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Regeneration of Al-doped LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2) cathode material by simulated hydrometallurgy leachate of spent lithium-ion batteries 被引量:7
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作者 Fang-cheng LI Gang zhang +4 位作者 zong-liang zhang Jian YANG Fang-yang LIU Ming JIA Liang-xing JIANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第2期593-603,共11页
A uniform Al-doped LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2) cathode material was prepared using a coprecipitation method to take advantage of the positive effect of Al on regenerated NCM(Ni,Co,Mn)cathode materials and ameliora... A uniform Al-doped LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2) cathode material was prepared using a coprecipitation method to take advantage of the positive effect of Al on regenerated NCM(Ni,Co,Mn)cathode materials and ameliorate cumbersome and high-cost impurity removal processes during lithium-ion battery recycling.When the Al^(3+) content in the leachate was 1 at.%with respect to the total amount of transition metals(Ni,Co,and Mn),the produced Al-doped NCM cathode material increased concentrations of lattice oxygen and Ni^(2+).The initial specific capacity at 0.1C was 167.4 mA·h/g,with a capacity retention of 79.1%after 400 cycles at 1C.Further,this Al-doped sample showed improved rate performance and a smaller electrochemical impedance.These findings provide a reference for developing industrial processes to resynthesize cathode materials with improved electrochemical performance by incorporating Al^(3+) impurities produced during lithium-ion battery recycling. 展开更多
关键词 spent lithium-ion battery REGENERATION Al doping ternary cathode material coprecipitation
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Influence of hydrogen concentration on Fe_2O_3 particle reduction in fluidized beds under constant drag force 被引量:3
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作者 Lei Guo Han Gao +2 位作者 Jin-tao Yu zong-liang zhang Zhan-cheng Guo 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第1期12-20,共9页
The fixed-gas drag force from a model calculation method that stabilizes the agitation capabilities of different gas ratios was used to explore the influence of temperature and hydrogen concentration on fluidizing dur... The fixed-gas drag force from a model calculation method that stabilizes the agitation capabilities of different gas ratios was used to explore the influence of temperature and hydrogen concentration on fluidizing duration, metallization ratio, utilization rate of reduction gas, and sticking behavior. Different hydrogen concentrations from 5vol%to 100vol%at 1073 and 1273 K were used while the drag force with the flow of N2 and H2 (N2:2 L·min^-1;H2:2 L·min^-1) at 1073 K was chosen as the standard drag force. The metallization ratio, mean reduc-tion rate, and utilization rate of reduction gas were observed to generally increase with increasing hydrogen concentration. Faster reduction rates and higher metallization ratios were obtained when the reduction temperature decreased from 1273 to 1073 K. A numerical relation among particle diameter, particle drag force, and fluidization state was plotted in a diagram by this model. 展开更多
关键词 fluidized beds ferric oxide iron ores AGGLOMERATION HYDROGEN drag force
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电场对废旧锂离子电池中有价金属浸出的影响 被引量:2
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作者 杨健 周嫄 +4 位作者 张宗良 许开华 张坤 赖延清 蒋良兴 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2023年第2期632-641,共10页
提出一种电场强化浸出工艺,用于提高废旧锂离子电池提取Li、Ni、Co以及Mn过程中的浸出效率。通过产品表征和浸出动力学等手段,对浸出工艺参数进行优化并对浸出机制进行研究。在优化浸出条件下,超过98%Li、97%Ni和Co以及93%Mn被浸出进入... 提出一种电场强化浸出工艺,用于提高废旧锂离子电池提取Li、Ni、Co以及Mn过程中的浸出效率。通过产品表征和浸出动力学等手段,对浸出工艺参数进行优化并对浸出机制进行研究。在优化浸出条件下,超过98%Li、97%Ni和Co以及93%Mn被浸出进入到溶液中。浸出动力学研究表明,Li、Ni、Co和Mn的浸出过程由基于核缩减模型的化学反应控制,并确定浸出活化能分别为42.4、46.1、46.2和47.3k J/mol。浸出过程中,施加电场为溶液中Fe^(2+)和Cl^(-)的循环利用提供了便利通道,减少了还原剂的添加量,同时保证了高的金属浸出率。 展开更多
关键词 废旧锂离子电池 有价金属浸出 电场强化 浸出动力学
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