Limonene oxidation over Ti-MCM-41 and Ti-MWW catalysts with t-butyl hydroperoxide as the oxidant

被引:0
|
作者
Alicja Gawarecka
Agnieszka Wróblewska
机构
[1] West Pomeranian University of Technology Szczecin,Faculty of Chemical Technology and Engineering, Institute of Organic Chemical Technology
关键词
Ti-MCM-41; Ti-MWW; Limonene epoxidation; t-Butyl hydroperoxide;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents the method of limonene epoxidation over Ti-MCM-41 and Ti-MWW catalysts in the presence of t-butyl hydroperoxide as an oxidant. Natural limonene used in the epoxidation process was obtained via steam distillation (97% purity). The purpose of the research was to obtain the highest yield of 1,2-epoxylimonene, but the performed studies showed that the process of limonene epoxidation is more complex because in addition to epoxidation products (1,2-epoxylimonene and its diol which were formed usually in small amount) also the following oxygenated derivatives of limonene are formed: carvone, carveol, and perillyl alcohol (products of allylic oxidation (hydroxylation) at positions 6 and 7 in limonene molecule). Therefore, ultimately, the most favorable conditions for the limonene oxidation process were selected at the highest conversion of limonene and at high values of perillyl alcohol and carveol or one of these two products. Perillyl alcohol and carveol have found numerous applications in medicine, among others, therefore this direction seems to be the most beneficial. This also work presents the short characteristization of the titanium silicate Ti-MCM-41 and Ti-MWW catalysts used in the research, taking into account their structure, properties and applications are presented.
引用
收藏
页码:523 / 543
页数:20
相关论文
共 50 条
  • [1] Limonene oxidation over Ti-MCM-41 and Ti-MWW catalysts with t-butyl hydroperoxide as the oxidant
    Gawarecka, Alicja
    Wroblewska, Agnieszka
    REACTION KINETICS MECHANISMS AND CATALYSIS, 2018, 124 (02) : 523 - 543
  • [2] Oxidation of crotyl alcohol using Ti-β and Ti-MCM-41 catalysts
    Davies, LJ
    McMorn, P
    Bethell, D
    Page, PCB
    King, F
    Hancock, FE
    Hutchings, GJ
    JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 2001, 165 (1-2) : 243 - 247
  • [3] Catalytic oxidation of α-eicosanol into eicosanic acid in the presence of Ti-MCM-41 or active component supported Ti-MCM-41 catalysts
    Kan, QB
    Bi, YL
    Ying, ZY
    Wu, TH
    Zhen, KJ
    MICROPOROUS AND MESOPOROUS MATERIALS, 2001, 44 : 609 - 617
  • [4] Oxidation of organosulfur compounds with tert-butyl hydroperoxide over Ti and V-MCM-41 catalysts
    Fabis, Grazyna
    Sarbak, Zenon
    PRZEMYSL CHEMICZNY, 2009, 88 (01): : 83 - 86
  • [5] Ti-MWW and related materials as efficient oxidation catalysts
    Tatsumi, Takashi
    Wu, Peng
    Fan, Weibin
    FROM ZEOLITES TO POROUS MOF MATERIALS: THE 40TH ANNIVERSARY OF INTERNATIONAL ZEOLITE CONFERENCE, PROCEEDINGS OF THE 15TH INTERNATIONAL ZEOLITE CONFERENCE, 2007, 170 : 1051 - 1058
  • [6] Clean limonene epoxidation using Ti-MCM-41 catalyst
    Cagnoli, MV
    Casuscelli, SG
    Alvarez, AM
    Bengoa, JF
    Gallegos, NG
    Samaniego, NM
    Crivello, ME
    Ghione, GE
    Pérez, CF
    Herrero, ER
    Marchetti, SG
    APPLIED CATALYSIS A-GENERAL, 2005, 287 (02) : 227 - 235
  • [7] Enhanced adsorptive-oxidative desulfurization of dibenzothiophene over Ti-MWW using cumene hydroperoxide as oxidant
    Zeng, Xingye
    Adesina, Adeyemo
    Li, Ping
    Wang, Hanlu
    Zhou, Rujin
    KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2022, 39 (01) : 96 - 108
  • [8] Enhanced adsorptive-oxidative desulfurization of dibenzothiophene over Ti-MWW using cumene hydroperoxide as oxidant
    Xingye Zeng
    Adeyemo Adesina
    Ping Li
    Hanlu Wang
    Rujin Zhou
    Korean Journal of Chemical Engineering, 2022, 39 : 96 - 108
  • [9] Catalytic Performance of Ti-MCM-41 for Styrene Oxidation
    Chen Dandan
    Li Niankai
    Sun Peng
    Kong Yan
    CHINESE JOURNAL OF CATALYSIS, 2009, 30 (07) : 643 - 648
  • [10] Catalytic oxidation of carbazole by t-butyl hydroperoxide over Mo catalysts
    Zhou, Xin-Rui
    Ma, Hong
    Fu, Xin-Mei
    Yao, Cheng-Bin
    Xiao, Jin-Qiu
    Ranliao Huaxue Xuebao/Journal of Fuel Chemistry and Technology, 2010, 38 (01): : 75 - 79