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Composition and Morphology of Individual Combustion, Biomass Burning, and Secondary Organic Particle Types Obtained Using Urban and Coastal ATOFMS and STXM-NEXAFS Measurements

机译:使用城市和沿海ATOFMS和STXM-NEXAFS测量获得的个体燃烧,生物量燃烧和次要有机颗粒类型的组成和形态

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摘要

Complementary single particle measurements of organic aerosols using aerosol time-of-flight mass spectrometry (ATOFMS) and Scanning Transmission X-ray Microscopy—Near Edge X-ray Absorption Fine Structure (STXM-NEXAFS) are compared to examine the relationships between particle morphologies and chemical composition of particles having similar sources. ATOFMS measurements provide size-resolved chemical composition information for single particles. Measurements from field campaigns in polluted or urban (Riverside/SOAR 2005; Mexico City/MILAGRO 2006; Port of Long Beach 2007) and clean or marine (Arabian Sea/INDOEX 1999; Sea of Japan/ACE-Asia 2001; Trinidad Head/CIFEX 2004) locations illustrate regional differences. The majority (≥ 85 %) of the number of submicron particles are carbonaceous (including elemental and organic carbon), but represent less than 10% of the number of supermicron particles. Organic carbon (OC) particles are classified into three meta-classes corresponding to (1) combustion generated OC/EC internal mixtures, (2) biomass burning generated K/OC mixtures, and (3) OC/High Mass OC (HMOC) mixtures containing secondary markers of atmospheric processing. Normalized dot products are used to quantify similarity among fragment spectra and indicate that OC particle types are consistent across (and within) platforms. Single particle carbon STXM-NEXAFS measurements during ACE-Asia 2001 and MILAGRO 2006 yield similar source categories based on relative abundances of aromatic, alkane, and carboxylic acid functional groups. All three organic particle types correspond to a variety of very heterogeneous particle morphologies, although the highly oxygenated OC particles with likely secondary organic contributions frequently are nearly spherical, liquid-like particles. Size-resolved number fractions of the major ATOFMS OC particle types show qualitative agreement with OC particle types from STXM-NEXAFS analysis, indicating a correspondence of the OC/EC type with the presence of strong aromatic groups, of the OC/HMOC type with high carboxylic acid groups, and of the biomass burning OC type with aromatic and carbonyl groups. ATOFMS measurements can be used to establish robust statistics for offline single particle techniques, providing the atmospheric context for the functional group and morphological information obtained from STXM-NEXAFS for an improved understanding of the climate impact of organic aerosols.
机译:使用气溶胶飞行时间质谱仪(ATOFMS)和扫描透射X射线显微镜术–近边缘X射线吸收精细结构(STXM-NEXAFS)对有机气溶胶进行的补充单颗粒测量进行了比较,以检查颗粒形态之间的关系和具有相似来源的颗粒的化学组成。 ATOFMS测量提供了单个颗粒的尺寸分辨化学组成信息。在污染或城市(Riverside / SOAR 2005;墨西哥城/ MILAGRO 2006;长滩港2007)和清洁或海洋(阿拉伯海/ INDOEX 1999;日本海/ ACE-Asia 2001;特立尼达海德/ CIFEX)的野外活动中进行的测量(2004年)说明了地区差异。亚微米颗粒数量的大部分(≥85%)是碳质的(包括元素碳和有机碳),但代表的超微米颗粒数量不到10%。有机碳(OC)颗粒分为三类,分别对应于(1)燃烧生成的OC / EC内部混合物,(2)生物质燃烧生成的K / OC混合物和(3)OC /高品质OC(HMOC)混合物包含大气处理的辅助标记。归一化的点积用于量化碎片质谱图之间的相似性,并表明OC颗粒类型在平台之间(以及平台内部)是一致的。在ACE-Asia 2001和MILAGRO 2006期间进行的单颗粒碳STXM-NEXAFS测量得出基于芳香族,烷烃和羧酸官能团的相对丰度的相似来源类别。所有这三种有机颗粒类型都对应于多种非常不均匀的颗粒形态,尽管具有可能的次级有机贡献的高度氧化的OC颗粒通常是接近球形的液体状颗粒。主要ATOFMS OC颗粒类型的尺寸分辨数量分数与STXM-NEXAFS分析中的OC颗粒类型在质量上吻合,表明OC / EC类型与强芳族基团相对应,OC / HMOC类型与高芳烃基团相对应。羧酸基团,以及带有芳族和羰基的生物质燃烧OC型。 ATOFMS测量结果可用于建立离线单颗粒技术的可靠统计数据,从而提供功能组的大气环境以及从STXM-NEXAFS获得的形态信息,从而更好地了解有机气溶胶对气候的影响。

著录项

  • 来源
    《Aerosol Science and Technology》 |2010年第7期|p.551-562|共12页
  • 作者单位

    Scripps Institution of Oceanography, University of California San Diego, La Jolla, California, USA Department of Chemistry and Biochemistry, University of California San Diego, La Jolla, California, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 00:57:47

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