摘要
在北京空气重污染期间,以石英膜采集的PM2.5为样本,采用飞行时间二次离子质谱(TOFSIMS)结合质量高分辨模式与正负离子成像模式表征了PM2.5-铵。实验观察到了硫酸氢铵(NH4HSO4)单颗粒物,未见硝酸铵或氯化铵。实验验证了正、负离子成像之间微米级偏差的人工校正方法,同时阐明了TOF-SIMS表征PM2.5水溶性无机盐等成分的特点、优势和应用潜力。
Fine particulate matter(PM2.5)is the primary atmospheric pollutant in the haze episodes.Water-soluble inorganic ions such as nitrate,sulfate,ammonium and chloride salt are generally considered to be the main components of PM2.5 during heavy atmospheric pollution period.Due to the unstable and decomposable characteristics of ammonium salts,the traditional single particle analysis technique is limited for the characterization.The specific combination of ammonium salts in atmospheric aerosols is still ambiguous and worthy of study.In this study,PM2.5 samples were collected using a medium volume sampler in a typical urban area of Beijing from December 1st to December 31th,2015.Samples of typical heavy air pollution period were analyzed using time of flight-secondary ion mass spectrometry(TOF-SIMS).The ammonium salt in PM2.5 was characterized by high quality resolution mode and positive and negative ion imaging mode.The results showed that a variety of inorganic ions groups were accumulated on the surfaces of aerosol particles in the haze episodes of Beijing,more than ten kinds of water-soluble inorganic ions including ammonium were detected by TOF-SIMS.The single-particle mapping analysis of PM2.5 showed that the presence of ammonium bisulfate(NH 4HSO 4)single particles were observed in three groups of samples and two different scales(100μm×100μm,40μm×40μm).Ammonium nitrate and ammonium chloride particulate matters were not detected.In addition,this paper also demonstrated the manual calibration method for positive and negative ion imaging deviation,and pointed out the characteristics,advantages and application potential of TOF-SIMS for the characterization of water-soluble inorganic components in PM2.5.
作者
杨欧
梁汉东
李展平
刘宇豪
YANG Ou;LIANG Han-dong;LI Zhan-ping;LIU Yu-hao(State Key Laboratory of Coal Resources and Safe Mining,Beijing 100083,China;College of Geoscience and Surveying Engineering,China University of Mining and Technology(Beijing),Beijing 100083,China;Key Laboratory of Organic Optoelectronics&Molecular Engineering of Ministry of Education,Department of Chemistry,Tsinghua University,Beijing 100084,China)
出处
《质谱学报》
EI
CAS
CSCD
北大核心
2018年第6期722-728,共7页
Journal of Chinese Mass Spectrometry Society
基金
国家自然科学基金项目(41772157)
美国布莱蒙基金(Blue Moon Fund)项目(1433034)资助