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Aging of secondary organic aerosol generated from the ozonolysis of α-pinene: effects of ozone, light and temperature

机译:α-Pine烯臭氧产生的二次有机气溶胶老化:臭氧,轻质和温度的影响

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A series of experiments was conducted in the CESAM (French acronym for Experimental Multiphasic Atmospheric Simulation Chamber) simulation chamber to investigate the evolution of the physical and chemical properties of secondary organic aerosols (SOAs) during different forcings. The present experiments represent a first attempt to comprehensively investigate the influence of oxidative processing, photochemistry, and diurnal temperature cycling upon SOA properties. SOAs generated from the ozonolysis of α-pinene were exposed under dry conditions (f44 / f43 and O : C ratio of the particles bulk. No change in SOA size or chemical composition was observed during O3 and light exposure at constant temperature; in addition, GF and CRI of the SOA remained constant with forcing. On the contrary, illumination of SOAs in the absence of temperature control led to an increase in the real part of the CRI from 1.35 (±0.03) to 1.49 (±0.03), an increase of the GF from 1.04 (±0.02) to 1.14 (±0.02) and an increase of the f44 / f43 ratio from 1.73 (±0.03) to 2.23 (±0.03). The simulation of the experiments using the master chemical mechanism (MCM) and the Generator for Explicit Chemistry and Kinetics of Organics in the Atmosphere (GECKO-A) shows that these changes resulted from the evaporation of semi-volatile and less oxidized SOA species induced by the relatively minor increases in temperature (~ 6 °C). These surprising results suggest that α-pinene–O3 SOA properties may be governed more by local temperature fluctuations than by oxidative processing and photochemistry.
机译:在CESAM(实验多相型大气模拟室)模拟室中进行了一系列实验,以研究不同强制次级有机气溶胶(SOAs)的物理和化学性质的演变。本实验代表了首次尝试全面研究氧化处理,光化学和昼夜温度循环对SOA性质的影响。从α-pine烯的臭氧分解产生的SOA暴露在干燥条件下(F44 / F43和O:C批量的颗粒的比率。在O 3期间观察到SOA尺寸或化学成分的变化,并且在恒定温度下轻微暴露;此外, SOA的GF和CRI与强制保持恒定。相反,在没有温度控制的情况下,SOA的照明导致CRI的实际部分增加到1.35(±0.03)至1.49(±0.03),增加从1.04(±0.02)到1.14(±0.02)的GF,从1.73(±0.03)增加到2.23(±0.03)的F44 / F43比的增加。使用母材化学机制(MCM)模拟实验并且在大气中的明确化学和有机动力学的发电机(Gecko-A)表明这些变化由半挥发的蒸发和较少氧化的SOA物种诱导的温度(〜6℃)增加。这些令人惊讶的结果表明α-pinene-o3 soa properti ES可以通过局部温度波动来控制比氧化处理和光化学更多。

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