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Efficient solar hydrogen production by photocatalytic water splitting: From fundamental study to pilot demonstration
Authors:Dengwei Jing  Liejin GuoLiang Zhao  Ximin ZhangHuan Liu  Mingtao LiShaohua Shen  Guanjie LiuXiaowei Hu  Xianghui ZhangKai Zhang  Lijin MaPenghui Guo
Affiliation:State Key Lab of Multiphase Flow in Power Engineering, Xi''an Jiaotong University, 28 Xianning West Road, Xi''an 710049, PR China
Abstract:Photocatalytic water splitting with solar light is one of the most promising technologies for solar hydrogen production. From a systematic point of view, whether it is photocatalyst and reaction system development or the reactor-related design, the essentials could be summarized as: photon transfer limitations and mass transfer limitations (in the case of liquid phase reactions). Optimization of these two issues are therefore given special attention throughout our study. In this review, the state of the art for the research of photocatalytic hydrogen production, both outcomes and challenges in this field, were briefly reviewed. Research progress of our lab, from fundamental study of photocatalyst preparation to reactor configuration and pilot level demonstration, were introduced, showing the complete process of our effort for this technology to be economic viable in the near future. Our systematic and continuous study in this field lead to the development of a Compound Parabolic Concentrator (CPC) based photocatalytic hydrogen production solar rector for the first time. We have demonstrated the feasibility for efficient photocatalytic hydrogen production under direct solar light. The exiting challenges and difficulties for this technology to proceed from successful laboratory photocatalysis set-up up to an industrially relevant scale are also proposed. These issues have been the object of our research and would also be the direction of our study in future.
Keywords:Solar hydrogen  Photocatalytic  Energy conversion  Water splitting
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