Energy storage is crucial for renewable energy integration. The lifetime carbon footprint and decarbonization potential of Li-ion Battery Energy Storage Systems (BESS) must be quantified. A comprehensive mathematical framework to quantify the carbon footprint of energy storage applications is developed. This framework is implemented in simulation programs Energy System Network (ESN) and Simulation of Stationary Energy Storage Systems (SimSES), which have been developed and co-developed in this work. Through several case studies, the usage of this framework is demonstrated.
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Energy storage is crucial for renewable energy integration. The lifetime carbon footprint and decarbonization potential of Li-ion Battery Energy Storage Systems (BESS) must be quantified. A comprehensive mathematical framework to quantify the carbon footprint of energy storage applications is developed. This framework is implemented in simulation programs Energy System Network (ESN) and Simulation of Stationary Energy Storage Systems (SimSES), which have been developed and co-developed in this w...
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