使用示踪气体测量放置在通风室内的气溶胶源的排放率:粒子壁沉积的影响。

D. Bémer, M. Lecler, R. Régnier, G. Hecht, J. Gerber
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引用次数: 12

摘要

在气溶胶源的情况下,测试了使用示踪气体测量空气传播污染源排放率的方法。研究了颗粒沉积对72 m3试验室壁面的影响。采用两种方法测定MgCl2气溶胶的沉积速率:一种是通过测量通风室内气溶胶浓度衰减,另一种是通过计算物质质量平衡。用光学计数法监测浓度衰减,用滤光片取样和原子吸收光谱法测定气溶胶质量浓度。进行了四个系列的测量。根据颗粒气动直径(d(ae))建立了沉积速率曲线,表明沉积速率高于Corner模型预测的沉积速率。衰减法给出了最好的结果。所进行的研究表明,对于气动直径< 5微米的颗粒,使用示踪气体测量气溶胶源排放率时,沉积现象几乎没有影响(低估< 25%)。对于较大直径的颗粒,壁沉积是该方法的一个极具限制性的因素,然而,可以通过使用小体积的测试室和尽可能短的采样时间来限制其影响。
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Measuring the emission rate of an aerosol source placed in a ventilated room using a tracer gas: influence of particle wall deposition.
A method to measure the emission rate of an airborne pollutant source using a tracer gas was tested in the case of an aerosol source. The influence of particle deposition on the walls of a test room of 72 m3 was studied. The deposition rate of an aerosol of MgCl2 was determined by means of two methods: one based on measuring the aerosol concentration decay inside the ventilated room, the other based on calculation of the material mass balance. The concentration decay was monitored by optical counting and the aerosol mass concentration determined by means of sampling on a filter and analysis of the mass deposited by atomic absorption spectrometry. Four series of measurements were carried out. The curve giving the deposition rate according to the particle aerodynamic diameter (d(ae)) was established and shows deposition rates higher than those predicted using the model of Corner. The decay method gives the best results. The study carried out has shown that the phenomenon of deposition has little effect on the measurement of the aerosol source emission rate using a tracer gas for particles of aerodynamic diameter < 5 microm (underestimation < 25%). For particles of a greater diameter, wall deposition is an extremely limiting factor for the method, the influence of which can, however, be limited by using a test booth of small volume and keeping the sampling duration as short as possible.
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