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Sustainability-inspired cell design for a fully recyclable sodium ion battery

机译:灵感源自可持续发展的电池设计可完全回收的钠离子电池

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摘要

Large-scale applications of rechargeable batteries consume nonrenewable resources and produce massive amounts of end-of-life wastes, which raise sustainability concerns in terms of manufacturing, environmental, and ecological costs. Therefore, the recyclability and sustainability of a battery should be considered at the design stage by using naturally abundant resources and recyclable battery technology. Herein, we design a fully recyclable rechargeable sodium ion battery with bipolar electrode structure using Na3V2(PO4)3 as an electrode material and aluminum foil as the shared current collector. Such a design allows exceptional sodium ion battery performance in terms of high-power correspondence and long-term stability and enables the recycling of ∼100% Na3V2(PO4)3 and ∼99.1% elemental aluminum without the release of toxic wastes, resulting in a solid-component recycling efficiency of >98.0%. The successful incorporation of sustainability into battery design suggests that closed-loop recycling and the reutilization of battery materials can be achieved in next-generation energy storage technologies.
机译:可充电电池的大规模应用消耗了不可再生资源,并产生了大量的报废废物,这在制造,环境和生态成本方面引起了可持续性方面的关注。因此,应在设计阶段通过使用自然丰富的资源和可回收电池技术来考虑电池的可回收性和可持续性。在此,我们设计了一种完全可回收的可充电钠离子电池,该电池具有双极电极结构,使用Na3V2(PO4)3作为电极材料,并使用铝箔作为共享集电器。这种设计在高功率对应性和长期稳定性方面具有出色的钠离子电池性能,并能够回收〜100%Na3V2(PO4)3和〜99.1%的铝元素而不会释放有毒废物,从而导致固成分回收率efficiency> 98.0%。成功将可持续性纳入电池设计表明,闭环回收和电池材料的再利用可以在下一代储能技术中实现。

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