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Construction and Characterization of an Atmospheric Simulation Smog Chamber

机译:大气模拟烟雾箱的构造与表征

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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 NO_2, NO, O_3, C_3H_6 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.
机译:当前,北京的空气污染已经成为复杂的问题,其污染源分为两类:煤烟和光化学烟雾。此外,O3的每小时最大平均浓度持续增加,尤其是在夏天。为了模拟光化学反应,建立空气质量模拟模型并进一步改善北京的空气质量,清华大学设计并建造了一个精确控温的室内烟雾室。已经进行了表征实验,以获取烟雾室的基本参数,例如NO_2,NO,O_3,C_3H_6和颗粒物(PM)的壁损失率,室中紫外线(UV)的强度,净化空气的反应性和实验结果的可重复性。结果表明该设备符合规格要求,可以满足模拟光化学反应所需的要求。正在研究高浓度的主要被污染的PM对臭氧和次要有机气溶胶(SOA)形成的影响。

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