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Kinetic modeling of the simultaneous etherification of ethanol with C4 and C5 olefins over Amberlyst 35 using model averaging

机译:使用模型平均对Amberlyst 35上的乙醇与C4和C5烯烃同时醚化的动力学建模

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摘要

A kinetic study on the simultaneous liquid-phase etherification of ethanol with isobutene (IB), 2-methyl-1-butene (2M1B) and 2-methyl-2-butene (2M2B) catalyzed by Amberlyst¿ 35 to form ethyl tert-butyl ether (ETBE) and tert-amyl ethyl ether (TAEE) is presented. Isothermal experimental runs were carried out in a stirred tank batch reactor in the temperature range 323-353 K at 2.0 MPa, starting from different initial concentrations. Obtained reaction rates were free of catalyst load, internal, and external mass transfer effects. Mathematical fitting of a series of systematically originated models, model selection, and model averaging procedures were applied to find the best model and to draw conclusions about the reaction mechanism. The selected model involves a saturated catalytic surface with the participation of two active sites in etherification reactions and one active site in isoamylenes isomerization. Apparent activation energies for ETBE formation from IB and EtOH, TAEE formation from 2M1B and EtOH, TAEE formation from 2M2B and EtOH, and double bond isomerization between 2M1B and 2M2B were 72.8±1.4, 74.9±2.8, 81.2±2.2 and, 76.5±7.2 kJ/mol, respectively. The alkenes with the double bond in terminal position were more reactive towards EtOH than 2M2B, with the double bond in internal position.
机译:Amberlyst®35催化乙醇与异丁烯(IB),2-甲基-1-丁烯(2M1B)和2-甲基-2-丁烯(2M2B)同时液相醚化以形成乙基叔丁基的动力学研究提出了醚(ETBE)和叔戊基乙基醚(TAEE)。从不同的初始浓度开始,在搅拌釜式分批反应器中于2.0 MPa的温度范围为323-353 K进行等温实验。获得的反应速率没有催化剂负载,内部和外部传质影响。对一系列系统起源的模型进行数学拟合,模型选择和模型平均程序,以找到最佳模型并得出有关反应机理的结论。选择的模型涉及一个饱和的催化表面,该表面具有两个参与醚化反应的活性位和一个参与异戊烯异构化的活性位。从IB和EtOH形成ETBE,从2M1B和EtOH形成TAEE,从2M2B和EtOH形成TAEE以及2M1B和2M2B之间的双键异构化的表观活化能分别为72.8±1.4、74.9±2.8、81.2±2.2和76.5±7.2 kJ / mol。在末端位置带有双键的烯烃比在内部位置带有双键的2M2B对EtOH的反应性更高。

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