使用 H3PO4-H2C2O4 溶液组合作为高效浸出剂回收镍-锰-钴(NMC)正极废电池中的镍金属

Adyatma Bhagaskara , Dita Adi Saputra , Aldino Javier Saviola , Karna Wijaya , Won-Chun Oh , Sri Rahayu , Muhammad Dikdik Gumelar , Aghni Ulma Saudi , Agustanhakri Agustanhakri , Abdul Hamid Budiman , Surat Indrijarso
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引用次数: 0

摘要

镍锰钴(NMC)是一种广泛应用于锂离子电池(LiBs)的正极材料。它在高能量密度和热稳定性方面表现出色,但经过几次充放电循环后,其容量会明显降低,成为废品。为了防止有价金属释放到环境中,人们广泛采用了强无机酸浸出法。然而,这些方法必须有效地实现对特定金属和环境排放的低选择性。本研究提出了一种以 H3PO4-H2C2O4 有机酸组合为浸出剂的镍金属提取选择性浸出处理方法。研究从制备开始,包括卸料、拆解、煅烧步骤、浸出和沉淀。镍、锰和钴的浸出效率分别高达 99.90%、3.29% 和 43.65%。浸出实验表明,与其他系统相比,组合系统有助于获得对镍金属的极佳选择性。选择性回收镍金属的最佳条件是 H3PO4-H2C2O4 体积比为 8:2,液固比为 25 mL/g,在 60 °C 下浸出 1.5 h。从阴极粉末中萃取的镍饱和浸出液加入了 Cyanex272,以促进 Ni3(PO4)2 的沉淀,沉淀率高达 40%。这项研究提出了一种潜在的 "变废为宝 "方法,可引导对废旧 NMC 阴极 LIB 进行高效、环保的回收利用。
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Recycling of nickel metal from spent nickel-manganese-cobalt (NMC) cathode batteries using H3PO4–H2C2O4 solution combination as an efficient leaching agent

Nickel-manganese-cobalt (NMC) is a type of cathode material widely used in lithium-ion batteries (LiBs). It performs well on high energy density and thermal stability, but after several charged-discharged cycles, its capacity significantly degrades and becomes waste. Leaching methods with strong inorganic acids are widely used to prevent the release of valuable metals into the environment. Still, these methods must be effectively achieved regarding the low selectivity of specific metals and environmental emissions. This study presents a selective leaching treatment for Ni metals extraction with the organic acid combination of H3PO4–H2C2O4 as a leaching agent. The research started with preparation, including discharge, dismantling, calcination steps, leaching, and precipitation. Ni, Mn, and Co leaching efficiency can reach up to 99.90 %, 3.29 %, and 43.65 %, respectively. The leaching experiment shows that a combination system contributes to obtaining excellent selectivity towards Ni metals compared to the others. The optimum conditions for selectively recovering Ni metals were an H3PO4–H2C2O4 volume ratio of 8:2 and a liquid-solid ratio of 25 mL/g, leaching at 60 °C for 1.5 h. The thermodynamics and kinetics of the leaching reactions were analyzed to determine the feasibility of leaching three metals. Leachate, which is Ni-saturated from cathode powder, was added with Cyanex272 to facilitate the precipitation of Ni3(PO4)2 with a yield of up to 40 %. This study presents a potential "waste-to-wealth" approach to lead the efficient and environmental recycling of spent NMC cathode LIBs.

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来源期刊
Case Studies in Chemical and Environmental Engineering
Case Studies in Chemical and Environmental Engineering Engineering-Engineering (miscellaneous)
CiteScore
9.20
自引率
0.00%
发文量
103
审稿时长
40 days
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