利用观测到的等效黑碳和气溶胶粒径分布之间的相关性得出粒径分解的BC质量浓度:一种应用于纽约州-Ålesund斯瓦尔巴群岛齐柏林站长期观测的方法

P. Tunved, Roxana S. Cremer, P. Zieger, J. Ström
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引用次数: 3

摘要

摘要本研究的目的是通过结合等效黑碳(eBC)的长期观测和数粒度分布,探讨其与粒径的相关性。这项工作主要分为两个部分。第一部分是利用差分迁移率分析仪(DMA)和粒子烟尘吸收光度计(PSAP)的组合,对观测到的粒子总光吸收(σabs)与按粒径测定的粒子总光吸收(σabs)进行比较。实验室研究证实了观测到的σabs与推导出的σabs具有很强的相似性。第二部分利用2002 ~ 2010年美国纽约州-Ålesund斯瓦尔巴群岛齐柏林站的长期观测数据,利用σabs与数量大小分布中每个桶的dN之间的相关性对统计方法进行了检验。根据数量大小分布对数据进行聚类,并将其分为水洗、成核、中间和污染四大类。每个类别在导出的eBC质量分布方面表现出不同的特征,中间类别与北极地区少数可用的单粒子烟灰光度计(SP2)观测结果相似。总体而言,eBC的统计分布,根据粒径,呈现较大的动态范围,在模态(s)的位置。为了检查一致性,将eBC质量分布转换为基于数字的eBC大小分布,并与观察到的总数大小分布进行比较。而水洗,成核和中间类别呈现似是而非的数字分布,污染类别显示了一个模式在小尺寸(约50纳米)明显夸大。
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Using correlations between observed equivalent black carbon and aerosol size distribution to derive size resolved BC mass concentration: a method applied on long-term observations performed at Zeppelin station, Ny-Ålesund, Svalbard
Abstract The aim of this study was to explore particle size dependent properties by combining long-term observations of equivalent black carbon (eBC) and number size distributions to investigate their correlation as function of particle size. The work was conducted in two main parts. The first part consisted of a short laboratory experiment to compare observed total particle light absorption (σabs) with that observed according to particle size by using a combination of a Differential Mobility Analyzer (DMA) and a Particle Soot Absorption Photometer (PSAP). The laboratory study confirmed strong similarities between the observed and derived σabs. In the second part the statistical approach using correlation between the σabs and the dN of each bin of the number size distribution was tested on long-term data ranging from 2002 to 2010 observed at Zeppelin station, Ny-Ålesund Svalbard. The data was clustered according to the number size distribution and grouped in four major categories: Washout, Nucleation, Intermediate and Polluted. Each category presented different features with respect to the derived eBC mass distributions, the Intermediate category showed similarities to the few available Single Particle Soot Photometer (SP2) observations in the Arctic. Overall, the statistical distribution of eBC, according to particle size, presented a larger dynamical range in the location of the mode(s). To check for consistency, the eBC mass distributions were transformed into number based eBC size distribution and compared to the observed total number size distribution. Whereas the Washout, Nucleation and Intermediate categories presented plausible number distributions, the Polluted category displayed a mode at small sizes (about 50 nm) that was significantly exaggerated.
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