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March 7, 2026Clean Technologies3 citationsOpen Access

Catalytic Upgrading of Microalgae-Based Bio-Oils for Sustainable Jet Fuel Production

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BFBruna Thomazinho FrançaFPFilipe ParadelaMMM. Margarida Martins

Key Points

  • This research aims to enhance the quality of bio-oils derived from microalgae through catalytic upgrading processes.
  • Hydrotreatment of microalgal biocrudes from C. vulgaris, T. obliquus, and mixed culture.
  • Application of sulphided CoMo/Al2O3 and Pt/Al2O3 catalysts to upgrade bio-oils.
  • Comparison of upgraded bio-oils' properties with non-catalyzed reactions.
  • Catalytic upgrading significantly improved bio-oil quality compared to non-catalyzed processes.
  • sCoMo yielded higher bio-oil yields and enhanced carbon and hydrogen content than Pt catalyst.
  • The Pt catalyst achieved the highest fraction of components suitable for jet fuel (37.7%).

Abstract

The transition to sustainable energy systems has intensified the search for renewable alternatives to reduce greenhouse gas emissions and reliance on fossil fuels. In this context, microalgae have emerged as a promising third-generation feedstock for biofuel production due to their rapid development, high lipid content, and ability to grow in wastewater without competing with freshwater resources. In this study, the hydrotreatment of biocrudes derived from C. vulgaris, T. obliquus, and a mixed microalgal culture cultivated in domestic wastewater is investigated. Catalytic upgrading was applied using sulphided CoMo/Al2O3 (sCoMo) and Pt/Al2O3 catalysts. The results demonstrated that catalytic upgrading enhanced the upgraded bio-oils’ quality compared to non-catalysed reactions, confirming the crucial role of catalysts in improving bio-oil properties. Compared with the Pt catalyst, sCoMo produced higher yields of upgraded bio-oil, greater enrichment in carbon and hydrogen, and higher heating value (HHV), while effectively enhancing nitrogen and oxygen removal. However, when compared with the non-sulphided CoMo, the sulphiding treatment did not significantly improve denitrogenation and treated oil yields. The highest fraction of components within the jet fuel boiling range (37.7%) was obtained using a Pt catalyst, while the non-catalysed process yielded the lowest (26.6%). In this sense, catalytic upgrading of microalgae-based biocrude represents an important step towards the production of advanced and environmentally sustainable fuels.

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Cite This Study

França et al. (2026) studied this question.

synapsesocial.com/papers/69abc1f65af8044f7a4eb18dhttps://doi.org/10.3390/cleantechnol8020034
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