首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Aqueous-phase photooxidation of levoglucosan a mechanistic study using aerosol time-of-flight chemical ionization mass spectrometry (Aerosol ToF-CIMS)
【24h】

Aqueous-phase photooxidation of levoglucosan a mechanistic study using aerosol time-of-flight chemical ionization mass spectrometry (Aerosol ToF-CIMS)

机译:利用气溶胶飞行时间化学电离质谱(气溶胶TOF-CIMS)的水相光氧化机械研究

获取原文

摘要

Levoglucosan (LG) is a widely employed tracer for biomass burning (BB). Recent studies have shown that LG can react rapidly with hydroxyl (OH) radicals in the aqueous phase despite many mass balance receptor models assuming it to be inert during atmospheric transport. In the current study, aqueous-phase photooxidation of LG by OH radicals was performed in the laboratory. The reaction kinetics and products were monitored by aerosol time-of-flight chemical ionization mass spectrometry (Aerosol ToF-CIMS). Approximately 50 reaction products were detected by the Aerosol ToF-CIMS during the photooxidation experiments, representing one of the most detailed product studies yet performed. By following the evolution of mass defects of product peaks, unique trends of adding oxygen (+O) and removing hydrogen (?2H) were observed among the products detected, providing useful information for determining potential reaction mechanisms and sequences. Additionally, bond-scission reactions take place, leading to reaction intermediates with lower carbon numbers. We introduce a data analysis framework where the average oxidation state (OSc) is plotted against a novel molecular property: double-bond-equivalence-to-carbon ratio (DBE/#C). The trajectory of LG photooxidation on this plot suggests formation of polycarbonyl intermediates and their subsequent conversion to carboxylic acids as a general reaction trend. We also determined the rate constant of LG with OH radicals at room temperature to be 1.08 ± 0.16 × 109 M?1 s?1. By coupling an aerosol mass spectrometer (AMS) to the system, we observed a rapid decay of the mass fraction of organic signals at mass-to-charge ratio 60 (f60), corresponding closely to the LG decay monitored by the Aerosol ToF-CIMS. The trajectory of LG photooxidation on a f44–f60 correlation plot matched closely to literature field measurement data. This implies that aqueous-phase photooxidation might be partially contributing to aging of BB particles in the ambient atmosphere.
机译:Levoglucosan(LG)是一种广泛采用的基因物,用于生物质燃烧(BB)。最近的研究表明,尽管许多质量平衡受体模型在大气运输期间是惰性的质量平衡受体模型,但Lg可以在水相中快速与水相的自由基反应。在目前的研究中,在实验室中进行OH基团的Lg水相光氧化。通过气溶胶飞行时间化学电离质谱(气溶胶TOF-CIMS)监测反应动力学和产物。在光氧化实验期间,气溶胶TOF-CIMS检测到大约50个反应产物,代表了一个最详细的产品研究之一。通过遵循产品峰的质量缺陷的演变,在检测到的产品中观察到添加氧气(+ O)和除去氢气(α2H)的独特趋势,提供用于确定潜在的反应机制和序列的有用信息。另外,粘合剂发生反应,导致反应中间体具有较低碳数。我们介绍一种数据分析框架,其中平均氧化态(OSC)绘制了新的分子性质:双键当量 - 碳比(DBE /#C)。 LG光氧化在该曲线上的轨迹表明聚羰基中间体的形成及其随后转化为羧酸作为一般反应趋势。我们还确定LG的速率常数在室温下具有OH基团,为1.08±0.16×109 m?1 s?1。通过将气溶胶质谱仪(AMS)耦合到系统中,我们观察到在质量 - 电荷比60(F60)处的有机信号的质量分数的快速衰减,与由气溶胶TOF-CIMS监测的LG衰减相对应。 LG光氧化对F44-F60相关图的轨迹与文献现场测量数据符合。这意味着水相光氧化可能部分地有助于在环境气氛中的BB颗粒老化。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号