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Strategic assessment of sustainable aviation fuel production technologies: Yield improvement and cost reduction opportunities

机译:可持续航空燃料生产技术的战略评估:产量提高和降低成本机会

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The aviation industry has been studying strategies to produce sustainable aviation fuels (SAF) for over ten years. Our objective is to conduct detailed techno-economic analyses (TEA) of six SAF production technologies and to develop a simplified cost estimation method. Triglyceride based Hydroprocessed esters and fatty acids (HEFA) was compared against five lignocellulose-based technologies using standardized criteria. TEA was conducted to determine minimum fuel selling price (MFSP). The base case annual product capacity was fixed at 60 million liters of total fuel, for which SAF MFSPs ranged from 0.88 to 3.86 $ IT1 of fuel. Triglyceride-based HEFA had the best economic performance. Although triglycerides are more expensive than lignocellulose, HEFA is still a very competitive technology due to its high fuel yield (86-91% of feedstock) and low MFSP. Lignocellulosic-based technologies have lower fuel yields (9-23% of feedstock) due to high oxygen content of initial feedstock, resulting in higher fuel cost per unit of fuel. In order to reach a market fuel price, SAF yields from lignocellulosic materials needs to achieve an estimated value of 60%. Such yields are only possible if carbon efficiencies are close to 100%. Therefore, efforts are needed to avoid the removal of oxygen as CO_2. Based on these considerations, a new scheme is proposed for SAF production that could result in yields near those needed to achieve cost targets. This proposed integrated biomass/natural gas hybridized concepts to produce inexpensive SAFs should be thoroughly investigated in future work.
机译:航空工业一直在研究生产可持续航空燃料(SAF)超过十年的策略。我们的目标是开展六种SAF生产技术的详细技术经济分析(茶),并开发简化的成本估算方法。使用标准化标准比较基于甘油三酯的加氢处理酯和脂肪酸(HEFA)。进行茶以确定最低燃料价格(MFSP)。基本案例的年产能固定在6000万升的总燃料中,SAF MFSPS从0.88到3.86美元的燃料。基于甘油三酯的HEFA具有最好的经济性能。虽然甘油三酯比木质纤维素更昂贵,但由于其高燃料产量(占原料86-91%)和低MFSP,HEFA仍然是一个非常有竞争力的技术。由于初始原料的高氧含量,基于木质纤维素的技术具有较低的燃料产量(9-23%的原料),导致每单位燃料燃料成本更高。为了达到市场燃料价格,木质纤维素材料的SAF产量需要达到60%的估计值。只有碳效率接近100%,才能才有这种产率。因此,需要努力以避免将氧气作为CO_2移除。基于这些考虑,提出了一种新的计划,可以为萨维制作产生,这可能导致达到成本目标所需的收益率。这促进的综合生物质/天然气杂交概念将在未来的工作中彻底调查生产廉价的SAF。

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