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摘要:
这是一篇冶金工程领域的论文。以废旧磷酸铁锂电池正极粉为对象,开展了以Na2S2O8作为氧化剂,并添加低浓度乙酸作为浸出剂选择性浸锂的研究,考查了Na2S2O8加入量、乙酸浓度、浸出温度、浸出液固比和浸出时间等对锂选择性浸出影响。在乙酸浓度0.3 mol/L、Na2S2O8加入量为理论量的1.1倍,浸出液固比10 mL/g、室温浸出2 h条件下,锂、铁、磷的浸出率分别为98.05%、4.49%和2.46%。
Abstract:This is an essay in the field of metallurgical engineering. Using waste lithium iron phosphate battery cathode powder as raw material, a study on lithium selective leaching with Na2S2O8 as oxidant and low concentration acetic acid as aleaching agent was carried out. The effects of Na2S2O8 addition, acetic acid concentration, leaching temperature, leaching liquid-solid ratio and leaching time on selective leaching of lithium were investigated. At the conditions of acetic acid concentration of 0.3 mol/L, Na2S2O8 addition of 1.1 times the theoretical amount, L/S ratio of 10 mL /g and room temperature leaching for 2 h, the leaching rates of lithium, iron and phosphorus were 98.05%, 4.49% and 2.46% respectively.
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表 1 磷酸铁锂正极粉光谱半定量分析/%
Table 1. Semi-quantitative analysis results of lithium iron phosphate cathode powder
F Na2O MgO Al2O3 SiO2 P2O5 SO3 Fe2O3 NiO 1.18 0.058 0.048 0.523 0.096 46.0 0.092 51.6 0.011 表 2 磷酸铁锂正极粉主要化学元素含量/%
Table 2. Main chemical contents of lithium iron phosphate cathode powder
Li Fe P Al 3.88 34.21 18.13 0.33 表 3 较佳条件验证实验结果
Table 3. Validation test results under optimal conditions
实验次数 浸出率/% 浸出液中含量/(g/L) Li Fe P Li Fe P 1 98.02 4.50 2.47 3.79 1.54 0.43 2 98.27 4.63 2.52 3.81 1.57 0.44 3 98.05 4.31 2.44 3.80 1.45 0.43 4 97.84 4.52 2.42 3.70 1.55 0.43 平均值 98.05 4.49 2.46 3.78 1.53 0.43 -
[1] Castro F D, Vaccari M, Cutaia L. Valorization of resources from end-of-life lithium-ion batteries: A review[J]. Critical Reviews in Environmental Science and Technology, 2021, 1:1-44.
[2] 郑鸿帅. 废旧锂离子电池正极材料分离回收锂的研究[D]. 北京: 中国科学院大学, 2021.
ZHENG H S. Study on separation and recovery of lithium from spent lithium-ion battery cathode materials[D]. Beijing: University of the Chinese Academy of Sciences, 2021.
[3] 李波, 张莉莉, 洪秋阳, 等. 废弃锂电池电极材料中有价金属的赋存状态[J]. 矿产综合利用, 2022(1):200-204. LI B, ZHANG L L, HONG Q Y, et al. Study on the occurrence state of valuable metals in waste lithium battery electrode material[J]. Multipurpose Utilization of Mineral Resources, 2022(1):200-204.
LI B, ZHANG L L, HONG Q Y, et al. Study on the occurrence state of valuable metals in waste lithium battery electrode material[J]. Multipurpose Utilization of Mineral Resources, 2022 (1): 200-204.
[4] 杨芳, 吴正斌, 徐亚威, 等. 废旧动力磷酸铁锂电池资源化回收技术研究进展[J]. 有色金属(冶炼部分), 2017, 12(12):53-56. YANG F, WU Z B, XU Y W, et al. Progress of recycling of spent lithium iron phosphate batteries[J]. Nonferrous Metals (Extractive Metallurgy), 2017, 12(12):53-56.
YANG F, WU Z B, XU Y W, et al. Progress of recycling of spent lithium iron phosphate batteries [J]. Nonferrous Metals (Extractive Metallurgy), 2017(12): 53-56.
[5] 郑莹, 刘禹, 董超, 等. 废旧磷酸铁锂电池回收研究进展[J]. 电源技术, 2014, 38(6):1172-1175. ZHENG Y, LIU Y, DONG C, et al. Research status of spent lithium iron phosphate battery recycling[J]. Chinese Journal of Power Sources, 2014, 38(6):1172-1175.
ZHENG Y, LIU Y, DONG C, et al. Research status of spent lithium iron phosphate battery recycling[J]. Chinese Journal of Power Sources, 2014, 38(6): 1172-1175.
[6] 伍德佑, 刘志强, 饶帅, 等. 废旧磷酸铁锂电池正极材料回收利用技术的研究进展[J]. 有色金属(冶炼部分), 2020(10): 70-78.
WU D Y, LIU Z Q, RAO S, et al. Research progress in recycling technology of cathode materialsfor spent lithium iron phosphate batteries [J]. Nonferrous Metals (Extractive Metallurgy), 2020(10): 70-78.
[7] ZHANG J L, HU J T, LIU Y B, et al. Sustainable and facile method for the selective recovery of lithium from cathode scrap of spent LiFePO4 batteries[J]. ACS Sustainable Chem. Eng. 2019, 7(6): 5626-5631.
[8] LI H Y, YE H, SUN M C, et al. Process for recycle of spent lithium iron phosphate battery via a selective leaching-precipitation method[J]. J. Cent. South Univ. 2020, 27: 3239−3248.
[9] YANG Y X, MENG X Q, CAO H B, et al. Selective recovery of lithium from spent lithium iron phosphate batteries: a sustainable process[J]. Green Chemistry, 2018, 20:3121-3133. doi: 10.1039/C7GC03376A
[10] 阿来拉姑, 张聪聪, 贺凯, 等. 机械化学活化对磷酸铁锂电池中锂选择性浸出特性的影响[J]. 环境工程学报, 2020, 41(11):3136-3146. ALAI L G, ZHANG C C, HE K, et al. Effect of mechanochemical activation on the selective leaching properties of lithium from LiFePO4 batteries[J]. Chinese Journal of Environmental Engineering, 2020, 41(11):3136-3146.
ALAI L G, ZHANG C C, HE K, et al. Effect of mechanochemical activation on the selective leaching properties of lithium from LiFePO4 batteries [J]. Chinese Journal of Environmental Engineering, 2020, 41 (11): 3136-3146.
[11] 徐正震, 梁精龙, 李慧, 等. 废旧锂电池正极材料中有价金属的回收工艺研究进展[J]. 矿产综合利用, 2022(4):119-142. XU Z Z, LIANG J L, LI H, et al. Research progress of recovery process of valuable metals in cathode materials of waste lithium batteries[J]. Multipurpose Utilization of Mineral Resources, 2022(4):119-142.
XU Z Z, LIANG J L, LI H, et al. Research progress of recovery process of valuable metals in cathode materials of waste lithium batteries[J]. Multipurpose Utilization of Mineral Resources, 2022(4): 119-142.
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