式蒎酸中添加NH₃时,观察到顺式蒎酸的粒子数浓度和体积浓度均显著增加。这进一步证明NH₃可与气相有机酸相互作用形成可凝结盐,从而增强SOA的形成。无论有无水蒸气存在,初始存在的NH₃均能显著提高α-蒎烯-臭氧反应中的气溶胶产率。通过理论模型研究探讨了NH₃在干燥和潮湿条件下对SOA形成的作用。