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New Particle Formation: Sulfuric Acid and Amine Chemical Nucleation Photochemical Reaction Chamber Studies and the Laboratory Cluster-CIMS.

机译:新的颗粒形成:硫酸和胺化学成核光化学反应室研究和实验室组-CIMS。

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摘要

The formation of new particles from gas phase condensation has been shown to significantly enhance concentrations of cloud condensation nuclei (CCN) in the Earth's atmosphere. Particles that have grown to CCN size contribute significantly to Earth's radiation balance. And particle nucleation has been observed throughout the atmosphere in varying meteorological conditions. Yet the chemical processes involved in particle nucleation are not well understood. Sulfuric acid has long been recognized as a contributor to new particle formation. However, sulfuric acid condensation alone cannot account for high particle production and growth rates observed in many regions of the atmosphere. Scientific understanding of these processes has been limited by available instrumentation and the chemical complexity of the atmosphere. A novel Chemical Ionization Mass Spectrometer (cluster-CIMS) has been developed, in collaboration with colleagues at the National Center for Atmospheric Research, to characterize homogeneously nucleated molecular clusters produced in a controlled laboratory environment. The cluster-CIMS gently ionizes neutral molecular clusters for quadrupole mass filtration with a minimum of disturbance to cluster composition. It is capable of characterizing particles from molecular sizes up to 1.5 nm in diameter with a resolution of +/- 1 amu. A climate controlled photochemical reaction chamber, designed as a 1000 L batch reactor, was built to produce nucleated molecular clusters at atmospherically relevant conditions. Laboratory experiments were conducted to elucidate potential molecular candidates for particle nucleation. The role of amines in particle formation was experimentally examined after atmospheric observations revealed enhanced sulfuric acid nucleation rates in the presence of amine compounds. Experimental results obtained with the cluster-CIMS, as well as other aerosol instrumentation, support the hypothesis that amines enhance sulfuric acid nucleation rates.
机译:气相凝结形成新颗粒已显示出可显着提高地球大气层中云凝结核(CCN)的浓度。已经增长到CCN大小的粒子对地球的辐射平衡做出了重要贡献。在不同的气象条件下,整个大气中都观察到了颗粒成核现象。然而,关于粒子成核的化学过程还没有很好的理解。长期以来,人们一直认为硫酸是新颗粒形成的原因。然而,仅硫酸缩合不能解释在大气的许多区域中观察到的高颗粒产生和生长速率。对这些过程的科学理解受到可用仪器和大气化学复杂性的限制。与国家大气研究中心的同事合作开发了一种新型化学电离质谱仪(cluster-CIMS),以表征在受控实验室环境中产生的均相有核分子簇。团簇-CIMS将中性分子团簇轻轻电离,以进行四极质量过滤,对团簇组成的干扰最小。它能够表征直径最大为1.5 nm的分子,分辨率为+/- 1 amu。建立了一个气候控制的光化学反应室,设计为1000 L间歇式反应器,以在与大气有关的条件下产生有核分子簇。进行了实验室实验以阐明潜在的分子候选物,以进行颗粒成核。在大气观察发现存在胺化合物的情况下,硫酸成核速率提高后,通过实验检查了胺在颗粒形成中的作用。使用簇-CIMS以及其他气溶胶仪器获得的实验结果支持以下假设:胺可提高硫酸成核速率。

著录项

  • 作者

    Titcombe, Mari E.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Atmospheric Chemistry.;Environmental Health.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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