Environmental Aspects and Recycling of Solid-State Batteries: A Comprehensive Review

Abniel Machín, M. Cotto, Francisco Díaz, J. Ducongé, Carmen Morant, F. Márquez
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Abstract

Solid-state batteries (SSBs) have emerged as a promising alternative to conventional lithium-ion batteries, with notable advantages in safety, energy density, and longevity, yet the environmental implications of their life cycle, from manufacturing to disposal, remain a critical concern. This review examines the environmental impacts associated with the production, use, and end-of-life management of SSBs, starting with the extraction and processing of raw materials, and highlights significant natural resource consumption, energy use, and emissions. A comparative analysis with traditional battery manufacturing underscores the environmental hazards of novel materials specific to SSBs. The review also assesses the operational environmental impact of SSBs by evaluating their energy efficiency and carbon footprint in comparison to conventional batteries, followed by an exploration of end-of-life challenges, including disposal risks, regulatory frameworks, and the shortcomings of existing waste management practices. A significant focus is placed on recycling and reuse strategies, reviewing current methodologies like mechanical, pyrometallurgical, and hydrometallurgical processes, along with emerging technologies that aim to overcome recycling barriers, while also analyzing the economic and technological challenges of these processes. Additionally, real-world case studies are presented, serving as benchmarks for best practices and highlighting lessons learned in the field. In conclusion, the paper identifies research gaps and future directions for reducing the environmental footprint of SSBs, underscoring the need for interdisciplinary collaboration to advance sustainable SSB technologies and contribute to balancing technological advancements with environmental stewardship, thereby supporting the transition to a more sustainable energy future.
固态电池的环境问题和回收利用:全面回顾
固态电池(SSB)作为传统锂离子电池的替代品,在安全性、能量密度和使用寿命方面具有显著优势,但其从生产到废弃的生命周期对环境的影响仍是一个重要问题。本综述从原材料的提取和加工入手,研究了固态电池的生产、使用和报废管理对环境的影响,并着重分析了大量的自然资源消耗、能源使用和排放。与传统电池制造的比较分析强调了 SSB 特有的新型材料对环境的危害。本综述还通过评估 SSB 与传统电池相比的能效和碳足迹,评估了 SSB 的运行对环境的影响,随后探讨了 SSB 在报废时面临的挑战,包括处置风险、监管框架和现有废物管理实践的不足之处。该书重点介绍了回收和再利用战略,回顾了机械、火冶金和湿法冶金工艺等现有方法,以及旨在克服回收障碍的新兴技术,同时还分析了这些工艺所面临的经济和技术挑战。此外,还介绍了现实世界中的案例研究,作为最佳实践的基准,并强调了该领域的经验教训。最后,本文指出了减少固态碳酸酯环境足迹的研究差距和未来方向,强调了跨学科合作的必要性,以推进可持续固态碳酸酯技术,促进技术进步与环境管理之间的平衡,从而支持向更可持续的能源未来过渡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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