喷气燃料
玉米秸秆
环境科学
生产(经济)
持续性
航空
化石燃料
汽油
农业工程
生命周期评估
温室气体
过程(计算)
生物燃料
工程类
产量(工程)
燃料效率
原材料
尺寸
经济可行性
煤
环境工程
生物能源
航空燃料
发电
生产力
环境经济学
废物管理
作者
Arpit H. Bhatt,Ling Tao,Yimin Zhang,Sharon L. Smolinski,Eric Tan,Bruno Klein,Matthew R. Wiatrowski,David Quiroz
出处
期刊:Applied Energy
[Elsevier BV]
日期:2026-04-22
卷期号:415: 127894-127894
被引量:4
标识
DOI:10.1016/j.apenergy.2026.127894
摘要
SAF provides a promising approach to aid the rising jet fuel demand from increased travel around the world and reduce the lifecycle emissions from the aviation sector. Although the feasibility of SAF pathways has been demonstrated through economic and environmental metrics quantification, the models used to quantify these variables have a high degree of variability in terms of accuracy and thereby reliability. To understand how to adopt and commercialize SAF, we need to harmonize these process models and assess metrics and technical limitations related to their production technologies. We find the production cost of SAF using hydro processed fatty acids and esters (HEFA), Fischer-Tropsch (FT), and alcohol-to-jet (ATJ) to be $3–$6/gallon gasoline equivalent (gge) and life cycle emissions to be lower than Jet A, except for ATJ using corn grain (≤25%). HEFA utilizing oil feedstocks has the lowest production cost (∼$2.9/gge) and highest jet yield (>150 gge/dry ton), while FT has the largest emission reduction (94%) compared to fossil jet. A unique contribution of this study is a comparative analysis of metrics related to SAF processes across technical, economic, and sustainability aspects. A cross-comparison of these metrics shows HEFA using fats, oils, and grease have the most favorable ratings, while HEFA using algae and ATJ using corn stover have more neutral and unfavorable ratings, respectively. These ratings can be improved by implementing the right combination of practical and technological advancements. • Cross-comparison of technical, economic, and sustainability metrics is quantified. • HEFA (non-algae) has the lowest cost (∼$3/gge) if with low-cost feedstocks. • Fischer-Tropsch has the lowest carbon intensity, estimated at 5.5 g CO 2 e/MJ SAF. • HEFA ranks best but has issues with its feedstock supply. • All pathways except corn grain alcohol-to-jet reduce emissions >50% vs. fossil Jet A.
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