Lin Yen-Hsiu, Yin Cangtao, Takahashi Kaito, Lin Jim Jr-Min
Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei, Taiwan.
Department of Chemistry, National Taiwan University, Taipei, Taiwan.
Commun Chem. 2021 Feb 5;4(1):12. doi: 10.1038/s42004-021-00451-z.
Ozonolysis of isoprene, the most abundant alkene, produces three distinct Criegee intermediates (CIs): CHOO, methyl vinyl ketone oxide (MVKO) and methacrolein oxide (MACRO). The oxidation of SO by CIs is a potential source of HSO, an important precursor of aerosols. Here we investigated the UV-visible spectroscopy and reaction kinetics of thermalized MACRO. An extremely fast reaction of anti-MACRO with SO has been found, k = (1.5 ± 0.4) × 10 cm s (±1σ, σ is the standard deviation of the data) at 298 K (150 - 500 Torr), which is ca. 4 times the value for syn-MVKO. However, the reaction of anti-MACRO with water vapor has been observed to be quite slow with an effective rate coefficient of (9 ± 5) × 10 cm s (±1σ) at 298 K (300 to 500 Torr), which is smaller than current literature values by 1 or 2 orders of magnitude. Our results indicate that anti-MACRO has an atmospheric lifetime (best estimate ca. 18 ms at 298 K and RH = 70%) much longer than previously thought (ca. 0.3 or 3 ms), resulting in a much higher steady-state concentration. Owing to larger reaction rate coefficient, the impact of anti-MACRO on the oxidation of atmospheric SO would be substantial, even more than that of syn-MVKO.
臭氧分解最丰富的烯烃异戊二烯会产生三种不同的Criegee中间体(CIs):CHOO、甲基乙烯基酮氧化物(MVKO)和甲基丙烯醛氧化物(MACRO)。CIs对SO的氧化是气溶胶重要前体HSO的一个潜在来源。在此,我们研究了热化MACRO的紫外可见光谱和反应动力学。发现在298K(150 - 500托)下,反式MACRO与SO的反应极快,k = (1.5 ± 0.4) × 10 cm s(±1σ,σ为数据的标准偏差),约为顺式MVKO值的4倍。然而,观察到反式MACRO与水蒸气的反应相当缓慢,在298K(300至500托)下有效速率系数为(9 ± 5) × 10 cm s(±1σ),比当前文献值小1或2个数量级。我们的结果表明,反式MACRO在大气中的寿命(298K和相对湿度 = 70%时最佳估计约为18毫秒)比之前认为的(约0.3或3毫秒)长得多,导致稳态浓度高得多。由于反应速率系数较大,反式MACRO对大气中SO氧化的影响将很大,甚至超过顺式MVKO。