Department of Chemical and Environmental Engineering, Yale University, New Haven, Connecticut 06511, United States.
Center for Industrial Ecology, School of the Environment, Yale University, New Haven, Connecticut 06511, United States.
Environ Sci Technol. 2023 Jul 4;57(26):9627-9638. doi: 10.1021/acs.est.2c06286. Epub 2023 Jun 23.
The aviation industry faces a formidable challenge to cap its climate impact in the face of continued growth in passengers and freight. Liquid hydrogen (LH) is one of the alternative jet fuels under consideration as it does not produce carbon dioxide upon combustion. We conducted a well-to-wake life cycle assessment of CO emissions and non-CO climate change impacts per passenger-distance for 17 different hydrogen production routes, as well as conventional jet fuel and biofuels. Six other environmental and health impact categories were also considered. The Boeing 787-800 was used as the reference aircraft, and a range of flight distances were explored. Contrail cirrus contributes around 81 ± 31% of the combustion climate impacts for LH, compared to 32 ± 7% for conventional jet fuel, showing that research is needed to reduce uncertainty in the case of LH. The life cycle impacts of the two dominant commercial LH pathways are on average 8 and 121% larger than conventional jet fuel. Some novel LH pathways do show considerable potential for life cycle climate impact reductions versus conventional fuel (up to -205 ± 78%). LH from renewable energy is not climate neutral, though, at best -67 ± 10% compared to conventional over the life cycle.
航空业面临着严峻的挑战,需要在乘客和货运量持续增长的情况下限制其对气候的影响。液态氢(LH)是正在考虑的替代喷气燃料之一,因为它在燃烧时不会产生二氧化碳。我们对 17 种不同的氢气生产路线以及传统喷气燃料和生物燃料进行了 CO 排放和每位乘客公里的非 CO 气候变化影响的全生命周期评估。还考虑了其他六个环境和健康影响类别。波音 787-800 被用作参考飞机,并探索了一系列飞行距离。与传统喷气燃料相比,LH 的燃烧气候影响中约有 81 ± 31%来自尾迹卷云,表明需要研究减少 LH 情况下的不确定性。两种主要商业 LH 途径的生命周期影响平均比传统喷气燃料大 8 倍和 121%。一些新型 LH 途径在生命周期气候影响方面确实显示出相对于传统燃料的巨大潜力(最多可减少-205 ± 78%)。然而,来自可再生能源的 LH 在生命周期内与传统燃料相比并非完全中立,最佳情况下仅为-67 ± 10%。