Efficient hydrogenation of diethyl oxalate to mono-ethylene glycol using Cu/SiO2 catalyst

被引:0
|
作者
Gor, Nikhil K. [1 ]
Chinthala, Praveen Kumar [1 ,2 ]
Unnikrishnan, P. [2 ]
Das, Asit [1 ]
Vaidya, Prakash D. [3 ]
机构
[1] Inst Chem Technol, Dept Chem Engn, Mumbai, India
[2] Reliance Ind Ltd, Res & Dev Refining, Jamnagar 561142, Gujarat, India
[3] Inst Chem Technol, Chem Engn Dept, Nathalal Parekh Marg,Matunga, Mumbai 400019, India
关键词
Diethyl oxalate; Hydrogen; Hydrogenation; Mono-ethylene glycol; Cu/SiO; 2; catalyst; SUPPORTED COPPER-CATALYSTS; DIMETHYL OXALATE; STRUCTURE EVOLUTION; CU/HMS CATALYSTS; GUERBET REACTION; HMS CATALYST; PERFORMANCE; AMMONIA; COAL;
D O I
10.1016/j.jics.2024.101136
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The economics of the hydrogenation process is driven by the cost of hydrogen (H2) and the amount of H2 required for the process. Diethyl oxalate (DEO) hydrogenation to mono-ethylene glycol (MEG) is hitherto extensively studied at a very high H2 to diethyl oxalate (H2/DEO) ratio. The objective of this study was to investigate DEO to MEG hydrogenation reaction at significantly lower values of H2/DEO ratio. The Cu/SiO2 catalyst synthesized by the deposition-precipitation method was used in the present work. The characterization of this catalyst suggested high values of the surface area and pore volume and small pore diameter. The catalyst comprised well-dispersed and nano-sized particles. Upon reduction, the presence of Cu+ and Cu0 sites which are necessary for the reaction, was evident. The parametric study was performed at optimized conditions with an H2/ DEO ratio as low as 25. DEO conversion was 84% and MEG selectivity was 62%.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Preparation and characterization of Cu/SiO2 catalyst and its catalytic activity for hydrogenation of diethyl oxalate to ethylene glycol
    Wang Baowei
    Zhang Xu
    Xu Qian
    Xu Genhui
    CHINESE JOURNAL OF CATALYSIS, 2008, 29 (03) : 275 - 280
  • [2] Efficient tuning of surface copper species of Cu/SiO2 catalyst for hydrogenation of dimethyl oxalate to ethylene glycol
    Zhao, Yujun
    Li, Siming
    Wang, Yue
    Shan, Bin
    Zhang, Jian
    Wang, Shengping
    Ma, Xinbin
    CHEMICAL ENGINEERING JOURNAL, 2017, 313 : 759 - 768
  • [4] In situ IR study of dimethyl oxalate hydrogenation to ethylene glycol over Cu/SiO2 catalyst
    Hui, Shengguo
    Zhang, Bo
    Zhang, Suhua
    Li, Wei
    JOURNAL OF NATURAL GAS CHEMISTRY, 2012, 21 (06): : 753 - 758
  • [5] Hydrogenation of dimethyl oxalate to ethylene glycol over Cu/SiO2 catalysts
    Zhu, Yingying
    Wang, Shurong
    2011 INTERNATIONAL CONFERENCE ON ELECTRONICS, COMMUNICATIONS AND CONTROL (ICECC), 2011, : 4344 - 4347
  • [6] Highly selective and stable Cu/SiO2 catalysts prepared with a green method for hydrogenation of diethyl oxalate into ethylene glycol
    Ding, Jie
    Popa, Tiberiu
    Tang, Jinke
    Gasem, Khaled A. M.
    Fan, Maohong
    Zhong, Qin
    APPLIED CATALYSIS B-ENVIRONMENTAL, 2017, 209 : 530 - 542
  • [7] The effect of the amount of ammonia on the Cu~0/Cu~+ ratio of Cu/SiO2 catalyst for the hydrogenation of dimethyl oxalate to ethylene glycol
    Feng Li
    Chun-Shan Lu
    Xiao-Nian Li
    ChineseChemicalLetters, 2014, 25 (11) : 1461 - 1465
  • [8] Performance enhancement of Cu/SiO2 catalyst for hydrogenation of dimethyl oxalate to ethylene glycol through zinc incorporation
    Wang Qi
    Qiu Ling
    Ding Ding
    Chen Yazhong
    Shi Chengwu
    Cui Peng
    Wang Ye
    Zhang Qinghong
    Liu Rong
    Shen Hao
    CATALYSIS COMMUNICATIONS, 2018, 108 : 68 - 72
  • [9] Anchoring Cu Species over SiO2 for Hydrogenation of Dimethyl Oxalate to Ethylene Glycol
    San, Xiaoguang
    Gong, Xiaohui
    Lu, Yiming
    Xu, Juhua
    He, Liming
    Meng, Dan
    Wang, Guosheng
    Qi, Jian
    Jin, Quan
    CATALYSTS, 2022, 12 (11)
  • [10] Effect of Copper Nanoparticles Dispersion on Catalytic Performance of Cu/SiO2 Catalyst for Hydrogenation of Dimethyl Oxalate to Ethylene Glycol
    Zhang, Yajing
    Zheng, Na
    Wang, Kangjun
    Zhang, Sujuan
    Wu, Jing
    JOURNAL OF NANOMATERIALS, 2013, 2013