Advantages of tandem versus simultaneous operation: The case of isomerization/hydrogenation of terpinolene epoxide to Terpinen-4-ol using a Ni/TiO2-SiO2 bifunctional catalyst

Author:

Liu Jie,Cui Jianhao,Chen Lei,Chen Jingjing,Zheng Huidong,Ted Oyama S.

Publisher

Elsevier BV

Subject

Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

Reference63 articles.

1. Terpinen-4-ol enhances disease resistance of postharvest strawberry fruit more effectively than tea tree oil by activating the phenylpropanoid metabolism pathway;Li;J. Agr. Food Chem.,2020

2. iTRAQ-based quantitative proteome revealed metabolic changes of Sitophilus zeamais in response to terpinen-4-ol fumigation;Huang;Pest Manag. Sci.,2019

3. Quality evaluation of terpinen-4-ol-type Australian tea tree oils and commercial products: An integrated approach using conventional and chiral GC/MS combined with chemometrics;Wang;J. Agr. Food Chem.,2015

4. Klein E., Preparation of Terpinen-1-ol-(4), US3505412A, Apr. 7, 1970.

5. M.R. B. Wolf, S. Benson, H. Kraus, R. Götz, S. Narayanana, C. Rishinaradaman Galam, A process for the production of terpilene epoxide, World Patent 180642A1, Assigned to BASF Agro. B.V., Nov. 17, 2016.

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