PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2026

Thermogravimetric investigation of thermal oxidation, kinetics, and synergistic effects on JET A-1 and its blend with a renewable fuel compound

Authors

Galina, Natália Ribeiro
Ávila, Ivonete

Fuel , vol. 406 , Article 137103

ISSN: 00162361

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Citations
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Authors

Abstract

© 2025 Elsevier LtdThis study explores the thermal behavior and volatilization kinetics of JET A-1 aviation kerosene and Farnesane, a sustainable aviation fuel compound, and their blend through thermogravimetric analysis in an oxidative atmosphere. For such, experiments were conducted under a synthetic air atmosphere at three different heating rates (10, 15, and 20 ℃ min−1), and results showed that Farnesane exhibits high thermal stability up to approximately 80 °C, followed by rapid decomposition, whereas JET A-1 starts decomposing at 35 °C and volatilizes gradually until reaching 109 °C. The minimum energy required for the volatilization process of Farnesane to start taking place is about four times greater than that for JET A-1, i.e. 53.72 KJ mol−1 and 12.67 KJ mol−1, respectively. Activation energy of 8.88 KJ mol−1 was found for the Farnesane-JET A-1 blend, which is a lower than that for pure kerosene, thus revealing a beneficial and synergistic effect between them, which should ease the initial stages of fuel vaporization, since it is of paramount relevance for efficient combustion.

Keywords

Farnesane JET A-1 aviation kerosene Sustainable aviation fuel Synergistic effect Thermal behavior

Chemical Engineering (all) (CENG) Fuel Technology (ENER) Energy Engineering and Power Technology (ENER) Organic Chemistry (CHEM)
: Scopus
Last Update: 2026-06-25
: 2-s2.0-105018041383
PII: S0016236125028285