Greenhouse Gas Emission Mitigation Pathways for Urban Passenger Land Transport under Ambitious Climate Targets
Траектории сокращения выбросов парниковых газов городским пассажирским наземным транспортом в условиях амбициозных климатических целей
2021-05-21
SCID: 54.1/xe2d2j3y
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1.5 °C climate targetCURTAIL modelgreenhouse gas emissionslife cycle assessmenturban passenger transport
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Abstract (AI)
Urban passenger land transport is an important source of greenhouse gas (GHG) emissions globally, but it is challenging to mitigate these emissions as this sector interacts with many other economic sectors. We develop the Climate change constrained Urban passenger Transport Integrated Life cycle assessment (CURTAIL) model to outline mitigation pathways of urban passenger land transport that are consistent with ambitious climate targets. CURTAIL uses the transport activity of exogenously defined modal shares to simulate the associated annual vehicle stocks, sales, and life cycle GHG emissions. It estimates GHG emission budgets that are consistent with global warming below 2 and 1.5 °C above preindustrial levels and seeks mitigation strategies to remain within the budgets. We apply it to a case study of Singapore, a city-state. Meeting a 1.5 °C target requires strong commitments in the transport and electricity sectors, such as reducing the motorized passenger activity, accelerating the deployment of public transit and of electrification, and decarbonizing the power generation system. Focusing on one mitigation technology or one mode of transport alone will not be sufficient to meet the target. Our novel model could be applied to any city to provide insights relevant to the design of urban climate change mitigation targets and policies.
Key Findings
1
CURTAIL estimates transport GHG emission budgets consistent with keeping global warming below 2°C and 1.5°C and can support city-level policy design.
2
For Singapore, meeting a 1.5°C warming target requires coordinated mitigation across transport and electricity sectors.
3
Key measures include reducing motorized passenger activity, expanding public transit, accelerating vehicle electrification, and decarbonizing power generation.
4
Relying on a single mitigation technology or transport mode is insufficient to meet the 1.5°C target.
5
The CURTAIL model integrates transport activity, modal shares, vehicle stocks, sales, and life-cycle emissions to develop climate-consistent urban transport mitigation pathways.
Research Object
urban passenger land transport in Singapore, including its vehicle fleet, modal activity, and associated electricity supply
Research Subject
life-cycle greenhouse-gas emissions and mitigation pathways consistent with ambitious global warming targets, including emission budgets, transport electrification, public-transit deployment, reduced motorized activity, and power-sector decarbonization
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2021-05-21
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