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The Co-Optimization of Sustainable Aviation Fuel: Cost, Emissions, and Performance

机译:可持续航空燃料的共同优化:成本,排放和性能

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The combustion of petroleum-based fuels contributes to increases in atmospheric CO_2, contributing to climate change. As other sectors electrify, current battery technology makes this impractical for the aviation industry. The fastest pathway to reducing the carbon contributions of aviation is to create low or no net carbon-emitting drop-in petroleum alternatives. This research explores 3 potential sorghum derived jet fuel molecules from 4 different production routes, hydro-processed esters and fatty acids (HEFA), and Jet A, to identify how blends including these fuels could offer improved performance (MJ/kg, MJ/L) and improved emissions (gCO2/MJ) while minimizing costs. Different applications will value each target metric differently. This research utilizes the Jet Fuel Blend Optimizer (JudO) to create a 4-dimensional Pareto front across potential solutions. The molecules considered will not offer reduced cost compared to conventional jet fuel (Jet A), but they can be utilized to create blends with higher specific energy, greater energy density, and reduced greenhouse gas emissions. Considerations including carbon credits, the sale of byproducts, and the valuation of improved performance will make the proposed molecules more commercially viable. At the lowest region of GHG solutions, coupled with equivalent LCFS approximations, JudO determined blends that could achieve as high as 69% overall carbon reductions at a premium of $0.34/L.
机译:石油基燃料的燃烧有助于增加大气CO_2,有助于气候变化。随着其他电路电流,电流电池技术对航空工业表示不切实际。减少航空碳贡献的最快途径是产生低或没有净碳发射的石油替代品。本研究探讨了来自4种不同生产路线,水加工酯和脂肪酸(Hefa)和喷射A的潜在高粱衍生的燃料分子,以确定包括这些燃料的混合物如何提供改善的性能(MJ / kg,MJ / L. )和改善排放(GCO2 / MJ),同时最大限度地降低成本。不同的应用程序将不同地归视每个目标度量。该研究利用喷气燃料混合优化器(柔道)在潜在的解决方案中创建4维帕累托前线。与传统的喷射燃料(喷射A)相比,考虑的分子不会提供降低成本,但它们可用于产生具有更高特异性,更高能量密度和降低温室气体排放的混合物。在内的考虑因素包括碳信用,副产品销售以及改进性能的估值将使提出的分子更加可行。在温室气体解决方案的最低区域,加上等效的LCFS近似,柔道确定的混合物可以达到69%的总碳减少,以0.34 / L的溢价。

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