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No Particle Mass Enhancement from Induced Atmospheric Ageing at a Rural Site in Northern Europe

机译:北欧农村地区的大气老化导致颗粒质量没有提高

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A large portion of atmospheric aerosol particles consists of secondary material produced by oxidation reactions. The relative importance of secondary organic aerosol (SOA) can increase with improved emission regulations. A relatively simple way to study potential particle formation in the atmosphere is by using oxidation flow reactors (OFRs) which simulate atmospheric ageing. Here we report on the first ambient OFR ageing experiment in Europe, coupled with scanning mobility particle sizer (SMPS), aerosol mass spectrometer (AMS) and proton transfer reaction (PTR)-MS measurements. We found that the simulated ageing did not produce any measurable increases in particle mass or number concentrations during the two months of the campaign due to low concentrations of precursors. Losses in the reactor increased with hydroxyl radical (OH) exposure and with increasing difference between ambient and reactor temperatures, indicating fragmentation and evaporation of semivolatile material.
机译:大气中的大部分气溶胶颗粒由通过氧化反应产生的二次材料组成。次级有机气溶胶(SOA)的相对重要性可以随着排放法规的改进而增加。研究大气中潜在颗粒形成的一种相对简单的方法是使用模拟大气老化的氧化流反应器(OFR)。在这里,我们报告了欧洲的第一个环境OFR老化实验,以及扫描迁移率粒度仪(SMPS),气溶胶质谱仪(AMS)和质子转移反应(PTR)-MS测量。我们发现,由于前驱物浓度低,模拟的老化在运动的两个月内并未产生任何可测量的颗粒质量或数量浓度增加。反应器中的损失随羟基自由基(OH)的暴露以及环境温度和反应器温度之间的差异的增加而增加,这表明半挥发性物质会碎裂和蒸发。

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