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Liquid-Phase Oxidation Reaction and Mechanism of p-Diethylbenzene to p-Ethylacetophenone with H2O2 in a Batch Reactor and a Fixed Bed Reactor

机译:液相氧化反应和P-二乙基苯对P-乙基乙烯酮与H2O2的机理,在批处理反应器中和固定床反应器中

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摘要

Liquid-phase oxidation of p-diethylbenzene (PDEB) to p-ethyl-acetophenone (EAP) with hydrogen peroxide (H2O2) catalyzed by 5Co/SBA-15 in a batch reactor and a fixed bed reactor was investigated. Based on the analysis of compositions, a reasonable reaction mechanism was discussed. Results show whether in a batch reactor or a fixed bed reactor, a mixture of EAP, 1-(4-ethylphenyl)-1-ethanol (EPEA), p-diacetylbenzene (PDAB), 4-acetylbenzoic acid (AA) and terephthalic acid (TA) could be detected. The reaction mechanism for oxidation of PDEB based on two reaction pathways for oxidizing ethyl group with H2O2 involving radical intermediates are proposed, PDEB firstly undergoes oxidation to give alkyl benzene carbocation and generates the key intermediate EPEA, which will be converted to EAP through pathway I. EAP can ultimately yield byproducts PDAB, AA and TA with pathway I and pathway II. Besides, diethyl group of PDEB can be tolerated pathway II to generate TA directly. The selectivity of EAP is steady around 68% in the fixed bed reactor, which is 16.52% higher than that in the batch reactor. It is essential to have a further study on the continuous flow process and obtain more data for industrial application.
机译:P-diethylbenzene(PDEB)氧化为P-乙基 - 乙二醇(EAP),用批处理反应器中的5CO/SBA-15催化并用固定床反应器催化5CO/SBA-15的氢(H2O2)。基于组成的分析,讨论了合理的反应机制。结果表明,在批处理反应堆或固定床反应器中,是否是EAP的混合物,1-(4-乙基苯基)-1-乙醇(EPEA),P-diacetylbenzene(PDAB),4-乙酰基苯甲酸(AA)和苯二甲酸(TA)可以检测到。提出了基于两种涉及自由基中间体的H2O2氧化乙基的反应途径的PDEB氧化的反应机制,PDEB首先经过氧化以产生烷基苯碳定位,并产生关键的中间EPEA,这将通过I. EAP转化为EAPI。 EAP最终可以使用途径I和途径II产生副产品PDAB,AA和TA。此外,可以将PDEB的二乙基组耐受途径II直接生成TA。在固定床反应器中,EAP的选择性在68%左右,比批处理反应器高16.52%。对连续流动过程进行进一步研究并获得更多数据以进行工业应用是至关重要的。

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