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Particle extinction measured at ambient conditions with differential optical absorption spectroscopy. 2. Closure study

机译:在环境条件下使用差分光学吸收光谱法测量颗粒消光。 2.封闭研究

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Spectral particle extinction coefficients of atmospheric aerosols were measured with, to the best of our knowledge, a newly designed differential optical absorption spectroscopy (DOAS) instrument. A closure study was carried out on the basis of optical and microphysical aerosol properties obtained from nephelometer, particle soot/absorption photometer, hygroscopic tandem differential mobility analyzer, twin differential mobility particle sizer, aerodynamic particle sizer, and Berner impactors. The data were collected at the urban site of Leipzig during a period of 10 days in March 2000. The performance test also includes a comparison of the optical properties measured with DOAS to particle optical properties calculated with a Mie-scattering code. The computations take into account dry and ambient particle conditions. Under dry particle conditions the linear regression and the correlation coefficient for particle extinction are 0.95 and 0.90, respectively. At ambient conditions these parameters are 0.89 and 0.97, respectively. An inversion algorithm was used to retrieve microphysical particle properties from the extinction coefficients measured with DOAS. We found excellent agreement within the retrieval uncertainties.
机译:据我们所知,大气气溶胶的光谱消光系数是使用一种最新设计的差分光学吸收光谱仪(DOAS)测量的。根据浊度仪,颗粒烟灰/吸收光度计,吸湿串联差动分析仪,双差动粒度仪,空气动力学粒度仪和伯纳冲击器获得的光学和微物理气溶胶特性进行了封闭研究。数据是在2000年3月的十天之内在莱比锡的城市地点收集的。性能测试还包括对使用DOAS测量的光学性能与使用米氏散射码计算的颗粒光学性能的比较。该计算考虑了干燥和环境颗粒条件。在干颗粒条件下,消光的线性回归和相关系数分别为0.95和0.90。在环境条件下,这些参数分别为0.89和0.97。使用反演算法从用DOAS测量的消光系数中检索微物理粒子的性质。我们在检索不确定性中找到了极好的一致性。

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