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Gas-phase ozonolysis of the monoterpenoids (S)-( + )-carvone, (R)-(-)-carvone, (-)-carveol, geraniol and citral

机译:单萜类化合物(S)-(+)-香芹酮,(R)-(-)-香芹酮,(-)-香芹酚,香叶醇和柠檬醛的气相臭氧分解

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Biogenic emissions of volatile organic compounds (VOCs) play a fundamental role in atmospheric chemistry. Vegetation is the most abundant natural source of VOCs, while terpenoids, as limonene, α and β pinene and mircene, top the plants emission list. Much interest has been demonstrated in oxidation and photooxidation reactions of VOCs, particularly of monoterpenoids, owing to their diversity and to uncertainties regarding their mechanism of reaction. Quantification of primary carbonylic compounds, as well as of biradical reaction components, is highly relevant to the understanding of the major reactions. In this context, taking into account both structural factors and the fact that these compounds are found in the essential oils of plants typically found in Brazil and that they may be present in the atmosphere from emission by the plants, the monoterpenoids (S)-(+)-carvone, (R)-(-)-carvone, (-)-carveol, geraniol and citral (a mixture of the isomers geranial and neral) were selected for this study. The ozonolysis reactions of the monoterpenoids were carried out under dark conditions for all experiments, due to their photochemical reactivity. The analysis of the results lets us propose a mechanism by which these reactions occur. The observed results of the ozonolysis of S and R carvone suggest that the stereochemistry of asymmetric carbon does not affect either in the yields of both formaldehyde and of OH radicals produced in the reaction, or in the reactivity of these compounds, for which the rate constants were in the scale of 10~(-6)s~(-1). We found that, in the (-)-carveol's cis and trans mixture, even though the hydroxyl in the axial position-in the case of trans-(C) and cis-(D') isomers-favors the attack by the ozone molecule on the external double bond, thus increasing the mixture's reactivity (k = 2.0 x 10~(-4) s~(-1), it affects the average production of formaldehyde. The presence of geraniol and citral led to the production of formaldehyde, propanone, glyoxal, methyl-glyoxal and cyclohexanone (OH radicals) as reaction products. The influence of an electron attractor group bonded to the carbon of the double bond, on the reactivity of the double bond, could not be observed in the case of citral, due to strong interference occurring in the instrument in all experiments with this monoterpenoid. For this reason, only the kinetics of geraniol was monitored (k = 9.0 x 10~(-4) s~(-1)).
机译:挥发性有机化合物(VOC)的生物排放在大气化学中起着基本作用。植被是VOC的最丰富的天然来源,而萜烯类化合物(如柠檬烯,α和βpin烯和二烯)则是植物排放量最高的清单。由于VOC的多样性和反应机理的不确定性,人们对VOC,尤其是单萜类化合物的氧化和光氧化反应表现出极大的兴趣。初级羰基化合物以及双自由基反应组分的定量与主要反应的理解高度相关。在这种情况下,考虑到结构性因素以及这些化合物存在于通常在巴西发现的植物精油中并且由于植物排放而可能存在于大气中的事实,单萜类化合物(S)-(本研究选择了+)-香芹酮,(R)-(-)-香芹酮,(-)-香芹酚,香叶醇和柠檬醛(香叶醛和神经醛异构体的混合物)。由于所有化合物的光化学反应性,它们在所有条件下均在黑暗条件下进行了臭氧分解反应。结果分析使我们提出了发生这些反应的机制。对S和R香芹酮进行臭氧分解的观察结果表明,不对称碳的立体化学既不会影响反应中产生的甲醛和OH自由基的收率,也不会影响这些化合物的反应性,因为它们的速率常数范围在10〜(-6)s〜(-1)。我们发现,在(-)-香芹酚的顺式和反式混合物中,即使轴向位置的羟基(在反式-(C)和顺式-(D')异构体的情况下)也有利于臭氧分子的攻击在外部双键上,从而提高了混合物的反应性(k = 2.0 x 10〜(-4)s〜(-1),它影响甲醛的平均产生。香叶醇和柠檬醛的存在导致甲醛的产生,丙酮,乙二醛,甲基乙二醛和环己酮(OH自由基)作为反应产物,在柠檬醛的情况下,未观察到与双键碳键合的电子吸引子基团对双键反应性的影响,因为在所有实验中该单萜类化合物都会在仪器中产生强烈干扰,因此仅监测香叶醇的动力学(k = 9.0 x 10〜(-4)s〜(-1))。

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