Megan Yeo’s research while affiliated with Cambridge College and other places

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Publications (1)


Overview of EV sales scenarios and impact of mineral supply constraints
a estimates for sedan only fleet. b estimates for SUV + sedan fleet.
Estimates reflect production constraints, trends in consumption patterns, and import patterns
Overview of mineral demands versus available supply (Optimal chemistry – NMC 811).
Estimates reflect production constraints, trends in consumption patterns, and import patterns
Overview of mineral demands versus available supply (Market mix).
Climate impacts of critical mineral supply chain bottlenecks for electric vehicle deployment
  • Article
  • Full-text available

August 2024

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54 Reads

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8 Citations

Lucas Woodley

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Chung Yi See

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Peter Cook

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[...]

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Ashley Nunes

New tailpipe emissions standards aim to increase electric vehicle (EV) sales in the United States. Here, we analyze the associated critical mineral supply chain constraints and enumerate the climate consequences of these constraints. Our work yields five findings. First, the proposed standard necessitates replacing at least 10.21 million new internal combustion engine vehicles with EVs between 2027 and 2032. Second, based on economically viable and geologically available mineral reserves, manufacturing sufficient EVs is plausible and reduces up to 457.3 million tons of CO2e. Third, mineral production capacities in the United States and amongst allies support the deployment of 5.09 million vehicles between 2027 and 2032, well short of compliance target. Fourth, this shortfall produces at least 59.54 million tons of CO2e in lost lifecycle emissions benefits. Fifth, limited production of battery-grade graphite and cobalt may represent particularly profound constraints. Pathways that afford comparable emission reductions are subsequently explored.

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Citations (1)


... Koroma et al. (2022) performed a battery LCA, emphasizing the need to parallel the deployment of BEVs with the expansion of renewable energy and the development of effective recycling processes for both vehicle bodies and batteries. Woodley et al. (2024) highlighted the limitations of the current mineral production capacity to meet the targeted EV production by 2032. Thus, some studies have indicated that concerns exist over the viability of EV deployment in the current situation. ...

Reference:

Differences in vehicle electrification policies and optimal transition periods across countries
Climate impacts of critical mineral supply chain bottlenecks for electric vehicle deployment