Cost and emissions pathways towards net-zero climate impacts in aviation
被引:59
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作者:
Dray, Lynnette
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机构:
UCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, EnglandUCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
Dray, Lynnette
[1
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Schafer, Andreas W.
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机构:
UCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, EnglandUCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
Schafer, Andreas W.
[1
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Grobler, Carla
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机构:
MIT, Dept Aeronaut & Astronaut, Lab Aviat & Environm, Cambridge, MA 02139 USAUCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
Grobler, Carla
[2
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Falter, Christoph
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机构:
MIT, Dept Aeronaut & Astronaut, Lab Aviat & Environm, Cambridge, MA 02139 USAUCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
Falter, Christoph
[2
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Allroggen, Florian
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机构:
MIT, Dept Aeronaut & Astronaut, Lab Aviat & Environm, Cambridge, MA 02139 USAUCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
Allroggen, Florian
[2
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Stettler, Marc E. J.
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机构:
Imperial Coll London, Dept Civil & Environm Engn, London, EnglandUCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
Stettler, Marc E. J.
[3
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Barrett, Steven R. H.
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机构:
MIT, Dept Aeronaut & Astronaut, Lab Aviat & Environm, Cambridge, MA 02139 USAUCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
Barrett, Steven R. H.
[2
]
机构:
[1] UCL, Sch Environm Energy & Resources, Air Transportat Syst Lab, London, England
[2] MIT, Dept Aeronaut & Astronaut, Lab Aviat & Environm, Cambridge, MA 02139 USA
SOCIAL COST;
JET FUEL;
CONTRAILS;
TECHNOLOGY;
SYSTEMS;
DIESEL;
D O I:
10.1038/s41558-022-01485-4
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Aviation emissions are not on a trajectory consistent with Paris Climate Agreement goals. We evaluate the extent to which fuel pathways-synthetic fuels from biomass, synthetic fuels from green hydrogen and atmospheric CO2, and the direct use of green liquid hydrogen-could lead aviation towards net-zero climate impacts. Together with continued efficiency gains and contrail avoidance, but without offsets, such an energy transition could reduce lifecycle aviation CO2 emissions by 89-94% compared with year-2019 levels, despite a 2-3-fold growth in demand by 2050. The aviation sector could manage the associated cost increases, with ticket prices rising by no more than 15% compared with a no-intervention baseline leading to demand suppression of less than 14%. These pathways will require discounted investments on the order of US$0.5-2.1 trillion over a 30 yr period. However, our pathways reduce aviation CO2-equivalent emissions by only 46-69%; more action is required to mitigate non-CO2 impacts.
机构:
Western Norway Res Inst, POB 163, N-6851 Sogndal, Norway
Linnaeus Univ, Sch Business & Econ, S-39182 Kalmar, SwedenWestern Norway Res Inst, POB 163, N-6851 Sogndal, Norway
Gossling, Stefan
Humpe, Andreas
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机构:
Munich Univ Appl Sci, Schachenmeierstr 35, D-80636 Munich, GermanyWestern Norway Res Inst, POB 163, N-6851 Sogndal, Norway