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Techno-economic analysis of lithium-ion battery price reduction considering carbon footprint based on life cycle assessment

机译:基于生命周期评估的考虑碳足迹的锂离子电池降价技术经济分析

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Lithium-ion batteries (LIBs) play a crucial role in driving energy transitions, particularly in electric vehicles (EVs) and energy storage systems. Forecasting LIB prices has received significant attention due to the tightening of raw material markets. Additionally, the implementation of carbon pricing policies has highlighted the need to incorporate the carbon footprint of LIBs in price evaluation. This study presents a comprehensive analysis of the carbon footprint, pricing trajectories, and forthcoming carbon pricing ramifications associated with LIBs. Firstly, the findings derived from the life-cycle carbon footprint assessment indicate that the global production volumeweighted average carbon footprint of EV battery packs spans 49.2–81.1 kgCO_2eq/kWh, depending on the chosen end-of-life treatment. Strategic end-of-life selections, aligned with battery chemical composition, can diminish the carbon footprint by up to 46 relative to improper disposal methods. Notably, direct cathode recycling of NCA and NMC622 batteries exhibits superior environmental performance. Secondly, techno-economic analysis predicts that the mean price of EV battery packs with diverse chemical compositions will decline to $75.1/kWh by 2030, factoring in the compound annual growth rate of critical raw material prices over the past decade. LFP batteries emerge as the top economic performers. Lastly, the results reveal that monetizing a battery's carbon footprint may offset battery price reductions through learning effects. This underscores the imperative of effective recycling for curtailing the carbon footprint and ensuring the enduring economic and environmental competitiveness of LIBs.
机译:锂离子电池 (LIB) 在推动能源转型方面发挥着至关重要的作用,尤其是在电动汽车 (EV) 和储能系统中。由于原材料市场趋紧,锂离子电池价格的预测受到了极大的关注。此外,碳定价政策的实施凸显了将锂离子电池的碳足迹纳入价格评估的必要性。本研究全面分析了与锂离子电池相关的碳足迹、定价轨迹和即将到来的碳定价影响。首先,生命周期碳足迹评估的结果表明,电动汽车电池组的全球产量加权平均碳足迹为49.2-81.1 kgCO_2eq/kWh,具体取决于所选择的报废处理方式。与电池化学成分相一致的战略性报废选择,相对于不当的处置方法,可以减少高达 46% 的碳足迹。值得注意的是,NCA 和 NMC622 电池的直接阴极回收表现出卓越的环保性能。其次,技术经济分析预测,考虑到过去十年关键原材料价格的复合年增长率,到2030年,具有不同化学成分的电动汽车电池组的平均价格将降至75.1美元/千瓦时。磷酸铁锂电池成为经济表现最好的电池。最后,研究结果表明,将电池的碳足迹货币化可能会通过学习效应抵消电池价格的降低。这凸显了有效回收利用的必要性,以减少碳足迹,并确保锂离子电池具有持久的经济和环境竞争力。

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