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October 3, 2025Catalysts9 citationsOpen Access

Catalytic Biomass Conversion into Fuels and Materials: Sustainable Technologies and Applications

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FNFrancesco NocitoDDDiana DaraseliaADAngela Dibenedetto

Key Points

  • Sustainable processes for converting biomass into fuels show promise despite challenges in feedstock composition.
  • Recent advances in heterogeneous catalysts can enhance efficiency and reduce costs in biomass conversion.
  • Optimized catalytic systems are essential for maintaining activity and resistance to deactivation during conversion.
  • The study of multifunctional systems is gaining traction, emphasizing innovation in sustainable biomass technologies.

Abstract

The production of fuels and materials from residual biomass through sustainable processes is one of the most challenging goals for science and technology. Such development is highly ambitious because of the complex composition of the feedstock (lipidic and lignocellulosic). To succeed, biomass conversion technologies must be able to compete economically with technologies based on fossil carbon. The use of specific and more available catalysts combined with improved reaction conditions can significantly reduce overall industrial costs and maximize efficiency. The synthesis and application of optimized catalytic systems are essential to modulate their activity, ensuring at the same time a high resistance to deactivation. For this reason, the study of multifunctional systems is gaining increasing interest alongside new industrial technologies. Here, we review significant recent advances in sustainable catalytic biomass conversion using emerging heterogeneous catalysts.

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Cite This Study

Nocito et al. (2025) studied this question.

synapsesocial.com/papers/68e0450fa99c246f578b3e0ehttps://doi.org/10.3390/catal15100948
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