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2050年航空愿景:实现气候中和增长的潜力.pdf

上传人: 竿*** 编号:981964 2025-11-29 20页 2.25MB

1、Aviation Vision 2050:The Potential for Climate Neutral Growth through Non-CO2ControlSola ZhengInternational Council on Clean Transportation(ICCT)18 October 2025Net-zero CO2 goal:how it started and how it is going2Agreed by industry and codified by ICAO in 2022Consensus on the critical role of SAF,ex

2、pected to be responsible for about 50%of CO2 reductions Fuel efficiency(airframe+operations)30%of the CO2 reductions However,progress towards the net-zero goal has been slow.Rate of SAF adoption,as well as other mitigation levers,is closer to ICCTs Action Scenario,with minimal emission reduction com

3、pared to 2019 baseline in 2050.The growing importance of non-CO2 3Greenhouse gases(GHGs):CO2,CH4,N2O Lifetimes of tens to thousands of years Impact driven by accumulation in the atmosphereShort-lived climate pollutants(SLCP):Contrails,NOxnvPM,water vapor,and sulfate aerosolsLifetimes of hours to day

4、sImpact driven by continuing pulses of emissionsResearch questionHow can cuts to short-lived climate pollutants from global commercial aviation contribute to the Paris Agreement?4MethodsHigh-level Design6Aviations contribution to global temperature changeSimplified climate model(FaIR)2023-2050 emiss

5、ions(in mass)and contrail effective radiative forcing(ERF)Projection of Aviation Climate Effects(PACE)model2023 emissions inventoryTrajectory-Based 2023 Inventory7ADS-B Flight TrajectoriesFleet and engine databaseMeteorologyAircraft performance(BADA 3)FFM2 and T4/T2 methodContrail(CoCiP)Data inputsM

6、odelingProcessingFlight schedulePayloadValidation2023 Contrail Inventory8Mitigation Scenarios9Scenario NameDefinitionHistorical TrendsCounterfactualCurrent CommitmentsAnnounced policies and industry goalsGHG ForwardMaximum GHG reduction onlySLCP ForwardMaximum mitigation of NOx,nvPM,and contrailsFul

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根据《Aviation Vision 2050》报告,以下为全文主要内容概括及核心数据: 1. **净零碳排放目标**:航空业已同意并在2022年由国际民航组织(ICAO)编码的净零碳排放目标,预计可持续航空燃料(SAF)将负责约50%的二氧化碳减排。 2. **减排进展缓慢**:尽管有共识,但向净零目标的进展缓慢,SAF的采用率和其他减缓措施与ICCT的行动情景相似,与2019年基线相比,到2050年的排放减少有限。 3. **非二氧化碳温室气体的重要性**:除了二氧化碳,航空业还排放其他温室气体(如甲烷、氧化亚氮)和短期气候污染物(如尾迹、氮氧化物、颗粒物、水蒸气、硫酸盐气溶胶)。 4. **研究方法**:使用简化气候模型(FaIR)和投影航空气候效应(PACE)模型来评估航空业对全球温度变化的影响。 5. **减缓情景**:包括历史趋势、当前承诺、最大温室气体减排、最大短期气候污染物减缓以及全面突破情景。 6. **关键减缓措施**:包括飞机燃油效率、载荷和交通效率、可持续航空燃料(SAFs)和零排放飞机(ZEPs)。 7. **结果**:在全面突破情景下,通过避免尾迹、使用SAFs和改进操作效率,航空业可以减少超过90%的额外增温,并在2035年后实现“气候中性”。
如何实现气候中性增长?" 航空业减排新策略?" SAF与SLCP控制谁更重要?"
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