化学
离解(化学)
质谱法
光化学
微量气体
电离
质子化
羟基自由基
异戊二烯
化学电离
环境化学
产量(工程)
光解
大气(单位)
量子产额
手套箱
同位素标记
串联质谱法
分析化学(期刊)
无机化学
激进的
串联
场解吸
离子
微量
电子
大气压化学电离
水的自电离
化学反应
氩
大气化学
电子电离
溶剂化电子
作者
Huan Chen,Xu Yuan,Jianze Zhang,X. Chen,Joseph S. Francisco,Yifan Meng,Xinxing Zhang
摘要
HONO and HNO 3 are important atmospheric species, yet their formation pathways in the atmosphere remain uncertain. In this study, we report the simultaneous formation of HONO and HNO 3 at the air–water interface of water microdroplets in the presence of trace amounts of NO 2 . Water microdroplets were generated either in ambient air or in a glovebox where the gas content could be precisely controlled. The products generated by the microdroplets and surrounding gas were directly analyzed with mass spectrometers. Our results indicated that NO 2 gas could be reduced by an electron to form NO 2 –, which was further protonated to yield HONO, or could be oxidized by a hydroxyl radical (·OH) to form HNO 3 . Electrons and ·OH were produced by a strong electric field that facilitated OH – dissociation at the air–water interface of the microdroplets. Tandem mass spectrometry, isotope labeling, and chemical ionization methods confirmed the formation of neutral HONO and HNO 3 . Our results provide a previously unknown pathway for the formation of HONO and HNO 3 in the troposphere.
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