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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The gas-phase ozonolysis of α-humulene
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The gas-phase ozonolysis of α-humulene

机译:α-humulene的气相臭氧分解

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α-Humulene contains three double bonds (DB), and after ozonolysis of the first DB the first-generation products are still reactive towards O3 and produce second- and third-generation products. The primary aim of this study consisted of identifying the products of the three generations, focusing on the carboxylic acids, which are known to have a high aerosol formation potential. The experiments were performed in a 570 litre spherical glass reactor at 295 K and 730 Torr. Initial mixing ratios were 260-2090 ppb for O3 and 250-600 ppb for α-humulene in synthetic air. Reactants and gas-phase products were measured by in situ FTIR spectroscopy. Particulate products were sampled on Teflon filters, extracted with methanol and analyzed by LC-MS/MS-TOF. Using cyclohexane (10-100 ppm) as an OH-radical scavenger and by monitoring the yield of cyclohexanone by PTR-MS, an OH-yield of (10.5 ± 0.7)% was determined for the ozonolysis of the first DB, and (12.9 ± 0.7)% of the first-generation products. The rate constant of the reaction of O3 with α-humulene is known as k0 = 1.17 x 10~(-14) cm~3 molecule~(-1) s~(-1) [Y. Shu and R. Atkinson, Int. J. Chem. Kinet., 1994, 26, 1193-1205]. The reaction rate constants of O3 with the first-generation products and the second-generation products were, respectively, determined as k1 = (3.6 ± 0.9) x 10~(-16) and k2 = (3.0 ± 0.7) x 10~(-17) cm~3 molecule~(-1) s~(-1) by Facsimile-simulation of the observed ozone decay by FTIR. A total of 37 compounds in the aerosol phase and 5 products in the gas phase were tentatively identified: 25 compounds of the first-generation products contained C13-C15 species, 9 compounds of the second-generation products contained C8-C11 species, whereas 8 compounds of the third-generation products contained C4-C6 species. The products of all three generations consisted of a variety of dicarboxylic-, hydroxy-oxocarboxylic- and oxo-carboxylic acids. The formation mechanisms of some of the products are discussed. The residual FTIR spectra indicate the formation of secondary ozonides (SOZ) in the gas phase, which are formed by the intramolecular reaction of the Criegee moiety with the carbonyl endgroup. These SOZ revealed to be stable over several hours and its formation was shown not to be affected by the addition of Criegee-radical scavengers such as HCOOH or H2O. This suggests that in the ozonolysis of a-humulene at atmospheric pressures the POZ will decompose rapidly, and that a large fraction of the formed exited Criegee Intermediate will be stabilized to form stable SOZ, while the formation of OH-radicals via the hydroperoxide channel will be a minor process.
机译:α-Humulene包含三个双键(DB),并且在第一个DB进行臭氧分解后,第一代产品仍对O3具有反应性,并产生第二代和第三代产品。这项研究的主要目的是确定三代产品,重点是已知具有高烟雾形成潜力的羧酸。实验在570 K球形玻璃反应器中于295 K和730 Torr进行。在合成空气中,O3的初始混合比为260-2090 ppb,α-腐殖质为250-600 ppb。反应物和气相产物通过原位FTIR光谱法测量。在特氟龙过滤器上取样颗粒产物,用甲醇萃取并通过LC-MS / MS-TOF分析。使用环己烷(10-100 ppm)作为OH自由基清除剂,并通过PTR-MS监测环己酮的收率,第一个DB的臭氧分解测得OH收率为(10.5±0.7)%,而(12.9第一代产品的±0.7)%。 O3与α-hu草烯的反应速率常数称为k0 = 1.17 x 10〜(-14)cm〜3分子〜(-1)s〜(-1)[Y。 Shu和R. Atkinson,国际J.化学Kinet。,1994,26,1193-1205]。 O3与第一代产物和第二代产物的反应速率常数分别确定为k1 =(3.6±0.9)x 10〜(-16)和k2 =(3.0±0.7)x 10〜(通过传真模拟FTIR观测到的臭氧衰减,得到-17)cm〜3分子〜(-1)s〜(-1)。初步鉴定出气溶胶相中的37种化合物和气相中的5种产品:第一代产品中的25种化合物包含C13-C15物种,第二代产品中的9种化合物包含C8-C11物种,而8种第三代产品的化合物包含C4-C6物种。这三代产品均由各种二羧酸,羟基-羰基羧酸和羰基羧酸组成。讨论了某些产品的形成机理。残留的FTIR光谱表明,在气相中形成了二次臭氧化合物(SOZ),这是通过Criegee部分与羰基端基的分子内反应形成的。这些SOZ可以在数小时内保持稳定,并且显示其形成不受添加Criegee自由基清除剂(例如HCOOH或H2O)的影响。这表明在大气压下α-腐草烯的臭氧分解中,POZ会迅速分解,并且形成的出口Cegeee中间体的很大一部分将被稳定形成稳定的SOZ,而通过氢过氧化物通道形成OH自由基会是一个小过程。

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