Cui Qiang, Lei Yi-Lin, Jia Zi-Ke, Wang Yu, Li Ye
School of Economics and Management, Southeast University, Nanjing, China.
School of Economics and Management, Civil Aviation Flight University of China, Guanghan, China.
iScience. 2024 May 28;27(6):110126. doi: 10.1016/j.isci.2024.110126. eCollection 2024 Jun 21.
The aviation industry's emissions have had a significant impact on global climate change. This study focuses on carbon emission trading schemes, sustainable aviation fuels (SAFs), and hydrogen energy, as vital means for the aviation industry to reduce emissions. To evaluate the climate effects of global routes under four scenarios (24 sub-scenarios) until 2100, this study proposes the Aviation-FAIR (Aviation-Finite Amplitude Impulse Response) method. The findings reveal that while CO emissions and concentrations are significant, other emissions, such as NO and CH, have a greater effective radiative forcing (ERF) and contribute significantly to climate change. Moreover, SAFs are more effective in mitigating airline pollutant emissions than relying solely on carbon trading schemes. The effectiveness of hydrogen fuel cells may be hindered by technical limitations compared to hydrogen turbine engines. The findings of this study provide reference for the global aviation industry to adopt emission reduction measures.
航空业的排放对全球气候变化产生了重大影响。本研究聚焦于碳排放交易计划、可持续航空燃料(SAF)和氢能,将其作为航空业减少排放的重要手段。为评估到2100年四种情景(24个子情景)下全球航线的气候影响,本研究提出了航空-公平(Aviation-Finite Amplitude Impulse Response)方法。研究结果表明,虽然一氧化碳排放和浓度显著,但其他排放物,如一氧化氮和甲烷,具有更大的有效辐射强迫(ERF),并对气候变化有显著贡献。此外,与仅依靠碳交易计划相比,可持续航空燃料在减轻航空公司污染物排放方面更有效。与氢涡轮发动机相比,氢燃料电池的有效性可能会受到技术限制的阻碍。本研究结果为全球航空业采取减排措施提供了参考。