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An Economic-Environmental Analysis of Lithium Ion Batteries Based on Process Design and a Manufacturing Equipment Database

机译:基于过程设计和制造设备数据库的锂离子电池经济环境分析

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This study evaluates the costs and carbon dioxide emissions associated with the production of various lithium ion batteries using current and more advanced materials. We constructed an evaluation system which enables the user to quantitatively clarify the effect of each elemental technology on battery performance and production costs. This method allows the evaluation of production costs and CO_(2) emissions of present and future batteries in terms of future technology development, production scale-up effects, and the use of high-performance new materials. As an example, a battery using innovative cathode and anode materials was evaluated by the process design approach. The future production cost and CO_(2) emissions for this battery are reduced from 17.5 to 4.6?JPY?W?h~(?1) and 161 to 37?g-CO_(2)?W?h~(?1), compared to the present batteries, indicating significant impacts on energy use. Finally, the important areas in battery research and development are highlighted, and a roadmap for battery technology is proposed.
机译:这项研究评估了使用当前和更先进的材料生产各种锂离子电池相关的成本和二氧化碳排放量。我们构建了一个评估系统,使用户能够定量地阐明每种基本技术对电池性能和生产成本的影响。这种方法可以根据未来的技术发展,生产规模扩大效应以及使用高性能新材料来评估当前和未来电池的生产成本和CO_(2)排放。例如,通过工艺设计方法对使用创新型阴极和阳极材料的电池进行了评估。该电池的未来生产成本和CO_(2)排放量从17.5降至4.6?JPY?W?h〜(?1)和161降至37?g-CO_(2)?W?h〜(?1)与目前的电池相比,表明对能源使用有重大影响。最后,重点介绍了电池研究与开发的重要领域,并提出了电池技术路线图。

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