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Photolytic processing of secondary organic aerosols dissolved in cloud droplets

机译:溶解在云滴中的二次有机气溶胶的光解处理

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The effect of UV irradiation on the molecular composition of aqueous extracts of secondary organic aerosol (SOA) was investigated. SOA was prepared by the dark reaction of ozone and d-limonene at 0.05-1 ppm precursor concentrations and collected with a particle-into-liquid sampler (PILS). The PILS extracts were photolyzed by 300-400 nm radiation for up to 24 h. Water-soluble SOA constituents were analyzed using high-resolution electrospray ionization mass spectrometry (HR-ESI-MS) at different stages of photolysis for all SOA precursor concentrations. Exposure to UV radiation increased the average O/C ratio and decreased the average double bond equivalent (DBE) of the dissolved SOA compounds. Oligomeric compounds were significantly decreased by photolysis relative to the monomeric compounds. Direct pH measurements showed that acidic compounds increased in abundance upon photolysis. Methanol reactivity analysis revealed significant photodissociation of molecules containing carbonyl groups and the formation of carboxylic acids. Aldehydes, such as limononaldehyde, were almost completely removed. The removal of carbonyls was further confirmed by the UV/Vis absorption spectroscopy of the SOA extracts where the absorbance in the carbonyl n → π band decreased significantly upon photolysis. The effective quantum yield (the number of carbonyls destroyed per photon absorbed) was estimated as ~0.03. The total concentration of peroxides did not change significantly during photolysis as quantified with an iodometric test. Although organic peroxides were photolyzed, the likely end products of photolysis were smaller peroxides, including hydrogen peroxide, resulting in a no net change in the peroxide content. Photolysis of dry limonene SOA deposited on substrates was investigated in a separate set of experiments. The observed effects on the average O/C and DBE were similar to the aqueous photolysis, but the extent of chemical change was smaller in dry SOA. Our results suggest that biogenic SOA dissolved in cloud and fog droplets will undergo significant photolytic processing on a time scale of hours to days. This type of photolytic processing may account for the discrepancy between the higher values of O/C measured in the field experiments relative to the laboratory measurements on SOA in smog chambers. In addition, the direct photolysis of oligomeric compounds may be responsible for the scarcity of their observation in the field.
机译:研究了紫外线辐射对二次有机气溶胶(SOA)水提取物分子组成的影响。 SOA是通过使臭氧与d-柠檬烯在前体浓度为0.05-1 ppm的条件下进行暗反应来制备的,并使用颗粒入液体采样器(PILS)进行收集。将PILS提取物通过300-400 nm辐射光解长达24小时。在所有SOA前体浓度的光分解的不同阶段,使用高分辨率电喷雾电离质谱(HR-ESI-MS)分析了水溶性SOA成分。暴露于紫外线辐射会增加溶解的SOA化合物的平均O / C比并降低平均双键当量(DBE)。相对于单体化合物,通过光解显着降低了寡聚化合物。直接pH测量表明,光解后酸性化合物的含量增加。甲醇反应性分析表明,含有羰基的分子发生了显着的光解离,并形成了羧酸。醛,例如柠檬醛,几乎被完全除去。 SOA提取物的UV / Vis吸收光谱进一步证实了羰基的去除,其中光解后羰基n→π带中的吸光度显着降低。有效量子产率(每个吸收的光子破坏的羰基数)估计为〜0.03。如通过碘量法测试所定量,在光解过程中过氧化物的总浓度没有显着变化。尽管有机过氧化物被光解,但光解的可能最终产物是较小的过氧化物,包括过氧化氢,导致过氧化物含量无净变化。在另一组实验中研究了沉积在基材上的干燥柠檬烯SOA的光解作用。观察到的对平均O / C和DBE的影响与水性光解相似,但在干式SOA中化学变化的程度较小。我们的结果表明,溶解在云雾中的生物SOA将在数小时至数天的时间内进行大量的光解处理。这种类型的光解处理可以解释在野外实验中测得的较高O / C值与烟雾室中SOA的实验室测量值之间的差异。另外,低聚化合物的直接光解可能是其在现场观察不足的原因。

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