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Construction and Characterization of an Atmospheric Simulation Smog Chamber

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【作者】 武山吕子峰郝吉明赵喆李俊华Hideto TAKEKAWAHiroaki MINOURAAkio YASUDA

【Author】 WU Shan LU Zifeng HAO Jiming ZHAO Zhe LI Junhua Hideto TAKERAWA, Hiroaki MINOURA, and Akio YASUDA Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084 Toyota Central Research and Development Laboratories, Nagakute, Aichi, 480-1192, Japan

【机构】 Department of Environmental Science and Engineering Tsinghua UniversityToyota Central Research and Development Laboratories Nagakute Aichi480-1192JapanToyota Central Research and Development Laboratories NagakuteAichiBeijing 100084

【摘要】 <正>Currently, air pollution in Beijing has become a complex problem with two types of source pollutants: coal smoke and photochemical smog. Furthermore the maximum hourly mean concentration of O3 increases continuously, especially in the summer. In order to simulate the photochemical reaction, develop an air quality simulation model and further improve the air quality of Beijing, a precisely temperature-controlled, indoor, smog chamber facility was designed and constructed at Tsinghua University. Characterization experiments have been carried out to acquire the basic parameters of the smog chamber, such as the wall loss rates of NO2, NO, O3, C3H6 and particulate matter (PM), the intensity of ultraviolet (UV) light in the chamber, the reactivity of the purified air and the reproducibility of the experimental results. The results indicate that the facility performs up to specifications, and can meet the demands required for simulating the photochemical reaction. The effect of high primary contaminated PM on the formation of ozone and secondary organic aerosol (SOA) is under investigation.

【Abstract】 Currently, air pollution in Beijing has become a complex problem with two types of source pollutants: coal smoke and photochemical smog. Furthermore the maximum hourly mean concentration of O3 increases continuously, especially in the summer. In order to simulate the photochemical reaction, develop an air quality simulation model and further improve the air quality of Beijing, a precisely temperature-controlled, indoor, smog chamber facility was designed and constructed at Tsinghua University. Characterization experiments have been carried out to acquire the basic parameters of the smog chamber, such as the wall loss rates of NO2, NO, O3, C3H6 and particulate matter (PM), the intensity of ultraviolet (UV) light in the chamber, the reactivity of the purified air and the reproducibility of the experimental results. The results indicate that the facility performs up to specifications, and can meet the demands required for simulating the photochemical reaction. The effect of high primary contaminated PM on the formation of ozone and secondary organic aerosol (SOA) is under investigation.

  • 【文献出处】 Advances in Atmospheric Sciences ,大气科学进展(英文版) , 编辑部邮箱 ,2007年02期
  • 【分类号】X16
  • 【被引频次】25
  • 【下载频次】237
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