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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Reaction process and kinetics of the selective hydrogenation of resorcinol into 1,3-cyclohexanedione
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Reaction process and kinetics of the selective hydrogenation of resorcinol into 1,3-cyclohexanedione

机译:间苯二酚选择性加氢成1,3-环己二酮的反应过程和动力学

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The reaction process and kinetics of the selective hydrogenation of resorcinol to 1,3-cyclohexanedione on Pd/C were studied. The optimized reaction conditions were as follows: mole ratio of sodium hydroxide to resorcinol, 1.1-1.2; catalyst loading, 15% (w/w); hydrogen pressure, 2 MPa; reaction temperature, 353 K; and stirring speed, >800 rpm. A kinetic model was then established based on a report that two hydrogenation pathways simultaneously control hydrogenation: one is the simultaneous addition of two hydrogen atoms while a van der Waals complex forms between the aromatic π-bond and the catalyst surface; the other is the sequential addition of a single hydrogen atom while a π/σ complex forms between a single double-bond and the catalyst surface. Subsequently, the model parameters and activation parameters were estimated. Results showed that the reaction was mainly controlled by the sequential pathway and that the addition of the first hydrogen atom was the rate-determining step. The activation energies for the sequential addition of two hydrogen atoms were 19.9 and 35.0 kJ/mol, whereas the activation energy for the simultaneous addition of two hydrogen atoms was 54.1 kJ/mol. The adsorption heats for resorcinol and 1,3-cyclohexanedione on the catalyst surface were 63.4 and 25.7 kJ/mol, respectively.
机译:研究了间苯二酚在Pd / C上选择性氢化为1,3-环己二酮的反应过程和动力学。优化的反应条件如下:氢氧化钠与间苯二酚的摩尔比为1.1-1.2;催化剂负载量为15%(w / w);氢气压力2 MPa;反应温度353K;和搅拌速度,> 800 rpm。根据报告建立了动力学模型,该报告有两个加氢途径同时控制加氢:一个是同时添加两个氢原子,而在芳族π键与催化剂表面之间形成范德华络合物;第二个是同时加氢。另一个是顺序添加单个氢原子,而在单个双键和催化剂表面之间形成π/σ络合物。随后,估计模型参数和激活参数。结果表明,该反应主要由顺序途径控制,并且第一个氢原子的添加是决定速率的步骤。依次添加两个氢原子的活化能为19.9和35.0 kJ / mol,而同时添加两个氢原子的活化能为54.1 kJ / mol。间苯二酚和1,3-环己二酮在催化剂表面的吸附热分别为63.4和25.7 kJ / mol。

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