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The link between organic aerosol mass loading and degree of oxygenation: an α-pinene photooxidation study

机译:有机气溶胶质量负荷和氧气度之间的联系:α-突烯光氧化研究

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A series of smog chamber (SC) experiments was conducted to identify factors responsible for the discrepancy between ambient and SC aerosol degree of oxygenation. An Aerodyne high-resolution time-of-flight aerosol mass spectrometer is used to compare mass spectra from α-pinene photooxidation with ambient aerosol. Composition is compared in terms of the fraction of particulate CO2+, a surrogate for carboxylic acids, vs. the fraction of C2H3O+, a surrogate for aldehydes, alcohols and ketones, as well as in the Van Krevelen space, where the evolution of the atomic hydrogen-to-carbon ratio (H : C) vs. the atomic oxygen-to-carbon ratio (O : C) is investigated. Low (near-ambient) organic mass concentrations were found to be necessary to obtain oxygenation levels similar to those of low-volatility oxygenated organic aerosol (LV-OOA) commonly identified in ambient measurements. The effects of organic mass loading and OH (hydroxyl radical) exposure were decoupled by inter-experiment comparisons at the same integrated OH concentration. An OH exposure between 3 and 25 × 107 cm?3 h is needed to increase O : C by 0.05 during aerosol aging. For the first time, LV-OOA-like aerosol from the abundant biogenic precursor α-pinene was produced in a smog chamber by oxidation at typical atmospheric OH concentrations. Significant correlation between measured secondary organic aerosol (SOA) and reference LV-OOA mass spectra is shown by Pearson's R2 values larger than 0.90 for experiments with low organic mass concentrations between 1.2 and 18 g m3 at an OH exposure of 4 × 107 cm?3 h, corresponding to about two days of oxidation time in the atmosphere, based on a global mean OH concentration of ~ 1 × 106 cm?3. α-Pinene SOA is more oxygenated at low organic mass loadings. Because the degree of oxygenation influences the chemical, volatility and hygroscopic properties of ambient aerosol, smog chamber studies must be performed at near-ambient concentrations to accurately simulate ambient aerosol properties.
机译:一系列的烟雾室(SC)的实验中进行,以确定负责氧合的环境和SC气雾剂度之间的差异的因素。一个重航空器高分辨率时间飞行气溶胶质谱仪用于比较从α蒎烯光氧化与周围气溶胶质谱。组合物中的颗粒的CO 2 +,为羧酸的替代物的分数计相比,对C2H3O +,醛,醇和酮的替代,的分数以及在范雷维伦空间,原子氢的其中演进与原子氧 - 碳比:(C 2 H)-to碳比(O:C)进行了研究。低(接近环境)的有机物质的浓度被认为是必要的,以获得在环境测量通常标识相似的低挥发性的充氧水平含氧有机气溶胶(LV-OOA)。有机物质装载和OH(羟基自由基)曝光的作用被-实验间的比较在相同集成OH浓度解耦。一个OH曝光3和25毫升之间×107需要小时以增加O:0.05气溶胶老化期间℃。首次,LV-OOA状从丰富的生物前体α蒎烯气溶胶混合物在烟雾室中在典型的大气OH浓度产生由氧化。测量二次有机气溶胶(SOA)和参考LV-OOA质谱之间显著相关性由Pearson的R2所示的值比0.90大的用于实验与在4×107个cm的OH曝光之间1.2和18g立方米低的有机物质浓度?3小时,对应于在大气中两天左右的氧化时间的基础上,〜1×106个-1 3全球平均OH浓度。 α蒎烯SOA更含氧低的有机物质载荷。由于氧合影响的化学,挥发性和环境气溶胶的吸湿特性的程度,烟雾室研究必须在近环境浓度进行准确地模拟环境气溶胶特性。

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