Research Trends of Ni-based Catalysts on Steam Reforming of Bio-oils for H2 Production: A Review 


Vol. 29,  No. 3, pp. 163-171, Sep.  2023
10.7464/ksct.2023.29.3.163


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  Abstract

Hydrogen has been gaining a lot of attention as a possible clean energy source that can aid in reaching carbon neutrality. Currently, hydrogen production has relied on the steam reforming of fossil fuels. However, due to the carbon dioxide emissions caused by this process, hydrogen production based on the steam reforming of bio-oil derived from biomass has been proposed as an alternative approach. In order to use this alternative approach efficiently, one of the key issues that must be overcome is that the complexity of bio-oil, which has a large molecular weight and diverse functional groups of hydrocarbons, promotes the catalytic deactivation of nickel-based catalysts. In this review, research efforts to improve nickel-based catalysts for the steam reforming of bio-oil have been discussed in terms of the active phase, support, and promoters. The active phases are involved in activating C-C and C-H bonds of high-molecular-weight hydrocarbons, and noble and transition metals can be utilized. In terms of the support and promoters, the catalytic deactivation of Ni-based catalysts can be inhibited by utilizing reactive lattice oxygen for support or by suppressing the acidity. The development of active and stable Ni-based reforming catalysts plays a critical role in clean hydrogen production based on bio-oils.

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  Cite this article

[IEEE Style]

D. H. Lee, H. M. Seo, Y. H. Song, J. Lee, "Research Trends of Ni-based Catalysts on Steam Reforming of Bio-oils for H2 Production: A Review," Clean Technology, vol. 29, no. 3, pp. 163-171, 2023. DOI: 10.7464/ksct.2023.29.3.163.

[ACM Style]

Da Hae Lee, Hyeon Myeong Seo, Yun Ha Song, and Jaekyoung Lee. 2023. Research Trends of Ni-based Catalysts on Steam Reforming of Bio-oils for H2 Production: A Review. Clean Technology, 29, 3, (2023), 163-171. DOI: 10.7464/ksct.2023.29.3.163.