Continuous oxidation of toluene derivatives to aromatic aldehydes in an umbrella-shaped microchannel reactor

IF 3.1 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Reaction Chemistry & Engineering Pub Date : 2024-12-05 DOI:10.1039/D4RE00484A
Shujin Shi, Yu Fan, Chunsheng Zhao, Yihan Shan, Jiaqi Yan, Anwei Wang, Junfeng Qian, Mingyang He and Weiyou Zhou
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Abstract

In an umbrella-shaped microchannel reactor, the continuous selective aerobic oxidation of toluene derivatives to aromatic aldehydes over a Co/Mn/Br catalytic system using acetic acid/water as the solvent was studied. Taking the oxidation of p-nitrotoluene (PNT) to p-nitrobenzaldehyde (PNBD) as a model, the effects of the Co2+(Mn2+) amount, ratio of Co2+, Mn2+ and Br, reaction temperature, reaction pressure, oxygen flow rate, residence time and water content on the reaction were systematically investigated. Under the optimized reaction conditions, an 11.8% conversion could be achieved with a good selectivity of 67.1% to PNBD, significantly superior to the results obtained in a kettle reactor. In addition, various toluene derivatives could be tolerated by the present reaction process. This aerobic oxidation over the microchannel reaction technology has the features of an easy-to-operate process and easily controlled reaction parameters, providing an economical and environmentally friendly protocol for the synthesis of aromatic aldehydes.

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在伞状微通道反应器中甲苯衍生物连续氧化制芳醛
在伞状微通道反应器中,以乙酸/水为溶剂,在Co/Mn/Br催化体系上,研究了甲苯衍生物连续选择性好氧氧化制芳醛的反应。以对硝基甲苯(PNT)氧化制对硝基苯甲醛(PNBD)为模型,系统考察了Co2+(Mn2+)用量、Co2+、Mn2+和Br -的比例、反应温度、反应压力、氧气流量、停留时间和水含量等因素对反应的影响。在优化的反应条件下,PNBD的转化率为11.8%,对PNBD的选择性为67.1%,明显优于釜式反应。此外,该反应还能耐受多种甲苯衍生物。该微通道好氧反应技术具有工艺操作简单、反应参数易于控制等特点,为芳香族醛的合成提供了一种经济、环保的方案。
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来源期刊
Reaction Chemistry & Engineering
Reaction Chemistry & Engineering Chemistry-Chemistry (miscellaneous)
CiteScore
6.60
自引率
7.70%
发文量
227
期刊介绍: Reaction Chemistry & Engineering is a new journal reporting cutting edge research into all aspects of making molecules for the benefit of fundamental research, applied processes and wider society. From fundamental, molecular-level chemistry to large scale chemical production, Reaction Chemistry & Engineering brings together communities of chemists and chemical engineers working to ensure the crucial role of reaction chemistry in today’s world.
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