Ozonolysis of isoprene, the most abundant alkene, produces three distinct Criegee intermediates (CIs): CH(2)OO, methyl vinyl ketone oxide (MVKO) and methacrolein oxide (MACRO). The oxidation of SO(2) by CIs is a potential source of H(2)SO(4), 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(2) has been found, k(SO2)â=â(1.5â±â0.4)âÃâ10(-10)âcm(3)âs(-1) (±1Ï, Ï is the standard deviation of the data) at 298âK (150â-â500âTorr), 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 (9â±â5)âÃâ10(-17)âcm(3)âs(-1) (±1Ï) at 298âK (300 to 500âTorr), 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. 18âms at 298âK and RHâ=â70%) much longer than previously thought (ca. 0.3 or 3âms), 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(2) would be substantial, even more than that of syn-MVKO.
Surprisingly long lifetime of methacrolein oxide, an isoprene derived Criegee intermediate, under humid conditions.
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作者:Lin Yen-Hsiu, Yin Cangtao, Takahashi Kaito, Lin Jim Jr-Min
| 期刊: | Communications Chemistry | 影响因子: | 6.200 |
| 时间: | 2021 | 起止号: | 2021 Feb 5; 4(1):12 |
| doi: | 10.1038/s42004-021-00451-z | ||
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