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The filter-loading effect by ambient aerosols in filter absorption photometers depends on the coating of the sampled particles

机译:过滤器吸收光度计中环境气溶胶的过滤器加载效果取决于取样颗粒的涂层

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Black carbon is a primary aerosol tracer for high-temperature combustion emissions and can be used to characterize the time evolution of its sources. It is correlated with a decrease in public health and contributes to atmospheric warming. Black carbon measurements are usually conducted with absorption filter photometers, which are prone to several artifacts, including the filter-loading effect – a saturation of the instrumental response due to the accumulation of the sample in the filter matrix. In this paper, we investigate the hypothesis that this filter-loading effect depends on the optical properties of particles present in the filter matrix, especially on the black carbon particle coating. We conducted field campaigns in contrasting environments to determine the influence of source characteristics, particle age and coating on the magnitude of the filter-loading effect. High-time-resolution measurements of the filter-loading parameter in filter absorption photometers show daily and seasonal variations of the effect. The variation is most pronounced in the near-infrared region, where the black carbon mass concentration is determined. During winter, the filter-loading parameter value increases with the absorption ?ngstr?m exponent. It is suggested that this effect is related to the size of the black carbon particle core as the wood burning (with higher values of the absorption ?ngstr?m exponent) produces soot particles with larger diameters. A reduction of the filter-loading effect is correlated with the availability of the coating material. As the coating of ambient aerosols is reduced or removed, the filter-loading parameter increases. Coatings composed of ammonium sulfate and secondary organics seem to be responsible for the variation of the loading effect. The potential source contribution function analysis shows that high values of the filter-loading parameter in the infrared are indicative of local pollution, whereas low values of the filter-loading parameter result from ageing and coating during long-range transport. Our results show that the filter-loading parameter can be used as a proxy for determination of the particle coating, thus allowing for differentiation between local/fresh and transported/aged particles.
机译:黑碳是用于高温燃烧排放的主要气溶胶示踪剂,可用于表征其来源的时间演变。它与公共卫生的减少有关,有助于大气变暖。黑碳测量通常用吸收过滤器光度计进行,其易于若干伪像,包括过滤器负载效果 - 由于样品在滤器矩阵中的累积引起的仪器响应的饱和度。在本文中,我们研究了这种过滤器负载效果取决于存在于过滤基质中存在的颗粒的光学性质的假设,尤其是在黑碳颗粒涂层上。我们在对比环境中进行了现场运动,以确定源特征,粒子年龄和涂层对滤波器负荷效果的影响的影响。滤波吸收光度计中的滤波器负载参数的高级分辨率测量显示效果的每日和季节变化。近红外区域最明显的变化,确定黑色碳质量浓度。在冬季,滤波器加载参数值随吸收而增加?NGSTRαM指数。建议这种效果与黑色碳颗粒芯的尺寸有关,因为木材燃烧(具有较高的吸收值?NGSTRαM指数)产生具有较大直径的烟灰颗粒。滤波器加载效果的降低与涂层材料的可用性相关。随着环境气雾剂的涂层减少或除去,过滤器负载参数增加。由硫酸铵和二级有机物组成的涂层似乎是负责的负载效果的变化。潜在的源贡献函数分析表明红外线中的滤波器加载参数的高值表示局部污染,而在远程传输期间,滤波器负载参数的低值是滤光和涂层的低值。我们的结果表明,过滤器负载参数可以用作颗粒涂层的测定的代理,从而允许局部/新鲜和输送/老化颗粒之间的分化。
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