Two-step CO2 and H2O splitting using perovskite-coated ceria foam for enhanced green fuel production in a porous volumetric solar reactor

被引:34
|
作者
Haeussler, Anita [1 ]
Abanades, Stephane [1 ]
Julbe, Anne [2 ]
Jouannaux, Julien [2 ]
Cartoixa, Bruno [3 ]
机构
[1] CNRS PROMES, Proc Mat & Solar Energy Lab, 7 Rue Four Solaire, F-66120 Font Romeu, France
[2] Univ Montpellier, Inst Europeen Membranes, CNRS, ENSCM,UMR 5635,IEM, Pl Eugene Bataillon, F-34095 Montpellier 5, France
[3] ALSYS CTI, 382 Ave Moulinas, F-30340 Salindres, France
关键词
Solar fuel; CO2; valorization; Water-splitting; Perovskite; Ceria foam; Solar energy; Hydrogen-syngas; THERMOCHEMICAL WATER; HYDROGEN-PRODUCTION; SYNGAS PRODUCTION; MN; STRATEGIES; CONVERSION; OPERATION; CYCLE; H-2; SR;
D O I
10.1016/j.jcou.2020.101257
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Solar thermochemical cycles offer a viable option for the production of green synthetic fuels from CO2 and H2O. Two-step cycles using redox materials consist of a high-temperature reduction creating oxygen vacancies, followed by a re-oxidation step with an oxidant gas (CO2 and/or H2O), resulting in CO and/or H-2 production. This study focuses on the thermochemical performance in a solar reactor of a new kind of composite reactive material: reticulated ceria foam with uniform perovskite coating, forming a dual-phase layered heterostructure. La0.5Sr0.5Mn0.9Mg0.1O3 (LSMMg) was selected as perovskite coating due to its high fuel productivity and thermochemical stability upon cycling. The perovskite coating improves the reduction step by increasing the reduction extent reached by the reactive material. The results revealed significant enhancement of oxygen exchange in the dual-phase composite material during reduction compared to individual components. The enhanced reduction extent had a beneficial effect on the oxygen release rate and the total amount of fuel produced by CO2 and H2O splitting, whereas an adverse impact on the peak rate during H-2/CO evolution was noticed. Decreasing the reduction pressure allowed enhancing the non-stoichiometric oxygen extent, while the re-oxidation extent increased with the inlet oxidant molar fraction. With suitable operating conditions (reduction at 0.100 bar and oxidation in 100 % CO2), the LSMMg-coated ceria foam produced a higher amount of fuel but with lower fuel production rate in comparison with pure ceria foam. This study points out the beneficial effects of composite redox materials consisting of LSMMg-coated ceria foam in enhancing the oxygen exchange capacity of ceria for solar fuel production.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] Thermochemical Two-Step CO2 Splitting Using La0.7Sr0.3Mn0.9Cr0.1O3 of Perovskite Oxide for Solar Fuel Production
    Sawaguri, Hiroki
    Gokon, Nobuyuki
    Ito, Naoki
    Bellan, Selvan
    Kodama, Tatsuya
    Cho, Hyun-seok
    INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS (SOLARPACES 2019), 2020, 2303
  • [22] Solar chemical looping reforming of methane combined with isothermal H2O/CO2 splitting using ceria oxygen carrier for syngas production
    Srirat Chuayboon
    Stéphane Abanades
    Sylvain Rodat
    Journal of Energy Chemistry, 2020, 41 (02) : 60 - 72
  • [23] Remarkable performance of microstructured ceria foams for thermochemical splitting of H2O and CO2 in a novel high-temperature solar reactor
    Haeussier, Anita
    Abanades, Stephane
    Julbe, Anne
    Jouannaux, Julien
    Drobek, Martin
    Ayral, Andre
    Cartoixa, Bruno
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2020, 156 (156): : 311 - 323
  • [24] Solar chemical looping reforming of methane combined with isothermal H2O/CO2 splitting using ceria oxygen carrier for syngas production
    Chuayboon, Srirat
    Abanades, Stephane
    Rodat, Sylvain
    JOURNAL OF ENERGY CHEMISTRY, 2020, 41 : 60 - 72
  • [25] Two-step thermochemical looping using modified ceria-based materials for splitting CO2
    Zhao, Baohuai
    Huang, Chunyi
    Ran, Rui
    Wu, Xiaodong
    Weng, Duan
    JOURNAL OF MATERIALS SCIENCE, 2016, 51 (05) : 2299 - 2306
  • [26] Solar driven two-step CH4 reforming and H2O splitting using Al2O3 for Co-production of Al, syngas, and H2
    Bhosale, Rahul R.
    SOLAR ENERGY, 2018, 172 : 232 - 241
  • [27] Two-step thermochemical looping using modified ceria-based materials for splitting CO2
    Baohuai Zhao
    Chunyi Huang
    Rui Ran
    Xiaodong Wu
    Duan Weng
    Journal of Materials Science, 2016, 51 : 2299 - 2306
  • [28] CO2 and H2O conversion to solar fuels via two-step solar thermochemical looping using iron oxide redox pair
    Abanades, Stephane
    Villafan-Vidales, Heidi Isabel
    CHEMICAL ENGINEERING JOURNAL, 2011, 175 : 368 - 375
  • [29] Thermodynamic analysis of isothermal CO2 splitting and CO2-H2O co-splitting for solar fuel production
    Hao, Yong
    Jin, Jian
    Jin, Hongguang
    APPLIED THERMAL ENGINEERING, 2020, 166
  • [30] Two-step thermochemical cycles using fibrous ceria pellets for H2 production and CO2 reduction in packed-bed solar reactors
    Abanades, Stephane
    Haeussler, Anita
    SUSTAINABLE MATERIALS AND TECHNOLOGIES, 2021, 29