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May 6, 2026Journal of Chemistry0 citationsOpen Access

Catalyst Design–Performance Relationships for the Selective Catalytic Hydrogenation of Furfural to Furfuryl Alcohol

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TBThapelo BaoketsiNMNyasha MakuveFNFlorence Nareetsile

Key Points

  • To analyze recent advancements in catalyst design for the selective hydrogenation of furfural to furfuryl alcohol.
  • Reviewed recent literature on catalytic hydrogenation of furfural.
  • Examined both heterogeneous and homogeneous catalytic systems.
  • Discussed the roles of metals like Pd and Ni in catalysis.
  • Identified key factors affecting catalytic activity and selectivity.
  • Emphasized the importance of catalyst design in biomass valorization.
  • Evaluated environmental considerations of different catalytic approaches.

Abstract

The transition from fossil resources to renewable biomass for fuel and chemical production requires efficient catalytic technologies. Furfural (FF), a key platform molecule derived from hemicellulose, serves as a crucial bridge between biomass and value‐added chemicals. Selective hydrogenation of FF to furfuryl alcohol (FA) is of great industrial importance, as FA is a primary resin precursor and a versatile chemical intermediate. This review provides an essential analysis of recent advancements in the catalytic hydrogenation of FF to FA, with emphasis on catalyst design. We systematically examine both heterogeneous and homogeneous catalytic systems, discussing the roles of metals such as Pd and Ni, as well as ligand environments, in governing catalytic activity, selectivity, and stability. In addition, the practical and environmental considerations of different catalytic approaches are evaluated. Drawing on the literature, this review aims to guide the future development of more efficient, selective, and sustainable catalysts for this transformation, with an emphasis on the unique role of specially designed catalysts in biomass valorization.

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Cite This Study

Baoketsi et al. (2026) studied this question.

synapsesocial.com/papers/69fa8e3804f884e66b5307dchttps://doi.org/10.1155/joch/1425745
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