期刊文献+

Observations of nitrous acid and its relative humidity dependence in Shanghai 被引量:9

Observations of nitrous acid and its relative humidity dependence in Shanghai
下载PDF
导出
摘要 Nitrous acid, HNO2, is an important precursor of OH radicals in the troposphere. Measurements of HNO2 and NO2, using differential optical absorption spectroscopy (DOAS), were performed in Shanghai, China for a period from October 22, 2004 to January 4, 2005. The mean (and median) hourly concentrations of HNO2 and NO2 during this period were 1.1 (0.7) ppb and 24 (21.4) ppb respectively. A correlation between HNO2/NO2 and PM10 mass concentrations was obtained. This correlation suggests that significant heterogeneous chemical production of HNO2 may occur through NO2 reactions on aerosol surfaces. This hypothesis was further supported by detailed analysis of selected pollution episodes in this study. At the same time, the water dependence of HNO2 formation was studied by analysis of relative humidity (RH). It showed that the maximum HNO2/NO2 ratio was increased along with RH below 70% and inhibited at RH〉70%. Nitrous acid, HNO2, is an important precursor of OH radicals in the troposphere. Measurements of HNO2 and NO2, using differential optical absorption spectroscopy (DOAS), were performed in Shanghai, China for a period from October 22, 2004 to January 4, 2005. The mean (and median) hourly concentrations of HNO2 and NO2 during this period were 1.1 (0.7) ppb and 24 (21.4) ppb respectively. A correlation between HNO2/NO2 and PM10 mass concentrations was obtained. This correlation suggests that significant heterogeneous chemical production of HNO2 may occur through NO2 reactions on aerosol surfaces. This hypothesis was further supported by detailed analysis of selected pollution episodes in this study. At the same time, the water dependence of HNO2 formation was studied by analysis of relative humidity (RH). It showed that the maximum HNO2/NO2 ratio was increased along with RH below 70% and inhibited at RH〉70%.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2006年第5期910-915,共6页 环境科学学报(英文版)
基金 The National Natural Science Foundation of China (No. 20277006) and the Fudan University Foundation for Young Scientists (No.EXH 6286301)
关键词 DOAS heterogeneous formation nitrous acid PM o aerosol relative humidity DOAS heterogeneous formation nitrous acid PM,o aerosol relative humidity
  • 相关文献

参考文献25

  • 1Alicke B,Geyer A,Hofzumahaus A et al.,2003.OH formation by HONO photolysis during the BERLIOZ experiment[J].Journal of Geophysical Research,108(D4):8247-8263.
  • 2Ammann M,Kalbere,M,Jost D T et al.,1998.Heterogeneous production of nitrous acid on soot in polluted air masses[J].Nature,395:157-160.
  • 3Andres-Hernandez M D,Notholt J,Hjorth J et al.,1996.A DOAS study on the origins of nitrous acid at urban and non-urban sites[J].Atmospheric Environment,30:175-180.
  • 4Aumont B,Madronich S,Ammann M et al.,1999.On the NO2 soot reaction in the atmosphere[J].Journal of Geophysical Research,104(D1):1729-1736.
  • 5Calvert J G,Yarwood G,Dunker A M,1994.An evaluation of the mechanism of nitrous acid formation in the urban atmosphere[J].Research on Chemical Intermediates,20(3/4/5):463-502.
  • 6Grassian V H,2001.Heterogeneous uptake and reaction of nitrogen oxides and volatile organic compounds on the surface of atmospheric particles including oxides,carbonates,soot and mineral dust:implications for the chemical balance of the troposphere[J].International Reviews in Physical Chemistry,20(3):467-548.
  • 7Harrison R M,Kitto A M N,1994.Evidence for a surface source of atmospheric nitrous acid[J].Atmospheric Environment,28A:1089-1094.
  • 8Harrison R M,Peak J D,Collins G M,1996.Tropospheric cycle of nitrous acid[J].Journal of Geophysical Research,101:14429-14439.
  • 9Kalberer M,Ammann M,Arens F et al.,1999.Heterogeneous formation of nitrous acid (HONO) on soot aerosol particles[J].Journal of Geophysical Research,104:13825-13832.
  • 10Kleffmann J,Kurtenbach R,L?rzer J et al.,2003.Measured simulated vertical profiles of nitrous acid-Part Ⅰ:Field measurements[J].Atmospheric Environment,37:2949-2955.

同被引文献150

引证文献9

二级引证文献254

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部