Dehydration of methanol to dimethyl ether in a dual-catalyst system catalytic distillation tower

被引:8
|
作者
Su, Wei-Bin [1 ]
Hwang, Jyh-Haur [1 ]
Huang, Hsun-Yi [1 ]
Chang, Tse-Kuei [1 ]
机构
[1] CPC Corp, Refining & Mfg Res Inst, 217 Min Sheng South Rd, Chiayi 60051, Taiwan
关键词
Dimethyl ether; Catalytic distillation; Dehydration; Tower design; VAPOR-LIQUID-EQUILIBRIA; PRESSURES; MPA;
D O I
10.1016/j.jtice.2015.07.037
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
A novel design of a dimethyl ether (DME) catalytic distillation (CD) tower is explored. Due to the wide boiling range among the reaction mixture components: water, methanol and DME, a dual-catalyst system CD tower is designed to minimize the tower temperature and catalyst deactivation rate. A DME CD tower model was developed and validated with both VLE data and pilot test data, and the model so obtained agrees with the results published by An et al. The dual-catalyst system CD tower, wherein the upper section of bed is loaded with low temperature catalysts and the lower section of bed is loaded with high temperature catalysts, are arranged such that both catalysts are used at optimum dehydration temperatures and the product DME can still be condensed with normally available cooling water. (C) 2015 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:86 / 90
页数:5
相关论文
共 50 条
  • [31] Synthesis and Catalytic Property of a Zeolite Composite for Preparation of Dimethyl Ether from Methanol Dehydration
    Jiajun Zheng
    Jinghong Ma
    Yan Wang
    Yadong Bai
    Xiwen Zhang
    Ruifeng Li
    Catalysis Letters, 2009, 130 : 672 - 678
  • [32] Effects of temperature and feed composition on catalytic dehydration of methanol to dimethyl ether over γ-alumina
    Raloof, Freshteh
    Taghizadeh, Majid
    Eliassi, Ali
    Yaripour, Fereydoon
    FUEL, 2008, 87 (13-14) : 2967 - 2971
  • [33] Catalytic application of ferrierite nanocrystals in vapour-phase dehydration of methanol to dimethyl ether
    Catizzone, Enrico
    Van Daele, Stijn
    Bianco, Micaela
    Di Michele, Alessandro
    Aloise, Alfredo
    Migliori, Massimo
    Valtchev, Valentin
    Giordano, Girolamo
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2019, 243 : 273 - 282
  • [34] The effect of FER zeolite acid sites in methanol-to-dimethyl-ether catalytic dehydration
    Enrico Catizzone
    Alfredo Aloise
    Massimo Migliori
    Girolamo Giordano
    Journal of Energy Chemistry, 2017, 26 (03) : 406 - 415
  • [35] Synthesis and Catalytic Property of a Zeolite Composite for Preparation of Dimethyl Ether from Methanol Dehydration
    Zheng, Jiajun
    Ma, Jinghong
    Wang, Yan
    Bai, Yadong
    Zhang, Xiwen
    Li, Ruifeng
    CATALYSIS LETTERS, 2009, 130 (3-4) : 672 - 678
  • [36] Catalytic dehydration of methanol to dimethyl ether (DME) over solid-acid catalysts
    Jun, KW
    Lee, HS
    Roh, HS
    Park, SE
    BULLETIN OF THE KOREAN CHEMICAL SOCIETY, 2002, 23 (06) : 803 - 806
  • [37] The Effect of Zeolite Features on the Dehydration Reaction of Methanol to Dimethyl Ether: Catalytic Behaviour and Kinetics
    Catizzone, Enrico
    Giglio, Emanuele
    Migliori, Massimo
    Cozzucoli, Paolo C.
    Giordano, Girolamo
    MATERIALS, 2020, 13 (23) : 1 - 15
  • [38] Effect of ultrasonic irradiation and /or halogenation on the catalytic performance of γ-AlO for methanol dehydration to dimethyl ether
    Sameh M.K.Aboul-Fotouh
    燃料化学学报, 2013, 41 (09) : 1077 - 1084
  • [39] Effect of Reaction Conditions on the Catalytic Dehydration of Methanol to Dimethyl Ether Over a K-modified HZSM-5 Catalyst
    Kim, Sungtak
    Kim, Yong Tae
    Zhang, Chundong
    Kwak, Geunjae
    Jun, Ki-Won
    CATALYSIS LETTERS, 2017, 147 (03) : 792 - 801
  • [40] Promoted catalytic performance of sugarcane bagasse ash supported by γ-alumina as efficient, stable, and ecofriendly catalyst for dehydration of methanol to dimethyl ether
    Said, Abd El-Aziz A.
    Goda, Mohamed N.
    Abd El-Wahab, Mohamed M. M.
    El-Gamal, Nadia O.
    Abd El-Aal, Mohamed
    ASIA-PACIFIC JOURNAL OF CHEMICAL ENGINEERING, 2024, 19 (03)