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Evaluation and Correction of the Ambient Particle Spectral Light Absorption Measured Using a Filter-based Aethalometer

机译:使用滤光仪测量的环境粒子谱吸收的评估和校正

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Spectral light-absorption properties measured with an Aethalometer (AE; Model AE33; Magee Scientific) are widely used in radiative forcing studies and source appointment in China. However, considerable uncertainty regarding the measured absorption coefficient (σabs) exists because of the multiple-scattering effects, loading effects, and differences in filter tape. This study evaluated σabs by comparing the values measured with an AE33 using Tape 8050, an AE33 using Tape 8060 (which differs from Tape 8050 in material), and a three-wavelength photoacoustic soot spectrometer (PASS-3) during two field campaigns in eastern China. The results indicated that the AE33-measured σabs using either tape exceeded the PASS-3-measured value by approximately three times, mainly owing to the multiple-scattering effect. A wavelength-independent multiple-scattering compensation factor (2.90), which varies slightly (± 0.04) for eastern China, is recommended for these regions. When σabs was measured with the AE33 using Tape 8050, the value highly depended on the loading on the tape, which led to significant uncertainty and discontinuity in the absorption ?ngstr?m exponent compared to using Tape 8060. A method was proposed to effectively correct the historical datasets of σabs and the absorption ?ngstr?m exponent by using the AE33 with Tape 8050. This work provides insight into the quality of measured absorption data when filter-based measurement technology is applied.
机译:用聚体仪(AE; Model AE33; Magee Scientific)测量的光谱光吸收特性被广泛应用于中国的辐射迫使研究和源预约。然而,由于多散射效应,加载效果和滤镜中的差异,存在对测量吸收系数(ΣABs)的相当大的不确定性。本研究通过使用带8050使用带8050的AE33与AE33测量的值(其不同于材料中的带8050)的AE33进行比较来评估σabs,以及在东部的两个场运动期间的三波长光声烟灰谱仪(PASS-3)中国。结果表明,使用任一胶带的AE33测量σabs大约三次超过PASS-3测量值,主要是由于多散射效应。对于这些地区建议使用波长无关的多散散补偿因子(2.90),这些补偿因子(2.90)略有不同(±0.04)。当使用带8050用AE33测量σabs时,高度依赖于胶带上的负载的值,这导致了与使用带8060相比的吸收中的显着的不确定性和不连续性。提出了一种方法以有效纠正ΣABS和吸收的历史数据集通过使用带胶带8050的AE33和吸收ΔM信作用。该工作提供了对应用基于滤波器的测量技术时测量的吸收数据质量的洞察力。

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