Battery storage systems are attractive alternatives to conventional generators for frequency regulation due to their fast response time, high cycle efficiency, flexible scale, and decreasing cost. However, their implementation does not consistently reduce environmental impacts. To assess these impacts, we employed a life cycle assessment (LCA) framework. Our framework couples cradle-to-gate and end-of-life LCA data on lithium-ion batteries with a unit commitment and dispatch model. The model is run on a 9-bus power system with energy storage used for frequency regulation. The addition of energy storage changes generator commitment and dispatch, causing changes in the quantities of each fuel type consumed. This results in increased environme...
International audienceThe electrification of vehicles is seen nowadays as a promising way to decarbo...
Based on Life Cycle Assessment (LCA) and Eco-indicator 99 method, a LCA model was applied to conduct...
Battery energy storage systems (BESS) are an essential component of renewable electricity infrastruc...
Although deployments of grid-scale stationary lithium ion battery energy storage systems are acceler...
Electrified buses are becoming increasingly popular and are labeled less environmental impacting com...
Rechargeable batteries are necessary for the decarbonization of the energy systems, but life-cycle e...
Repurposing automotive lithium-ion batteries, which have reached their end of life, for stationary a...
The number of vehicles with lithium-ion batteries (LIBs) is increasing. When these batteries no long...
A framework enabling an application of Life Cycle Assessment approach to various technologies of Lit...
This paper presents a comparative life cycle assessment of cumulative energy demand (CED) and global...
This thesis assessed the life-cycle environmental impact of a lithium-ion battery pack intended for ...
Residential storage deployment is expected to grow dramatically over the coming decade. Several lith...
Purpose: Lithium-ion (Li-ion) battery packs recovered from end-of-life electric vehicles (EV) presen...
Lithium-ion batteries are a key technology in decarbonizing the transportation and electricity secto...
Lithium-air batteries are investigated for propulsion aggregates in vehicles as they theoretically o...
International audienceThe electrification of vehicles is seen nowadays as a promising way to decarbo...
Based on Life Cycle Assessment (LCA) and Eco-indicator 99 method, a LCA model was applied to conduct...
Battery energy storage systems (BESS) are an essential component of renewable electricity infrastruc...
Although deployments of grid-scale stationary lithium ion battery energy storage systems are acceler...
Electrified buses are becoming increasingly popular and are labeled less environmental impacting com...
Rechargeable batteries are necessary for the decarbonization of the energy systems, but life-cycle e...
Repurposing automotive lithium-ion batteries, which have reached their end of life, for stationary a...
The number of vehicles with lithium-ion batteries (LIBs) is increasing. When these batteries no long...
A framework enabling an application of Life Cycle Assessment approach to various technologies of Lit...
This paper presents a comparative life cycle assessment of cumulative energy demand (CED) and global...
This thesis assessed the life-cycle environmental impact of a lithium-ion battery pack intended for ...
Residential storage deployment is expected to grow dramatically over the coming decade. Several lith...
Purpose: Lithium-ion (Li-ion) battery packs recovered from end-of-life electric vehicles (EV) presen...
Lithium-ion batteries are a key technology in decarbonizing the transportation and electricity secto...
Lithium-air batteries are investigated for propulsion aggregates in vehicles as they theoretically o...
International audienceThe electrification of vehicles is seen nowadays as a promising way to decarbo...
Based on Life Cycle Assessment (LCA) and Eco-indicator 99 method, a LCA model was applied to conduct...
Battery energy storage systems (BESS) are an essential component of renewable electricity infrastruc...