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A novel photo-thermal chemical looping water splitting technology to achieve efficient and stable hydrogen production under mild condition

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  • Zhong, Mingxuan
  • Wang, Chenxuanzi
  • Cai, Yongcheng
  • Min, Shuting
  • Guo, Yibo
  • Xiao, Bo
  • Xu, Tingting
  • Wang, Xun

Abstract

The high operational temperatures constrain the practical application of chemical looping steam reforming coupled with water splitting (CLSR-WS) technology. Herein, we first propose a novel photo-thermal CLSR-WS technology to lower the temperature by introducing photothermal coupling catalysis. Under light irradiation, abundant oxygen vacancy (VO) generates on the surface of oxygen carriers (OCs), facilitating the migration of lattice oxygen and the adsorption of gaseous reactants during CLSR. This innovation results in an impressive H2 yield of 8.26 mmol/g OC with 98.14 % purity at 550 °C, comprehensively surpassing the traditional benchmark performance at 800 °C. The reduction of temperature leads to the enhancement in syngas yield and H2 purity, together with a cyclic stability. Co-Fe oxides are found as the suitable OCs for this new technology. Benefitting from the reduced energy of VO formation and bandgap, Co-Fe OCs could utilize the longer-wavelength light to generate VO. Our findings offer a pathway for overcoming the high-temperature bottleneck in CLSR-WS and achieving efficient and stable H2 production under moderate conditions.

Suggested Citation

  • Zhong, Mingxuan & Wang, Chenxuanzi & Cai, Yongcheng & Min, Shuting & Guo, Yibo & Xiao, Bo & Xu, Tingting & Wang, Xun, 2025. "A novel photo-thermal chemical looping water splitting technology to achieve efficient and stable hydrogen production under mild condition," Applied Energy, Elsevier, vol. 381(C).
  • Handle: RePEc:eee:appene:v:381:y:2025:i:c:s0306261924025704
    DOI: 10.1016/j.apenergy.2024.125186
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    References listed on IDEAS

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    1. Luo, Ming & Yi, Yang & Wang, Shuzhong & Wang, Zhuliang & Du, Min & Pan, Jianfeng & Wang, Qian, 2018. "Review of hydrogen production using chemical-looping technology," Renewable and Sustainable Energy Reviews, Elsevier, vol. 81(P2), pages 3186-3214.
    2. Talebi, Parisa & Kistanov, Andrey A. & Rani, Ekta & Singh, Harishchandra & Pankratov, Vladimir & Pankratova, Viktorija & King, Graham & Huttula, Marko & Cao, Wei, 2022. "Unveiling the role of carbonate in nickel-based plasmonic core@shell hybrid nanostructure for photocatalytic water splitting," Applied Energy, Elsevier, vol. 322(C).
    3. Landong Li & Junqing Yan & Tuo Wang & Zhi-Jian Zhao & Jian Zhang & Jinlong Gong & Naijia Guan, 2015. "Sub-10 nm rutile titanium dioxide nanoparticles for efficient visible-light-driven photocatalytic hydrogen production," Nature Communications, Nature, vol. 6(1), pages 1-10, May.
    4. Qiu, Yu & Zhang, Shuai & Cui, Dongxu & Li, Min & Zeng, Jimin & Zeng, Dewang & Xiao, Rui, 2019. "Enhanced hydrogen production performance at intermediate temperatures through the synergistic effects of binary oxygen carriers," Applied Energy, Elsevier, vol. 252(C), pages 1-1.
    5. Wang, Xun & Fu, Genshen & Xiao, Bo & Xu, Tingting, 2022. "Optimization of nickel-iron bimetallic oxides for coproduction of hydrogen and syngas in chemical looping reforming with water splitting process," Energy, Elsevier, vol. 246(C).
    6. Chen, Guanyi & Dong, Xiaoshan & Yan, Beibei & Li, Jian & Yoshikawa, Kunio & Jiao, Liguo, 2022. "Photothermal steam reforming: A novel method for tar elimination in biomass gasification," Applied Energy, Elsevier, vol. 305(C).
    7. Zhang, Yanwei & Zhu, Qiaoqiao & Lin, Xiangdong & Xu, Zemin & Liu, Jianbo & Wang, Zhihua & Zhou, Junhu & Cen, Kefa, 2013. "A novel thermochemical cycle for the dissociation of CO2 and H2O using sustainable energy sources," Applied Energy, Elsevier, vol. 108(C), pages 1-7.
    8. Mao, Yanpeng & Gao, Yibo & Dong, Wei & Wu, Han & Song, Zhanlong & Zhao, Xiqiang & Sun, Jing & Wang, Wenlong, 2020. "Hydrogen production via a two-step water splitting thermochemical cycle based on metal oxide – A review," Applied Energy, Elsevier, vol. 267(C).
    9. Yaguang Li & Xianhua Bai & Dachao Yuan & Chenyang Yu & Xingyuan San & Yunna Guo & Liqiang Zhang & Jinhua Ye, 2023. "Cu-based high-entropy two-dimensional oxide as stable and active photothermal catalyst," Nature Communications, Nature, vol. 14(1), pages 1-10, December.
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