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首页> 外文期刊>Atmospheric chemistry and physics >Thermodynamics of the formation of sulfuric acid dimers in the binary (H2SO4-H2O) and ternary (H2SO4-H2O-NH3) system
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Thermodynamics of the formation of sulfuric acid dimers in the binary (H2SO4-H2O) and ternary (H2SO4-H2O-NH3) system

机译:二元(H2SO4-H2O)和三元(H2SO4-H2O-NH3)体系中硫酸二聚体形成的热力学

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摘要

Sulfuric acid is an important gas influencing atmospheric new particle formation (NPF). Both the binary (H2SO4-H2O) system and the ternary system involving ammonia (H2SO4-H2O-NH3) may be important in the free troposphere. An essential step in the nucleation of aerosol particles from gas-phase precursors is the formation of a dimer, so an understanding of the thermodynamics of dimer formation over a wide range of atmospheric conditions is essential to describe NPF. We have used the CLOUD chamber to conduct nucleation experiments for these systems at temperatures from 208 to 248 K. Neutral monomer and dimer concentrations of sulfuric acid were measured using a chemical ionization mass spectrometer (CIMS). From these measurements, dimer evaporation rates in the binary system were derived for temperatures of 208 and 223 K. We compare these results to literature data from a previous study that was conducted at higher temperatures but is in good agreement with the present study. For the ternary system the formation of H2SO4 center dot NH3 is very likely an essential step in the formation of sulfuric acid dimers, which were measured at 210, 223, and 248 K. We estimate the thermodynamic properties (dH and dS) of the H2SO4 center dot NH3 cluster using a simple heuristic model and the measured data. Furthermore, we report the first measurements of large neutral sulfuric acid clusters containing as many as 10 sulfuric acid molecules for the binary system using chemical ionization-atmospheric pressure interface time-of-flight (CI-APi-TOF) mass spectrometry.
机译:硫酸是影响大气新颗粒形成(NPF)的重要气体。二元(H2SO4-H2O)系统和涉及氨(H2SO4-H2O-NH3)的三元体系在自由对流层中可能是重要的。来自气相前体的气溶胶颗粒成核的基本步骤是二聚体的形成,因此了解在广泛的大气条件下的二聚体形成的热力学对描述NPF至关重要。我们使用云室在208至248k的温度下对这些系统进行成核实验。使用化学电离质谱仪(CIMS)测量中性单体和二聚体浓度。从这些测量中,导出二元系统中的二聚物蒸发速率,用于208和223k的温度。我们将这些结果与在较高温度下进行的先前研究的文献数据进行比较,但与本研究吻合良好。对于三元体系,H2SO4中心点NH3的形成很可能形成硫酸二聚体的基本步骤,其在210,223和248k下测量。我们估计H2SO4的热力学性质(DH和DS)中心点NH3群集使用简单的启发式模型和测量数据。此外,我们通过使用化学电离 - 大气压接口飞行时间(CI-API-TOF)质谱法,向二元系统报告含有多达10硫酸分子的大型中性硫酸簇的第一次测量。

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  • 来源
    《Atmospheric chemistry and physics》 |2015年第18期|共21页
  • 作者单位

    Goethe Univ Frankfurt Inst Atmospher &

    Environm Sci D-60054 Frankfurt Germany;

    Goethe Univ Frankfurt Inst Atmospher &

    Environm Sci D-60054 Frankfurt Germany;

    Goethe Univ Frankfurt Inst Atmospher &

    Environm Sci D-60054 Frankfurt Germany;

    Paul Scherrer Inst Lab Atmospher Chem Villigen Switzerland;

    CERN European Org Nucl Res CH-1211 Geneva Switzerland;

    Univ Helsinki Dept Phys Helsinki Finland;

    Univ Helsinki Dept Phys Helsinki Finland;

    Univ Helsinki Dept Phys Helsinki Finland;

    Univ Helsinki Dept Phys Helsinki Finland;

    Goethe Univ Frankfurt Inst Atmospher &

    Environm Sci D-60054 Frankfurt Germany;

    Univ Helsinki Dept Phys Helsinki Finland;

    CERN European Org Nucl Res CH-1211 Geneva Switzerland;

    Univ Lisbon Lab Syst Instrumentat &

    Modeling Sci &

    Technol Sp P-1699 Lisbon Portugal;

    Paul Scherrer Inst Lab Atmospher Chem Villigen Switzerland;

    Carnegie Mellon Univ Ctr Atmospher Particle Studies Pittsburgh PA 15213 USA;

    Univ Leeds Sch Earth &

    Environm Leeds W Yorkshire England;

    CALTECH Div Chem &

    Chem Engn Pasadena CA 91125 USA;

    Univ Helsinki Dept Phys Helsinki Finland;

    CERN European Org Nucl Res CH-1211 Geneva Switzerland;

    Univ Vienna Aerosol Phys &

    Environm Phys Vienna Austria;

    PN Lebedev Phys Inst Solar &

    Cosm Ray Res Lab Moscow 117924 Russia;

    Univ Helsinki Dept Phys Helsinki Finland;

    Paul Scherrer Inst Lab Atmospher Chem Villigen Switzerland;

    Paul Scherrer Inst Lab Atmospher Chem Villigen Switzerland;

    Univ Helsinki Dept Phys Helsinki Finland;

    Leibniz Inst Tropospher Res Leipzig Germany;

    Univ Vienna Aerosol Phys &

    Environm Phys Vienna Austria;

    Goethe Univ Frankfurt Inst Atmospher &

    Environm Sci D-60054 Frankfurt Germany;

    Paul Scherrer Inst Lab Atmospher Chem Villigen Switzerland;

    Aerodyne Res Inc Billerica MA USA;

    Goethe Univ Frankfurt Inst Atmospher &

    Environm Sci D-60054 Frankfurt Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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