Kinetic Study of CaO-Catalyzed Transesterification of Cyclic Carbonates with Methanol

被引:15
|
作者
Song, Ziwei [1 ,2 ]
Subramaniam, Bala [1 ,2 ]
Chaudhari, Raghunath V. [1 ,2 ]
机构
[1] Univ Kansas, Ctr Environm Beneficial Catalysis, 1501 Wakarusa Dr, Lawrence, KS 66047 USA
[2] Univ Kansas, Dept Chem & Petr Engn, 1503 West 15th St, Lawrence, KS 66045 USA
基金
美国国家科学基金会;
关键词
SOLID BASE CATALYST; DIMETHYL CARBONATE; BIODIESEL PRODUCTION; PROPYLENE CARBONATE; MAGNESIUM-OXIDE; ETHYLENE CARBONATE; CALCIUM-OXIDE; ADSORPTION; DIOXIDE; HYDROTALCITE;
D O I
10.1021/acs.iecr.8b03837
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Simultaneous catalytic contributions of CaO in the liquid phase (homogeneous) and in the solid phase (heterogeneous) for transesterification are considered in the kinetic analysis, because sparingly soluble CaO has significant catalytic activity. Experimental concentration-time profiles were obtained at different catalyst loadings, propylene carbonate (PC) concentrations, and methanol concentrations in a temperature range of 20-60 degrees C in a stirred batch reactor for both the homogeneous and heterogeneous reactions. Kinetic models based on power-law rate forms were evaluated and discriminated to fit the experimental data. Reaction orders of 1 for PC, 2 for methanol, and 1 for both DMC and PG fit the experimental data best for the homogeneous reaction, whereas orders of 0.35 for PC, 1.9 for methanol, and 0 for both DMC and PG fit the experimental data best for the heterogeneous reaction. The heterogeneous CaO catalyst (E-a = 56.8 kJ/mol) was found to be more active than the homogeneous CaO catalyst (E-a = 82.4 kJ/mol). The reaction-order and activation-energy differences may be attributed to different reaction pathways for homogeneous- and heterogeneous-CaO-catalyzed transesterifications. Different reaction mechanisms were proposed for the homogeneous and heterogeneous reactions, respectively. It is observed that kinetic models based on mechanisms fit better than power-law models, especially for the heterogeneous reaction. The kinetic model for the homogeneous reaction suggests the formation of active species CH3O-. Then, PC gets activated by the CH3O- to form the first intermediate, which then forms the second intermediate by reaction with one mole of methanol. This is followed by a reaction of the second intermediate with another molecule of methanol to form the final products, DMC and PG. However, for the heterogeneous-CaO-catalyzed reaction, adsorption of PC and dissociative adsorption of methanol on the surface of the active species is assumed to occur simultaneously. Then, the adsorbed PC and methanol react to directly form the final products, DMC and PG. The good fits of the kinetic models with the experimental data suggest that the proposed homogeneous- and heterogeneous-reaction mechanisms represent the transesterification of propylene carbonate satisfactorily.
引用
收藏
页码:14977 / 14987
页数:11
相关论文
共 50 条
  • [41] Lipase catalyzed transesterification of ethyl butyrate synthesis in n-hexane— a kinetic study
    N. Annapurna Devi
    G. B. Radhika
    R. J. Bhargavi
    Journal of Food Science and Technology, 2017, 54 : 2871 - 2877
  • [42] Lipase catalyzed transesterification of ethyl butyrate synthesis in n-hexane- a kinetic study
    Devi, N. Annapurna
    Radhika, G. B.
    Bhargavi, R. J.
    JOURNAL OF FOOD SCIENCE AND TECHNOLOGY-MYSORE, 2017, 54 (09): : 2871 - 2877
  • [43] An experimental and kinetic study of canola oil transesterification catalyzed by mesoporous alumina supported potassium
    Wu, Wei
    Zhu, Mingming
    Zhang, Dongke
    APPLIED CATALYSIS A-GENERAL, 2017, 530 : 166 - 173
  • [44] Kinetic Study of the Formation of Isopropyl Alcohol by Transesterification of Isopropyl Acetate with Methanol in the Presence of Heterogeneous Catalyst
    Akyalcin, Sema
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2014, 53 (23) : 9631 - 9637
  • [45] Hydroxyalkylation of indole with cyclic carbonates catalyzed by ionic liquids
    Gao Guohua
    Zhang Lifeng
    Wang Binshen
    CHINESE JOURNAL OF CATALYSIS, 2013, 34 (06) : 1187 - 1191
  • [46] Palladium-Catalyzed Carbonylation of Diols to Cyclic Carbonates
    Pearson, David M.
    Conley, Nicholas R.
    Waymouth, Robert M.
    ADVANCED SYNTHESIS & CATALYSIS, 2011, 353 (16) : 3007 - 3013
  • [47] Synthesis of Cyclic Carbonates Catalyzed by CaI2-Et3N and Studies on Their Biocatalytic Kinetic Resolution
    Terazzi, Constanza
    Laatz, Karoline
    von Langermann, Jan
    Werner, Thomas
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2022, 10 (40): : 13335 - 13342
  • [48] CaO-catalyzed synthesis of glycerol carbonate from glycerol and dimethyl carbonate: Isolation and characterization of an active Ca species
    Simanjuntak, Fidelis Stefanus Hubertson
    Kim, Tae Kyung
    Lee, Sang Deuk
    Ahn, Byoung Sung
    Kim, Hoon Sik
    Lee, Hyunjoo
    APPLIED CATALYSIS A-GENERAL, 2011, 401 (1-2) : 220 - 225
  • [49] CaO Supported on Porous Carbon as Highly Efficient Heterogeneous Catalysts for Transesterification of Triacetin with Methanol
    Zu, Yanhong
    Liu, Gang
    Wang, Zhenlv
    Shi, Jinghui
    Zhang, Min
    Zhang, Wenxiang
    Jia, Mingjun
    ENERGY & FUELS, 2010, 24 (07) : 3810 - 3816
  • [50] Kinetic mechanism of transesterification of vegetable oil with supercritical methanol for Biodiesel production
    Alenezi, R.
    Al-Anzi, B.
    JOURNAL OF ENGINEERING RESEARCH, 2013, 1 (01): : 81 - 96