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Uptake of nitric acid, ammonia, and organics in orographic clouds: mass spectrometric analyses of droplet residual and interstitial aerosol particles

机译:在地形云中吸收硝酸,氨和有机物:液滴残留和间质气溶胶颗粒的质谱分析

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Concurrent in situ analyses of interstitial aerosol and cloud droplet residues have been conducted at the Schmücke mountain site during the Hill Cap Cloud Thuringia campaign in central Germany in September and October 2010. Cloud droplets were sampled from warm clouds (temperatures between -3 and +16 °C) by a counterflow virtual impactor and the submicron-sized residues were analyzed by a compact time-of-flight aerosol mass spectrometer (C-ToF-AMS), while the interstitial aerosol composition was measured by an high-resolution time-of-flight aerosol mass spectrometer (HR-ToF-AMS). During cloud-free periods, the submicron out-of-cloud aerosol was analyzed using both instruments, allowing for intercomparison between the two instruments. Further instrumentation included black carbon measurements and optical particle counters for the aerosol particles as well as optical sizing instrumentation for the cloud droplets. The results show that, under cloud conditions, on average 85% of the submicron aerosol mass partitioned into the cloud liquid phase. Scavenging efficiencies of nitrate, ammonium, sulfate, and organics ranged between 60 and 100 %, with nitrate having, in general, the highest values. For black carbon, the scavenging efficiency was markedly lower (about 24 %). The nitrate and ammonium mass fractions were found to be markedly enhanced in cloud residues, indicating uptake of gaseous nitric acid and ammonia into the aqueous phase. This effect was found to be temperature dependent: at lower temperatures, the nitrate and ammonium mass fractions in the residues were higher. Also, the oxidation state of the organic matter in cloud residues was found to be temperature dependent: the O:C ratio was lower at higher temperatures. A possible explanation for this observation is a more effective uptake and/or higher concentrations of low-oxidized water-soluble volatile organic compounds, possibly of biogenic origin, at higher temperatures. Organic nitrates were observed in cl
机译:在德国中部和2010年10月的山顶云图林根州山顶山区山顶山址,在施马克山区山区进行了平坦的气雾和云液滴残留的同时。云液滴从温暖的云中取样(-3到+16之间的温度°C)通过逆流虚拟冲击器,通过紧凑的飞行时间气溶胶质谱仪(C-TOF-AMS)分析亚微米的残留物,而间质气溶胶组合物通过高分辨率的时间测量 - 气溶胶质谱仪(HR-TOF-AMS)。在无云时段期间,使用两种仪器分析亚亚微米外气溶胶,允许两种仪器之间的相互作用。进一步的仪器包括用于气溶胶颗粒的黑碳测量和光学粒子计数器以及用于云液滴的光学施胶仪器。结果表明,在云条件下,平均85%的亚微米气溶胶质量分配到云液相中。清除硝酸盐,铵,硫酸盐和有机体的效率范围为60至100%,硝酸盐通常是最高值。对于黑碳,清除效率明显较低(约24%)。发现硝酸铵和铵质量级分在云残留物中显着增强,表明将气态硝酸和氨的摄取到水相中。发现这种效果是温度依赖性:在较低温度下,残留物中硝酸盐和铵质量级分较高。而且,发现云残留物中有机物质的氧化状态是温度依赖性:o:C在较高温度下较低。对该观察结果的可能解释是在较高温度下,可能是一种更有效的吸收和/或更高浓度的低氧化水溶性挥发性有机化合物,其较高温度。在CL中观察到有机硝酸盐

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