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Integrated Material-Energy-Quality Assessment for Lithium-ion Battery Cell Manufacturing

机译:锂离子电池制造的综合材料 - 能量质量评估

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摘要

Storage technologies such as lithium-ion batteries (LIB) are a key technology to enable emerging transportation as well as sustainable energy policies. The manufacturing of LIB cells is characterized by high scrap rates of up to 40 % in the industry and a high energy demand, leading to a high environmental impact and high costs. Furthermore, the LIB cells themselves and their manufacturing are highly complex systems with various quality parameters and complex material flows. However, with the rising demand for energy storage technologies, the production of LIB cells needs to become more environmentally friendly and more cost-effective. To achieve this, a better understanding and a higher transparency of the material and energy flows in the context of quality parameters is needed. This paper presents a gate-to-gate methodology for the evaluation of material and energy efficiency in context of quality parameters of LIB cell manufacturing. The implementation of the presented concept is based on data acquisition and a tracking and tracing system and tested at the pilot production line of the Battery LabFactory Braunschweig (BLB). The results of this assessment can be used as inputs for further sensitivity analysis in system assessment methodologies such as Life Cycle Assessment (LCA) or Life Cycle Costing (LCC) respectively Total Cost of Ownership (TCO).
机译:锂离子电池(LIB)等存储技术是一种关键技术,可以实现新兴运输以及可持续的能源政策。 LIB细胞的制造特征在于该行业的高达40%的高达40%的速率高达40%,导致高环境影响和高成本。此外,Lib细胞本身及其制造是具有各种质量参数和复杂材料流的高度复杂的系统。然而,随着对能源储存技术的需求不断增加,利用人物的生产需要变得更加环保和更具成本效益。为了实现这一目标,需要更好地理解和在质量参数的背景下的材料和能量流的更高透明度。本文介绍了在Lib细胞制造的质量参数上评估材料和能量效率的栅极到栅极方法。所提出的概念的实施是基于数据采集和跟踪和跟踪系统,并在电池LABFACTRY BRAUNSCHWEIG(BLB)的试点生产线上进行测试。该评估的结果可用作系统评估方法中进一步敏感性分析的输入,例如生命周期评估(LCA)或生命周期成本(LCC)总体拥有成本(TCO)。

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