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Theoretical model for the evaporation loss of PM2.5 during filter sampling

机译:过滤器采样过程中PM2.5蒸发损失的理论模型

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The evaporation losses of PM2.5 particles in eight different size ranges corresponding to the 4th-10th stages and after filter of the MOUDI were calculated theoretically and then integrated to obtain the total PM2.5 evaporation loss. Results show that when PM2.5 particles are nearly neutral with pH in the range of 7-8, the evaporated concentrations predicted by the present model agree well with the experimental data with an average absolute difference of 20.2 +/- 11.1%. When PM2.5 aerosols are acidic with pH less than 3.5, additional loss of nitrate and chloride can occur due to chemical interactions between collected particles and strong acids which are not considered in the present model. Under pH neutral conditions, the theoretical model was then used to examine the effect of PM2.5 concentration, gas-to-particle ratio, ambient temperature and relative humidity on the extent of evaporation loss. Results show that evaporated PM2.5 concentration increases with increasing temperature and decreasing relative humidity, PM2.5 concentration and gas-to-particle ratio. (C) 2015 Elsevier Ltd. All rights reserved.
机译:从理论上计算了对应于第4至第10阶段的8个不同尺寸范围以及经过MOUDI过滤后的PM2.5颗粒的蒸发损失,然后对其进行积分以获得总PM2.5蒸发损失。结果表明,当PM2.5颗粒接近中性且pH值在7-8范围内时,本模型预测的蒸发浓度与实验数据非常吻合,平均绝对差为20.2 +/- 11.1%。当PM2.5气溶胶呈酸性,且pH值小于3.5时,由于收集的颗粒与强酸之间的化学相互作用而导致硝酸盐和氯化物的额外损失,这在本模型中并未考虑。然后在pH中性条件下,使用理论模型检查PM2.5浓度,气体颗粒比,环境温度和相对湿度对蒸发损失程度的影响。结果表明,蒸发的PM2.5浓度随着温度的升高和相对湿度,PM2.5浓度以及气体颗粒比的降低而增加。 (C)2015 Elsevier Ltd.保留所有权利。

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