Comparative Life Cycle Assessment of Sustainable Aviation Fuel Production from Different Biomasses

被引:2
作者
D'Ascenzo, Fabrizio [1 ]
Vinci, Giuliana [1 ]
Savastano, Marco [1 ]
Amici, Aurora [2 ]
Ruggeri, Marco [1 ]
机构
[1] Sapienza Univ Rome, Dept Management, Via Castro Laurenziano 9, I-00161 Rome, Italy
[2] SACE SpA, Piazza Poli 37-42, I-00187 Rome, Italy
关键词
sustainable aviation fuels; life cycle assessment; hard-to-abate sector; biomasses; JATROPHA-CURCAS; OIL; JET; BIODIESEL; EMISSIONS; SOYBEANS;
D O I
10.3390/su16166875
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The aviation sector makes up 11% of all transportation emissions and is considered a "hard to abate" sector since, due to the long distances to be traveled, opportunities for electrification are rather limited. Therefore, since there are no alternatives to fuels, Sustainable Aviation Fuels (SAFs), or fuels produced from biomass, have recently been developed to reduce climate-changing emissions in the aviation sector. Using Life Cycle Assessment, this research evaluated the environmental compatibility of different SAF production routes from seven biomasses: four food feedstocks (Soybean, Palm, Rapeseed, and Camelina), one non-food feedstock (Jatropha curcas L.), and two wastes (Waste Cooking Oil, or WCO, and Tallow). The evaluation was carried out using SimaPro 9.5 software. The results showed that the two potentially most favorable options could be Camelina and Palma, as they show minimal environmental impacts in 4 and 7 out of 18 impact categories, respectively. Soybean, on the other hand, appears to be the least sustainable precursor. Considering GWP, SAF production could reduce the values compared to fossil fuel by 2.8-3.6 times (WCO), 1.27-1.66 times (Tallow), 4.6-5.8 times (Palm), 3.4-4.3 times (Jatropha), 1.05-1.32 times (Rapeseed), and 4.36-5.5 times (Camelina), demonstrating the good environmental impact of these pathways. Finally, the sensitivity analysis showed that SAF production from waste could be an environmentally friendly option, with rather low environmental impacts, in the range of 5.13 g CO2 eq/MJ for Tallow and 3.12 g CO2 eq/MJ for WCO. However, some of the energy would have to come from sustainable energy carriers such as biomethane and renewable sources such as photovoltaic energy.
引用
收藏
页数:21
相关论文
共 73 条
  • [21] AGRIBALYSE (R), the French LCI Database for agricultural products: high quality data for producers and environmental labelling
    Colomb, Vincent
    Amar, Samy Ait
    Mens, Claudine Basset
    Gac, Armelle
    Gaillard, Gerard
    Koch, Peter
    Mousset, Jerome
    Salou, Thibault
    Tailleur, Aurelie
    van der Werf, Hays M. G.
    [J]. OCL-OILSEEDS AND FATS CROPS AND LIPIDS, 2015, 22 (01)
  • [22] ASSIMILATE DISTRIBUTION IN SOYBEANS AS AFFECTED BY PHOTOPERIOD DURING SEED DEVELOPMENT
    CURE, JD
    PATTERSON, RP
    RAPER, CD
    JACKSON, WA
    [J]. CROP SCIENCE, 1982, 22 (06) : 1245 - 1250
  • [23] Production of Sustainable Aviation Fuels from Lignocellulosic Residues in Brazil through Hydrothermal Liquefaction: Techno-Economic and Environmental Assessments
    Deuber, Raquel de Souza
    Bressanin, Jessica Marcon
    Fernandes, Daniel Santos
    Guimaraes, Henrique Real
    Chagas, Mateus Ferreira
    Bonomi, Antonio
    Fregolente, Leonardo Vasconcelos
    Watanabe, Marcos Djun Barbosa
    [J]. ENERGIES, 2023, 16 (06)
  • [24] European Commission, 2020, SUSTAINABLE AVIATION
  • [25] European Commission, 2024, Reducing Emissions from Aviation
  • [26] European Union Aviation Safety Agency (EASA), 2022, European Aviation Environmental Report
  • [27] Eurostat, 2022, Air Transport Statistics
  • [28] Faber J., 2022, POTENTIAL REDUCING A
  • [29] Designing of spiral wound nanofiltration multistage process for oil concentration and solvent recovery from soybean oil/n-hexane miscella
    Firman, L. R.
    Ochoa, N. A.
    Marchese, J.
    Pagliero, C.
    [J]. CHEMICAL ENGINEERING RESEARCH & DESIGN, 2020, 164 : 46 - 58
  • [30] The Introduction of Sustainable Aviation Fuels-A Discussion of Challenges, Options and Alternatives
    Grimme, Wolfgang
    [J]. AEROSPACE, 2023, 10 (03)