NHPI催化环己酮空气氧化:机理和动力学研究

IF 1.9 4区 工程技术 Q3 ENGINEERING, CHEMICAL
Guanwen Chen, Bo Yuan, Ruolin Wang, Min Yang, Zhanke Wang, Guangxu Zhang
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引用次数: 0

摘要

ε-己内酯(ε-CL)是合成聚己内酯的重要单体材料,目前主要通过环己酮的Baeyer-Villiger氧化法制备。在牺牲剂的存在下,空气氧化环己酮作为一种绿色且有发展前景的生产ε-CL的工艺,受到了学术界和工业界的广泛关注。然而,空气的反应动力学慢,氧化能力弱,限制了该绿色技术的应用。本文采用n -羟基邻苯二胺(NHPI)作为空气氧化环己酮的高效均相催化剂。通过考察反应温度、气速、醛酮比、溶剂比等条件对环己酮转化率和ε-CL选择性的影响,得到了最佳反应条件,ε-己内酯的产率高达3.43 mmol/gcat/min,选择性为90%。通过原位紫外可见光谱、电子顺磁共振(EPR)光谱和淀粉/KI实验对反应机理进行了研究,提出了一个包含三个关键反应的合理机理模型。建立了动力学模型,验证了所提出的机理,并对实际反应速率进行了较好的预测。本研究为nhpi催化环己酮的空气氧化提供了有意义的见解,所构建的动力学模型为放大工艺提供了理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NHPI catalyzed air oxidation of cyclohexanone: Mechanism and kinetics study

As an important monomer material for synthesizing polycaprolactone, ε-caprolactone (ε-CL), is currently produced through the Baeyer–Villiger oxidation of cyclohexanone. As a green and promising process to produce ε-CL, oxidizing cyclohexanone with air in the presence of sacrificial agents has attracted extensive attention from academia and industry. However, the slow reaction kinetic and the weak oxidation capacity of air limits the application of this green technology. Herein, we used N-hydroxyphthalimide (NHPI) as a higdhly efficient homogeneous catalyst for the air oxidation of cyclohexanone. Through investigating the influence of reaction conditions such as temperature, gas velocity, aldehyde-ketone ratio, and solvent ratio on the conversion rate of cyclohexanone and selectivity of ε-CL, an optimum reaction condition was obtained and the ε-caprolactone production rate is as high as 3.43 mmol/gcat/min with a selectivity of 90%. The reaction mechanism is investigated through in-situ UV–visible spectra, electron paramagnetic resonance (EPR) spectra, and starch/KI experiment, and a plausible mechanistic mode involving three pivotal reactions was proposed. The dynamic model was constructed to validate the proposed mechanism and provide good predictions for the actual reaction rate. This work provides meaningful insights into NHPI-catalyzed air oxidation of cyclohexanone, and the constructed kinetic model provides theoretical guidance for scale-up processes.

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来源期刊
Canadian Journal of Chemical Engineering
Canadian Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
3.60
自引率
14.30%
发文量
448
审稿时长
3.2 months
期刊介绍: The Canadian Journal of Chemical Engineering (CJChE) publishes original research articles, new theoretical interpretation or experimental findings and critical reviews in the science or industrial practice of chemical and biochemical processes. Preference is given to papers having a clearly indicated scope and applicability in any of the following areas: Fluid mechanics, heat and mass transfer, multiphase flows, separations processes, thermodynamics, process systems engineering, reactors and reaction kinetics, catalysis, interfacial phenomena, electrochemical phenomena, bioengineering, minerals processing and natural products and environmental and energy engineering. Papers that merely describe or present a conventional or routine analysis of existing processes will not be considered.
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