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首页> 外文期刊>Catalysis science & technology >alpha-Pinene oxide isomerization: role of zeolite structure and acidity in the selective synthesis of campholenic aldehyde
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alpha-Pinene oxide isomerization: role of zeolite structure and acidity in the selective synthesis of campholenic aldehyde

机译:氧化alpha-Pinene异构化:沸石的作用结构和酸性的选择性合成campholenic醛的

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摘要

MWW-type zeolites with different textural properties, namely, MCM-22, MCM-36, MCM-56, and MCM-49, were synthesized and tested in the selective preparation of campholenic aldehyde by isomerization of -pinene oxide. Commercial zeolites USY, Beta, and ZSM-5 were compared. The physico-chemical properties of the studied zeolites were correlated with their catalytic performance in the isomerization of -pinene oxide carried out either in toluene as a solvent at 70 degrees C or in N,N-dimethylacetamide at 140 degrees C. -Pinene oxide isomerizes easily in the presence of acids and therefore, high conversions were achieved over commercial as well as synthesized MWW catalysts. Higher selectivities to campholenic aldehyde were achieved over MWW catalysts in basic N,N-dimethylacetamide while non-basic toluene enhanced the formation of the desired aldehyde over all the commercial zeolites. The highest selectivity to the desired aldehyde was achieved over MCM-22 in the reaction performed in N,N-dimethylacetamide at 140 degrees C, being 83% at total conversion of -pinene oxide. This is the best result achieved rivaling homogenous acids (ZnBr2) and metal-organic frameworks.
机译:MWW-type沸石具有不同的结构属性,即MCM-22 MCM-36 MCM-56,MCM-49合成和测试选择性campholenic醛的制备蒎烯氧化物的异构化。β沸石忙,ZSM-5比较。的物理化学性质进行了研究沸石与催化蒎烯氧化物的异构化性能在进行甲苯作为溶剂在70度或N, N-dimethylacetamide享年140岁氧化度c蒎烯异构化很容易的酸的存在,因此,高转换实现在商业以及合成了MWW催化剂。在MWW campholenic醛被实现催化剂在基础N, N-dimethylacetamide非基本甲苯增强的形成对所有商业所需的醛沸石。醛是在MCM-22反应实现的在N, N-dimethylacetamide在140度C在蒎烯的总转化率83%氧化物。同质酸(摘要)和有机配合框架。

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