Bio-jet fuel range in biofuels derived from hydroconversion of palm olein over Ni/zeolite catalysts and freezing point of biofuels/Jet A-1 blends

Author:

Chintakanan Pachara,Vitidsant Tharapong,Reubroycharoen Prasert,Kuchonthara Prapan,Kida TetsuyaORCID,Hinchiranan Napida

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference48 articles.

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2. International Air Transport Association. Annual Review 2019, https://www.iata.org/contentassets/c81222d96c9a4e0bb4ff6ced0126f0bb/iata-annual-review-2019.pdf/; 2020 [accessed 7 September 2020].

3. International Renewable Energy Agency (IRENA). Biofuels for Aviation: Technology Brief. https://www.irena.org/publications/2017/Feb/Biofuels-for-aviation-Technology-brief; 2020 [accessed 7 September 2020].

4. Bio-jet fuel conversion technologies;Wang;Renew Sust Energy Rev,2016

5. Maximizing bio-jet fuel production from triglyceride: Importance of the hydrocracking catalyst and separate deoxygenation/hydrocracking steps;Kim;ACS Catal,2017

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