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Considering Battery Degradation in Life Cycle Greenhouse Gas Emission Analysis of Electric Vehicles

机译:考虑电池循环温室气体排放分析电动汽车的电池劣化

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摘要

Lithium ion batteries (LIBs) are predominantly employed to power Electric Vehicles (EVs). Battery degradation can significantly affect battery performance and further influence the energy consumptions and life cycle greenhouse gas (GHG) emissions from EVs. However, currently battery degradation has not been taken into account in life cycle assessment (LCA) of EVs. In this paper, we report our research on considering battery degradation into life cycle GHG emissions of EVs, by analyzing a mid-size EV using a 24 kWh Lithium-Manganese-Oxide (LMO)-graphite battery. Both cycling loss and calendar loss in battery degradation are analyzed under average driving conditions of U.S. The model is validated with experimental testing data on Nissan Leaf from Argonne National Lab. In this study, the required battery replacement is also integrated into the LCA GHG emission model and results, by considering the cradle-to-gate GHG emissions from a battery pack. This model can improve the accuracy and reliability of life cycle GHG studies on EVs.
机译:锂离子电池(LIBS)主要用于电动车辆(EVS)。电池劣化可以显着影响电池性能,从EVS中进一步影响能量消耗和生命周期温室气体(GHG)排放。然而,目前在EV的生命周期评估(LCA)中尚未考虑电池劣化。在本文中,我们通过使用24 kWh锂 - 锰氧化物(LMO)型电池来分析中型EV来报告我们考虑电池劣化进入EVS生命周期GHG排放的研究。在美国的平均驾驶条件下分析了电池劣化中的循环损耗和日历损失。该模型用来自Argonne国家实验室的日产叶的实验测试数据验证。在这项研究中,通过考虑来自电池组的托架到栅极温室气体排放,还将所需的电池更换集成到LCA温度发光模型和结果中。该模型可以提高EVS生命周期GHG研究的准确性和可靠性。

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