Role of Zr loading into In2O3 catalysts for the direct conversion of CO2/CO mixtures into light olefins

被引:0
|
作者
Portillo, A. [1 ]
Ateka, A. [1 ]
Erena, J. [1 ]
Bilbao, J. [1 ]
Aguayo, A. T. [1 ]
机构
[1] Univ Basque Country, Dept Chem Engn, UPV, EHU, POB 644, Bilbao 48080, Spain
基金
欧盟地平线“2020”;
关键词
CO2; valorization; Syngas; In2O3-ZrO2; catalyst; Olefins; Oxygenates; Catalyst deactivation; METHANOL SYNTHESIS; DIMETHYL ETHER; HYDROGENATION; SYNGAS; OXIDE; SAPO-34; GASIFICATION; SELECTIVITY; MECHANISM; ZIRCONIUM;
D O I
10.1016/j.jenvman.2022.115329
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The effect of the ZrO2 content on the performance (activity, selectivity, stability) of In2O3-ZrO2 catalyst has been studied on the hydrogenation of CO2/CO mixtures. This effect is a key feature for the viability of using In2O3-ZrO2/SAPO-34 tandem catalysts for the direct conversion of CO2 and syngas into olefins via oxygenates as intermediates. The interest of co-feeding syngas together with CO2 resides in jointly valorizing syngas derived from biomass or wastes (via gasification) and supplying the required H-2. The experiments of methanol synthesis and direct synthesis of olefins, with In2O3-ZrO2 and In2O3-ZrO2/SAPO-34 catalysts, respectively, have been carried out under the appropriate conditions for the direct olefins synthesis (400 degrees C, 30 bar, H-2/COX ratio = 3) in an isothermal fixed bed reactor at low space time values (kinetic conditions) to evaluate the behavior and deactivation of the catalysts. The Zr/In ratio of 1/2 favors the conversion of CO2 and COX, attaining good oxygenates selectivity, and prevents the sintering attributable to the over-reduction of the In2O3 (more significant for syngas feeds). The improvement is more remarkable in the direct olefins synthesis, where the thermodynamic equilibrium of methanol formation is displaced, and methanation suppressed (in a greater extent for feeds with high CO content). With the In2O3-ZrO2/SAPO-34 tandem catalysts, the conversion of COx almost 5 folds respect oxygenates synthesis with In2O3-ZrO2 catalyst, meaning the yield of the target products boosts from similar to 0.5% of oxygenates to > 3% of olefins (selectivity > 70%) for mixtures of CO2/COX of 0.5, where an optimum performance has been obtained.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] CO2 Hydrogenation to Light Olefins Over In2O3/SAPO-34 and Fe-Co/K-Al2O3 Composite Catalyst
    Thanapha Numpilai
    Supitchaya Kahadit
    Thongthai Witoon
    Bamidele Victor Ayodele
    Chin Kui Cheng
    Nuchanart Siri-Nguan
    Thana Sornchamni
    Chularat Wattanakit
    Metta Chareonpanich
    Jumras Limtrakul
    [J]. Topics in Catalysis, 2021, 64 : 316 - 327
  • [22] Modeling the direct solar conversion of CO2 to CO and O2
    Price, RJ
    Morse, DA
    Hardy, SL
    Fletcher, TH
    Hill, SC
    Jensen, RJ
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2004, 43 (10) : 2446 - 2453
  • [23] Optimization of synthesis condition for CO2 hydrogenation to light olefins over In2O3 admixed with SAPO-34
    Numpilai, Thanapa
    Wattanakit, Chularat
    Chareonpanich, Metta
    Limtrakul, Jumras
    Witoon, Thongthai
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2019, 180 : 511 - 523
  • [24] Highly active Fe-Co-Zn/K-Al2O3 catalysts for CO2 hydrogenation to light olefins
    Witoon, Thongthai
    Chaipraditgul, Nawapat
    Numpilai, Thanapha
    Lapkeatseree, Vittawin
    Ayodele, Bamidele Victor
    Cheng, Chin Kui
    Siri-Nguan, Nuchanart
    Sornchamni, Thana
    Limtrakul, Jumras
    [J]. CHEMICAL ENGINEERING SCIENCE, 2021, 233
  • [25] Effect of Zeolite Topology and Reactor Configuration on the Direct Conversion of CO2 to Light Olefins and Aromatics
    Ramirez, Adrian
    Chowdhury, Abhishek Dutta
    Dokania, Abhay
    Cnudde, Pieter
    Caglapn, Mustafa
    Yarulina, Irina
    Abou-Hamad, Edy
    Gevers, Lieven
    Ould-Chikh, Samy
    De Wispelaere, Kristof
    van Speybroeck, Veronique
    Gascon, Jorge
    [J]. ACS CATALYSIS, 2019, 9 (07) : 6320 - 6334
  • [26] Coated sulfated zirconia/SAPO-34 for the direct conversion of CO2 to light olefins
    Ramirez, Adrian
    Chowdhury, Abhishek Dutta
    Caglayan, Mustafa
    Rodriguez-Gomez, Alberto
    Wehbe, Nimer
    Abou-Hamad, Edy
    Gevers, Lieven
    Ould-Chikh, Samy
    Gascon, Jorge
    [J]. CATALYSIS SCIENCE & TECHNOLOGY, 2020, 10 (05) : 1507 - 1517
  • [27] Effective conversion of CO2 into light olefins along with generation of low amounts of CO
    Zhang, Wenyu
    Wang, Sen
    Guo, Shujia
    Qin, Zhangfeng
    Dong, Mei
    Wang, Jianguo
    Fan, Weibin
    [J]. JOURNAL OF CATALYSIS, 2022, 413 : 923 - 933
  • [28] Temperature switching of product selectivity in CO2 reduction on Cu/ In2O3 catalysts
    Strysovsky, Tomas
    Kajabova, Martina
    Prucek, Robert
    Panacek, Ales
    Simkovicova, Karolina
    Vajda, Stefan
    Bastl, Zdenek
    Kvitek, Libor
    [J]. JOURNAL OF CO2 UTILIZATION, 2023, 77
  • [29] Progresses in CO2 hydrogenation to methanol over In2O3 supported Pd catalysts
    Liu, Changjun
    Rui, Ning
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 254
  • [30] In2O3 crystal phase variation on In2O3/Co3O4 to boost CO2 hydrogenation to methanol
    Lin, Daifeng
    Shen, Qinhui
    Tang, YanXi
    Zhang, Minghan
    Li, Wei
    Zhuo, Qian
    Yang, Wenqing
    Luo, Yongjin
    Qian, Qingrong
    Chen, Qinghua
    [J]. MOLECULAR CATALYSIS, 2024, 557