首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Oxidation of oleic acid and oleic acid/sodium chloride(aq) mixture droplets with ozone: Changes of hygroscopicity and role of secondary reactions
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Oxidation of oleic acid and oleic acid/sodium chloride(aq) mixture droplets with ozone: Changes of hygroscopicity and role of secondary reactions

机译:用臭氧氧化油酸和油酸/氯化钠(aq)混合液滴:吸湿性的变化和副反应的作用

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The heterogeneous reactions of oleic acid (OL) and oleic-acid/sodium-chloride(aq) (OL/NaCl(aq)) mixture droplets with ozone are studied at two relative humidities ( RH). The reactions were monitored concomitantly using attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FT-IR) for the organic species and UV-vis spectrometry for the ozone concentration in order to investigate reaction rate discrepancies reported in literature as well as the oxidation mechanism. The less volatile products were identified and resolved by a Fourier transform ion cyclotron resonance mass spectrometer (FT-ICR-MS). This led to identification of 13 organic molecules (up to 45 carbons). Identified products were predominantly composed by nananoic acid and azelaic acid. Our results suggest that the propagation reaction is possibly initiated by a secondary reaction such as the stabilized Criegee intermediates reacting with oleic acid. For hygroscopic properties, the ATR-IR spectra at high RH (87 +/- 5%) showed that the hydrophobic oleic acid droplets can take up water slightly when exposed to ozone. For internally mixed OL/NaCl( aq) droplets, the hygroscopic properties of the droplets upon ozone exposure were found to be complex; hygroscopic properties or the growth factors of the droplets are altered as the oxidation products of oleic acid exist concurrently with NaCl(aq). Furthermore, the concentration of ozone was monitored to examine the kinetics of the oxidation reaction. The integrated ozone profile recorded by UV-vis spectrometry showed the consumed ozone represents only 30 +/- 2% of total oleic acid and hence confirmed the existence of secondary reactions. A kinetic model was used to simulate an ozone temporal profile that could only be described if the secondary reactions were included. The discrepancy of ozone uptake coefficients according to the OL and ozone measurements as well as their atmospheric implications are herein discussed.
机译:在两个相对湿度(RH)下研究了油酸(OL)和油酸/氯化钠(aq)(OL / NaCl(aq))混合液滴与臭氧的异相反应。同时使用有机物的衰减全反射傅里叶变换红外光谱(ATR-FT-IR)和臭氧浓度的紫外可见光谱对反应进行监测,以研究文献中报道的反应速率差异以及氧化机理。挥发性较低的产物已通过傅立叶变换离子回旋共振质谱仪(FT-ICR-MS)进行了鉴定和拆分。这导致鉴定出13个有机分子(最多45个碳)。鉴定出的产物主要由纳酸和壬二酸组成。我们的结果表明,繁殖反应可能是由诸如稳定的Criegee中间体与油酸反应的次级反应引发的。对于吸湿性,高相对湿度(87 +/- 5%)下的ATR-IR光谱表明,疏水性油酸液滴在暴露于臭氧时会略微吸收水分。对于内部混合的OL / NaCl(aq)小滴,发现小滴在暴露于臭氧后的吸湿特性很复杂。由于油酸的氧化产物与NaCl(aq)同时存在,因此改变了液滴的吸湿性或生长因子。此外,监测臭氧的浓度以检查氧化反应的动力学。通过紫外可见光谱仪记录的综合臭氧分布图表明,消耗的臭氧仅占总油酸的30 +/- 2%,因此证实了副反应的存在。使用动力学模型来模拟臭氧的时间分布,只有在包括次级反应的情况下才能描述该时间分布。本文讨论了根据OL和臭氧测量值得出的臭氧吸收系数的差异及其对大气的影响。

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