One-Pot Synthesis of Menthol from Citral and Citronellal Over Heterogeneous Catalysts

IF 2.1 4区 化学 Q3 CHEMISTRY, PHYSICAL
Päivi Mäki-Arvela, Irina Simakova, Zuzana Vajglová, Dmitry Yu. Murzin
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引用次数: 2

Abstract

One-pot synthesis of menthol from citronellal or citral was summarized. Both batch and continuous reactors have been recently applied. This reaction is very complex and a bifunctional catalyst exhibiting especially Lewis acid sites for cyclisation of citronellal to isopulegol are needed, while metal particles are required for its hydrogenation to menthols. Typically, too mild acidity of the catalyst and small particles do not catalyze menthol formation. Furthermore, too high acidity causes catalyst deactivation and dehydration of menthol. Very high menthol yields have been obtained in batch reactor over nobel and transition metal supported bifunctional catalysts. Shape selectivity was demonstrated for Ni-supported on Zr-modified beta zeolite, which gave high diastereoselectivity to the desired L-menthol. Recently one-pot synthesis of menthol in a trickle bed reactor has been investigated. Catalyst suffers only minor deactivation in transformation of citronellal to menthol, while more severe catalyst deactivation occurred in transforming citral to menthols. Noteworthy from the industrial point of view is that the product distribution obtained with the same catalyst under kinetic regime or under diffusional limitations differs from each other. The metal location and synthesis method of extrudates can have a major effect on the catalyst performance. Kinetic modelling of the data obtained from the trickle bed reactor considering the effectiveness factor is discussed.

Graphical Abstract

The results from one-pot synthesis of menthol finding applications in pharmaceuticals and fragrances from citral and its hydrogenated product, citronellal over bifunctional catalysts metal–acid are summarized. The relationship between the catalyst properties and the performance is discussed. In the continuous mode catalyst deactivation becomes apparent and in such mode of operation the product distribution might differ from those obtained in a batch reactor.

Abstract Image

非均相催化下柠檬醛和香茅醛一锅法合成薄荷醇
综述了香茅醛和柠檬醛一锅法合成薄荷醇的方法。间歇式反应器和连续式反应器最近都得到了应用。这个反应非常复杂,需要一种双功能催化剂,特别是具有Lewis酸位点的催化剂,用于香茅醛环化成异戊二醇,而金属颗粒则用于其氢化成薄荷醇。通常,太温和的酸性催化剂和小颗粒不能催化薄荷醇的形成。此外,酸度过高会导致薄荷醇催化剂失活和脱水。在间歇反应器中,采用诺贝尔和过渡金属负载的双功能催化剂,获得了很高的薄荷醇收率。zr修饰的β沸石对ni载体的形状具有选择性,对l -薄荷醇具有较高的非对映选择性。最近研究了在滴流床反应器中一锅合成薄荷醇的方法。香茅醛转化为薄荷醇时催化剂失活程度较轻,而香茅醛转化为薄荷醇时催化剂失活程度较重。从工业角度来看,值得注意的是,同一种催化剂在动力学条件下或在扩散限制下得到的产物分布是不同的。挤出物的金属位置和合成方法对催化剂的性能有重要影响。讨论了考虑有效性因素的滴流床反应器数据的动力学建模。摘要综述了以柠檬醛及其氢化产物香茅醛为催化剂,以金属-酸为双功能催化剂,一锅法合成薄荷醇在医药和香料中的应用。讨论了催化剂的性质与性能之间的关系。在连续模式下,催化剂失活变得很明显,在这种操作模式下,产物分布可能与在间歇式反应器中获得的产物分布不同。
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来源期刊
Catalysis Surveys from Asia
Catalysis Surveys from Asia 化学-物理化学
CiteScore
4.80
自引率
0.00%
发文量
29
审稿时长
>12 weeks
期刊介绍: Early dissemination of important findings from Asia which may lead to new concepts in catalyst design is the main aim of this journal. Rapid, invited, short reviews and perspectives from academia and industry will constitute the major part of Catalysis Surveys from Asia . Surveys of recent progress and activities in catalytic science and technology and related areas in Asia will be covered regularly as well. We would appreciate critical comments from colleagues throughout the world about articles in Catalysis Surveys from Asia . If requested and thought appropriate, the comments will be included in the journal. We will be very happy if this journal stimulates global communication between scientists and engineers in the world of catalysis.
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