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首页> 外文期刊>Waste Management >Hydrometallurgical recycling of EV lithium-ion batteries: Effects of incineration on the leaching efficiency of metals using sulfuric acid
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Hydrometallurgical recycling of EV lithium-ion batteries: Effects of incineration on the leaching efficiency of metals using sulfuric acid

机译:EV锂离子电池的液压冶金回收:焚烧对硫酸浸出效率的影响

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摘要

The growing demand for lithium-ion batteries will result in an increasing flow of spent batteries, which must be recycled to prevent environmental and health problems, while helping to mitigate the raw materials dependence and risks of shortage and promoting a circular economy. Combining pyrometallurgical and hydrometallurgical recycling approaches has been the focus of recent studies, since it can bring many advantages. In this work, the effects of incineration on the leaching efficiency of metals from EV LIBs were evaluated. The thermal process was applied as a pre-treatment for the electrode material, aiming for car-bothermic reduction of the valuable metals by the graphite contained in the waste. Leaching efficiencies above 70% were obtained for Li, Mn, Ni and Co after 60 min of leaching even when using 0.5 M sulfuric acid, which can be linked to the formation of more easily teachable compounds during the incineration process. When the incineration temperature was increased (600-700 °C), the intensity of graphite signals decreased and other oxides were identified, possibly due to the increase in oxidative conditions. Higher leaching efficiencies of Mn, Ni, Co, and Li were reached at lower temperatures of incineration (400-500 °C) and at higher leaching times, which could be related to the partial carbothermic reduction of the metals.
机译:对锂离子电池不断增长的需求将导致花电池的流量增加,这必须再循环以防止环境和健康问题,同时有助于减轻原材料的依赖和短缺和促进循环经济的风险。结合PyromeLallgical和Riplomalturgical回收方法是最近研究的重点,因为它可以带来许多优势。在这项工作中,评估了焚烧对来自EV LIBS的金属浸出效率的影响。将热处理作为电极材料的预处理应用,旨在通过废物中包含的石墨进行有价值金属的汽车扰顾。在使用0.5M硫酸的情况下,对于60分钟的浸出后,获得70%以上70%以上的浸出效率,即使使用0.5M硫酸,可以在焚烧过程中与形成更容易的可教导的化合物的形成。当焚烧温度升高(600-700℃)时,鉴定石墨信号的强度降低,也可能由于氧化条件的增加而鉴定出其他氧化物。在焚烧(400-500°C)的较低温度下达到较高的Mn,Ni,Co和Li的浸出效率,并且在较高的浸出时间内达到,这可能与金属的部分携带物质减少有关。

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  • 来源
    《Waste Management》 |2021年第4期|192-203|共12页
  • 作者单位

    Department of Chemistry and Chemical Engineering Industrial Materials Recycling and Nuclear Chemistry Chalmers University of Technology Chalmers University of Technology SE-41296 Gothenburg Sweden;

    R&D Department Envirobat Espana S.L Avda. Lyon 10 Azuqueca de Henares 19200 Guadalajara Spain;

    Department of Chemistry and Chemical Engineering Industrial Materials Recycling and Nuclear Chemistry Chalmers University of Technology Chalmers University of Technology SE-41296 Gothenburg Sweden;

    Department of Chemistry and Chemical Engineering Industrial Materials Recycling and Nuclear Chemistry Chalmers University of Technology Chalmers University of Technology SE-41296 Gothenburg Sweden;

    Department of Chemistry and Chemical Engineering Industrial Materials Recycling and Nuclear Chemistry Chalmers University of Technology Chalmers University of Technology SE-41296 Gothenburg Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lithium-ion batteries; Recycling; Incineration; Hydrometallurgy; Carbothermic reduction; Waste valorization;

    机译:锂离子电池;回收;焚化;潮湿冶金;Carbothermic减少;浪费储存;

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