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Alkali Metal Salt Catalyzed Carbothermic Reduction for Sustainable Recovery of LiCoO2: Accurately Controlled Reduction and Efficient Water Leaching

机译:碱金属盐催化碳热还原,可持续恢复LiCo2:准确控制减少和有效的水浸出

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摘要

Recycling of spent lithium-ion batteries (LIBs) is essential for both environmental protection and natural resource conservation. Carbothermic reduction of active materials has been a research hotspot for spent LIB recycling. However, the high reaction temperature and the limited solubility of Li2CO3 in the reduced product seriously restricted its industrial application. Here, based on the catalytic effect of alkali metal salts on carbothermic reduction, a novel process that features lower reduction temperature, accurately controlled reduction products, high concentration of lithium containing solution, and facile-treated CoO product was developed. With the catalysis of 10% NaOH, LiCoO2 can be controllably reduced to Li2O and CoO through catalytic carbothermic reduction. Afterward, lithium in the reduction products can be leached by deionized water with leaching efficiency higher than 93%, leaving cobalt in the leaching residue in the form of CoO. The lithium concentration in the lixivium can be up to 14.99 g.L-1 through a three-stage cross-current water leaching. The catalytic carbothermic reduction process is more energy conserving and environmental friendly and will bring a bright prospective for sustainable recycling of spent LIBs.
机译:废锂离子电池(LIBS)的再循环对于环境保护和自然资源保护至关重要。活跃材料的Carbothothotmic减少一直是花费lib回收的研究热点。然而,高反应温度和Li 2 CO 3在降低产品中的有限溶解度严重限制其工业应用。这里,基于碱金属盐对碳热还原的催化作用,开发了一种具有较低减少温度,精确控制的还原产物,高浓度的含锂溶液,以及容易处理的CoO产物的新方法。随着10%NaOH的催化,LiCoO2可以通过催化碳热还原可控地降低到Li2O和CoO。之后,还原产物中的锂可以通过去离子水浸出,浸出效率高于93%,以COO的形式离开浸出残留物中的钴。通过三阶段的交叉电流浸出,Lixivium中的锂浓度可达14.99 g.L-1。催化碳水化的减少过程更为节能和环境友好,并将带来一股明亮的可持续回收前瞻性。

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