Luo Pei-Ling, Chen I-Yun, Khan M Anwar H, Shallcross Dudley E
Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei, 106319, Taiwan.
School of Chemistry, Cantock's Close, University of Bristol, Bristol, BS8 1TS, UK.
Commun Chem. 2023 Jun 22;6(1):130. doi: 10.1038/s42004-023-00933-2.
Ozonolysis of isoprene is considered to be an important source of formic acid (HCOOH), but its underlying reaction mechanisms related to HCOOH formation are poorly understood. Here, we report the kinetic and product studies of the reaction between the simplest Criegee intermediate (CHOO) and formaldehyde (HCHO), both of which are the primary products formed in ozonolysis of isoprene. By utilizing time-resolved infrared laser spectrometry with the multifunctional dual-comb spectrometers, the rate coefficient k is determined to be (4.11 ± 0.25) × 10 cm molecule s at 296 K and a negative temperature dependence of the rate coefficient is observed and described by an Arrhenius expression with an activation energy of (-1.81 ± 0.04) kcal mol. Moreover, the branching ratios of the reaction products HCOOH + HCHO and CO + HO + HCHO are explored. The yield of HCOOH is obtained to be 37-54% over the pressure (15-60 Torr) and temperature (283-313 K) ranges. The atmospheric implications of the reaction CHOO + HCHO are also evaluated by incorporating these results into a global chemistry-transport model. In the upper troposphere, the percent loss of CHOO by HCHO is found by up to 6% which can subsequently increase HCOOH mixing ratios by up to 2% during December-January-February months.
异戊二烯的臭氧分解被认为是甲酸(HCOOH)的一个重要来源,但其与甲酸形成相关的潜在反应机制却鲜为人知。在此,我们报告了最简单的Criegee中间体(CHOO)与甲醛(HCHO)之间反应的动力学和产物研究,这两者都是异戊二烯臭氧分解产生的主要产物。通过使用多功能双梳状光谱仪的时间分辨红外激光光谱法,在296 K时确定速率系数k为(4.11±0.25)×10 cm molecule s,观察到速率系数具有负温度依赖性,并通过活化能为(-1.81±0.04) kcal mol的Arrhenius表达式进行描述。此外,还探究了反应产物HCOOH + HCHO和CO + HO + HCHO的分支比。在压力(15 - 60 Torr)和温度(283 - 313 K)范围内,HCOOH的产率为37 - 54%。通过将这些结果纳入全球化学传输模型,还评估了反应CHOO + HCHO对大气的影响。在对流层上部,发现CHOO被HCHO消耗的百分比高达6%,这随后可使12月至次年1月至2月期间的HCOOH混合比增加高达2%。