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March 3, 2026Environmental Chemistry LettersOpen Access

Aviation-fuel-grade aromatic–cycloalkane blends via isoeugenol hydrodeoxygenation using nickel aluminate spinel catalyst

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Authors

JAJ.L. AyastuyDMDmitry Yu. MurzinDGD. Gallego-García

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Overview

Observational analysis reveals effective hydrocarbon blend production in aviation fuels, suggesting a renewable pathway for emissions reduction.

Key Points

  • Aromatic and cycloalkane yields reached 16 wt% and 30 wt% respectively, under optimized conditions.
  • Elevated temperatures enhance cycloalkane formation while hydrogen pressure influences intermediate conversion.
  • Batch reactor analysis utilized a nickel aluminate spinel catalyst synthesized through a one-pot sol-gel method.
  • This catalytic system offers a practical approach for lignin valorization and reducing greenhouse gases in aviation.

Cite This Study

Ayastuy et al. (2026) studied this question.

synapsesocial.com/papers/69a75cb2c6e9836116a25c5chttps://doi.org/10.1007/s10311-026-01896-1
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