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Investigating the influences of SO2 and NH3 levels on isoprene-derived secondary organic aerosol formation using conditional sampling approaches

机译:使用条件采样方法研究SO2和NH3水平对异戊二烯衍生的二次有机气溶胶形成的影响

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Filter-based PM2.5 samples were chemically analyzed to investigate secondary organic aerosol (SOA) formation from isoprene in a rural atmosphere of the southeastern US influenced by both anthropogenic sulfur dioxide (SO2) and ammonia (NH3) emissions. Daytime PM2.5 samples were collected during summer 2010 using conditional sampling approaches based on pre-defined high and low SO2 or NH3 thresholds. Known molecular-level tracers for isoprene SOA formation, including 2-methylglyceric acid, 3-methyltetrahydrofuran-3,4-diols, 2-methyltetrols, C5-alkene triols, dimers, and organosulfate derivatives, were identified and quantified by gas chromatography coupled to electron ionization mass spectrometry (GC/EI-MS) and ultra performance liquid chromatography coupled to electrospray ionization high-resolution quadrupole time-of-flight mass spectrometry (UPLC/ESI-HR-Q-TOFMS). Mass concentrations of six isoprene low-NOx SOA tracers contributed to 12–19% of total organic matter (OM) in PM2.5 samples collected during the sampling period, indicating the importance of the hydroxyl radical (OH)-initiated oxidation (so-called photooxidation) of isoprene under low-NOx conditions that lead to SOA formation through reactive uptake of gaseous isoprene epoxydiols (IEPOX) in this region. The contribution of the IEPOX-derived SOA tracers to total organic matter was enhanced by 1.4% (p = 0.012) under high-SO2 sampling scenarios, although only weak associations between aerosol acidity and mass of IEPOX SOA tracers were observed. This suggests that IEPOX-derived SOA formation might be modulated by other factors simultaneously, rather than only aerosol acidity. No clear associations between isoprene SOA formation and high or low NH3 conditional samples were found. Positive correlations between sulfate aerosol loadings and IEPOX-derived SOA tracers for samples collected under all conditions indicates that sulfate aerosol could be a surrogate for surface accommodation in the uptake of IEPOX onto preexisting aerosols.
机译:化学分析基于过滤器的PM2.5样品,以研究由异戊二烯的二次有机气溶胶(SOA)形成,在由人为硫二氧化硫(SO2)和氨(NH3)排放的乡村氛围中。在2010年夏季,使用基于预定义的高和低SO2或NH3阈值的条件采样方法收集Daytime PM2.5样本。用于异戊二烯SOA形成的已知分子水平示踪剂,包括2-甲基甘氨酸,3-甲基四氢呋喃-3,4-二醇,2-甲基四乙烯,C5-烯烃三醇,二聚体和有机硫酸盐衍生物,通过气相色谱耦合到电子电离质谱(GC / EI-MS)和超级性能液相色谱,耦合到电喷雾电离高分辨率四极杆飞行时间质谱(UPLC / ESI-HR-Q-TOFM)。六种异戊二烯的质量浓度低NOx示踪剂在采样期间收集的PM2.5样品中有机物质(OM)的12-19%促成了12-19%,表明羟基(OH) - 抗氧化的重要性(SO-低NOx条件下的异戊二烯称为光氧化,这通过该区域中的气态异戊二烯环氧二醇(IePox)的反应性引起SOA形成。在高SO2采样场景下,在高SO2采样情况下增强了IePox衍生的SOA示踪剂至总有机物质的贡献,尽管仅观察到气溶胶酸度和IPOX SOA示踪剂的弱联合。这表明Iepox衍生的SOA形成可以同时由其他因素调节,而不是仅适用于气溶胶酸度。发现异戊二烯SOA形成和高或低NH3条件样品之间没有明确的缔合。在所有条件下收集的硫酸盐气溶胶载体和IePox衍生的SOA示踪剂之间的正相关表明,硫酸盐气溶胶可以是在预先存在的气溶胶上的Iepox中的表面容纳的替代物。

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