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首页> 外文期刊>Waste Management >Recycling of LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2 cathode materials from spent lithium-ion batteries using mechanochemical activation and solid-state sintering
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Recycling of LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2 cathode materials from spent lithium-ion batteries using mechanochemical activation and solid-state sintering

机译:机械化学活化和固态烧结从废锂离子电池中回收LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2正极材料

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摘要

The production of lithium-ion battery is around 9100 million sets in 2016 and is believed to further increase consecutively. This fact triggers the generation of spent cathode materials which contain metals of both valuable and hazardous. Their recycling corresponding to life cycle sustainability of lithium-ion battery has attracted significant attention. However, most technologies for recycling waste lithium-ion batteries are dependent on metallurgical based processes where secondary pollution is inevitable. This research demonstrates a process to directly regenerate LiNi1-x-yCoxMnyO2 cathode material by incorporating methods of mechanochemical activation and solid-state sintering, which can restore the layered structure and improve the lithium ion diffusion without introducing extra impurities. By understanding the effects of sintering temperature, the optimal conditions for direct regeneration of cathode materials with obvious improvement on electrochemical performance can be obtained. As a result, this research proves the possibility of direct regeneration of nickel-containing waste cathode materials with minimized chemical consumption. (C) 2018 Elsevier Ltd. All rights reserved.
机译:锂离子电池的产量在2016年约为91亿套,并有望继续增长。这一事实触发了废阴极材料的产生,该废阴极材料包含有价金属和有害金属。其与锂离子电池生命周期可持续性相对应的回收利用引起了广泛关注。但是,大多数回收废旧锂离子电池的技术都依赖于冶金过程,在这些过程中不可避免地会产生二次污染。这项研究表明,通过结合机械化学活化和固态烧结方法,可以直接再生LiNi1-x-yCoxMnyO2正极材料,该工艺可以恢复层状结构并改善锂离子扩散,而不会引入额外的杂质。通过了解烧结温度的影响,可获得直接再生正极材料的最佳条件,对电化学性能有明显改善。结果,该研究证明了以最小的化学消耗量直接再生含镍废阴极材料的可能性。 (C)2018 Elsevier Ltd.保留所有权利。

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