Sustainability of Biojet Fuel
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-8783-2_10
Reference109 articles.
1. Ağbulut Ü, Sirohi R, Lichtfouse E, Chen WH, Len C, Show PL, Le AT, Nguyen XP, Hoang AT (2023) Microalgae bio-oil production through pyrolysis and hydrothermal liquefaction: mechanism and characteristics. Bioresour Technol 376:128860
2. Agusdinata DB, Zhao F, Ileleji K, DeLaurentis D (2011) Life cycle assessment of potential biojet fuel production in the United States. Environ Sci Technol 45(21):9133–9143
3. Ail SS, Dasappa S (2016) Biomass to liquid transportation fuel via Fischer Tropsch synthesis–technology review and current scenario. Renew Sust Energ Rev 58:267–286
4. Alalwan HA, Alminshid AH, Aljaafari HA (2019) Promising evolution of biofuel generations. Subject review. Renew Energy Focus 28:127–139
5. Alcazar-Ruiz A, Ortiz ML, Dorado F, Sanchez-Silva L (2022) Gasification versus fast pyrolysis bio-oil production: a life cycle assessment. J Clean Prod 336:130373
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