首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Greener and efficient epoxidation of 4-vinyl-1-cyclohexene with polystyrene 2-(aminomethyl)pyridine supported Mo(VI) catalyst in batch and continuous reactors
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Greener and efficient epoxidation of 4-vinyl-1-cyclohexene with polystyrene 2-(aminomethyl)pyridine supported Mo(VI) catalyst in batch and continuous reactors

机译:在分批和连续反应器中,用聚苯乙烯2-(氨基甲基)吡啶负载的Mo(VI)催化剂更环保,更高效地将4-乙烯基-1-环己烯环氧化

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摘要

Polystyrene 2-(aminomethyl)pyridine supported Mo(VI) complex, i.e. Ps.AMP.Mo catalyst has been successfully prepared and characterised. The catalytic performance of the Ps.AMP.Mo catalyst in epoxidation of 4-vinyl-1-cyclohexene (4-VCH) with tert-butyl hydroperoxide (TBHP) as an oxidant has been studied under different reaction conditions in batch and continuous reactors. The stability of the polymer supported molybdenum (Mo) catalyst has been evaluated by recycling Ps.AMP.Mo catalyst several times in batch reactions using conditions that forms the basis for continuous epoxidation in a FlowSyn continuous flow reactor. Leaching of Mo from polymer support has been investigated by isolating any residues from reaction supernatant solutions following the removal of heterogeneous catalyst and using these residues as potential catalyst in epoxidation. The results of batch and continuous epoxidation studies were modelled using artificial neural network (ANN) to predict the catalytic performance of Ps.AMP.Mo catalyst. The catalyst was found to be highly active and selective for batch and continuous epoxidation of 4-VCH with TBHP and could be reused several times without significant loss in activity. The ANN modelling of batch and continuous epoxidation experimental data has successfully predicted the catalytic performance of Ps.AMP.Mo under different reaction conditions. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:聚苯乙烯2-(氨基甲基)吡啶负载的Mo(VI)配合物,即Ps.AMP.Mo催化剂已成功制备和表征。在间歇和连续反应器中,在不同的反应条件下,研究了Ps.AMP.Mo催化剂在叔丁基过氧化氢(TBHP)作为氧化剂对4-乙烯基-1-环己烯(4-VCH)环氧化反应中的催化性能。聚合物负载的钼(Mo)催化剂的稳定性已通过在形成FlowSyn连续流反应器中连续环氧化基础的条件下分批回收Ps.AMP.Mo催化剂几次进行了评估。通过去除异质催化剂后从反应上清液中分离出任何残留物并将这些残留物用作环氧化中的潜在催化剂,已经研究了Mo从聚合物载体中的浸出。使用人工神经网络(ANN)对间歇和连续环氧化研究的结果进行建模,以预测Ps.AMP.Mo催化剂的催化性能。发现该催化剂对4-VCH用TBHP进行批量和连续环氧化具有很高的活性和选择性,可以重复使用几次,而不会造成活性的显着降低。间歇和连续环氧化实验数据的ANN建模已成功预测了Ps.AMP.Mo在不同反应条件下的催化性能。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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