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Mechanism and kinetics of the pyrolysis of beta-pinene to myrcene

机译:β-pine烯热解为月桂烯的机理和动力学

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Myrcene, an important intermediate for the production of fine chemicals and pharmaceuticals, is mainly produced by the pyrolysis of S-pinene in the industry. The study of the direct pyrolysis of S-pinene was carried out without a catalyst and carrier gas at 573-873 K and under low pressure. In order to clarify the reaction mechanism, the primary intermediates of beta-pinene pyrolysis including myrcene and limonene were also used as raw materials for further pyrolysis. The identification of some small molecules and C10H16 isomers in the products proves that both decomposition reaction and ene reaction take place during the pyrolysis process. Based on the qualitative and quantitative analysis of reaction products, a reaction scheme for the pyrolysis of S-pinene was proposed. With appropriate simplification of the reaction scheme, a phenomenological kinetic model of the competitive parallel and consecutive first-order reaction was built, and exhibited good agreement with the experimental data. The activation energy (E-a) and pre-exponential factor (k(0)) for each pathway were also determined. (C) 2016 Elsevier B.V. All rights reserved.
机译:月桂烯是生产精细化学品和药物的重要中间体,在工业上主要通过S-pine烯的热解制备。在没有催化剂和载气的情况下,在低压下于573-873 K进行S-pine烯的直接热解研究。为了阐明反应机理,还使用β-pine烯热解的主要中间体,包括月桂烯和柠檬烯作为进一步热解的原料。产物中一些小分子和C10H16异构体的鉴定证明,在热解过程中会发生分解反应和烯反应。在对反应产物进行定性和定量分析的基础上,提出了S--烯的热解反应方案。通过适当简化反应方案,建立了竞争性平行和连续一级反应的现象动力学模型,与实验数据吻合良好。还确定了每个途径的活化能(E-a)和指数前因子(k(0))。 (C)2016 Elsevier B.V.保留所有权利。

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