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Modification of the Palmes diffusion tube and semi-empirical modelling of the uptake rate for monitoring nitrogen dioxide

机译:监测Palmes扩散管的改进和吸收率的半经验模型

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Hereafter, a modification of the traditional Palmes diffusion tube by fitting a membrane at the open end of the tube is presented. The membrane is placed to avoid the effect of turbulence due to wind speed. Further optimisations of the volume of absorbent and number of meshes retaining the absorbent are also described. Finally, the sampler is placed in an air proof container and is ready to use in order to improve the quality of measurement. In order to evaluate the performance of the membrane-closed Palmes diffusion tube to monitor nitrogen dioxide (NO2), experiments were carried out in an exposure chamber. The relative effect of NO2, temperature, humidity, averaging time and wind speed on the uptake rate of the sampler were then studied. Among the uncontrolled variables, temperature and humidity are found to be the most important ones leading to variability of the uptake rate. Two equations, used to estimate the uptake rate are established. These equations were then applied on some field data and laboratory inter-comparison tests. The agreement between the chemiluminescence method and diffusive samplers changes from 20% of mean bias with the traditional Palmes diffusion tubes to 5% of mean bias with the membrane-closed Palmes tube (MCPT) at the same monitoring site. In the laboratory inter-comparison, the MCPT has shown to be able to correctly measure NO2 under two extreme exposure conditions in contrast with other diffusive samplers. The uncertainty of the sampler is evaluated. It fulfils the European Directive data quality objective of 25% for accuracy and therefore the sampler qualifies as an indicative method for NO2 monitoring. (c) 2005 Elsevier Ltd. All rights reserved.
机译:此后,提出了一种传统的Palmes扩散管的改进方案,该方法是在该管的开口端安装一个隔膜。放置膜以避免风速引起的湍流影响。还描述了吸收剂的体积和保持吸收剂的网眼数量的进一步优化。最后,将采样器放置在防潮容器中并准备使用,以提高测量质量。为了评估密闭的Palmes扩散管监测二氧化氮(NO2)的性能,在暴露室内进行了实验。然后研究了NO2,温度,湿度,平均时间和风速对采样器吸收速率的相对影响。在不受控制的变量中,温度和湿度是导致摄取速率变化的最重要的变量。建立了两个用于估计摄取率的方程。然后将这些方程式应用于一些现场数据和实验室之间的比对测试。化学发光方法与扩散采样器之间的一致性从传统Palmes扩散管的平均偏差的20%变为同一个监测站点的膜封闭Palmes管(MCPT)的平均偏差的5%。在实验室内部比较中,与其他扩散采样器相比,MCPT已显示出能够在两种极端暴露条件下正确测量NO2的能力。评估采样器的不确定性。它满足25%的欧洲指令数据质量目标要求,因此采样器有资格作为NO2监测的指示方法。 (c)2005 Elsevier Ltd.保留所有权利。

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