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综合回收废锰酸锂电池中有价成分的实验研究 被引量:1
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作者 李发闯 郭战永 +3 位作者 张倩 郑泽宇 张云娜 吕潘良 《中国有色冶金》 CAS 北大核心 2021年第4期99-104,共6页
本文对废锰酸锂电池中的有价成分进行了综合回收试验。针对锰酸锂和石墨混合粉体进行酸浸:当硫酸的浓度为0.5 mol/L、双氧水的浓度为6%时,LiMn_(2)O_(4)基本上完全分解并浸出,从而获得较纯的石墨;对锰酸锂酸浸液进行电解,可制备出纯度为... 本文对废锰酸锂电池中的有价成分进行了综合回收试验。针对锰酸锂和石墨混合粉体进行酸浸:当硫酸的浓度为0.5 mol/L、双氧水的浓度为6%时,LiMn_(2)O_(4)基本上完全分解并浸出,从而获得较纯的石墨;对锰酸锂酸浸液进行电解,可制备出纯度为98.41%的MnO_(2),但电解产物结晶度低,含有较多的非晶成分。针对铝箔和铜箔混合体进行碱浸可实现铝箔和铜箔分离,采用含有NaAlO_(2)的滤液制备出纯度为95.14%的Al(OH)_(3);将废铜箔压制成片作为阳极,在Cu^(2+)45 g/L、H_(2)SO_(4) 185 g/L、反应温度50℃、电解时间2 h、极间距3 cm、电流密度400 A/m^(2)的条件下进行电解精炼,电流效率为96.2%,电解精铜的纯度达到98.96%。 展开更多
关键词 废锰酸锂电池 综合回收 碱浸 石墨 二氧化 铜箔 铝箔
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Lithium and manganese extraction from manganese-rich slag originated from pyrometallurgy of spent lithium-ion battery 被引量:5
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作者 Guo-xing REN Cai-bin LIAO +1 位作者 Zhi-hong LIU Song-wen XIAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第8期2746-2756,共11页
Mn and Li were selectively extracted from the manganese-rich slag by sulfation roasting−water leaching.The extraction mechanisms of Mn and Li were investigated by means of XRD,TG−DSC,and SEM−EDS.73.71%Mn and 73.28%Li ... Mn and Li were selectively extracted from the manganese-rich slag by sulfation roasting−water leaching.The extraction mechanisms of Mn and Li were investigated by means of XRD,TG−DSC,and SEM−EDS.73.71%Mn and 73.28%Li were leached under optimal experimental conditions:acid concentration of 82 wt.%,acid-to-slag mass ratio of 1.5:1,roasting temperature of 800°C,and roasting time of 2 h.During the roasting process,the manganese-rich slag first reacted with concentrated sulfuric acid,producing MnSO_(4),MnSO_(4)·H_(2)O,Li_(2)Mg(SO_(4))_(2),Al_(2)(SO_(4))_(3),and H_(4)SiO_(4).With the roasting temperature increasing,H_(4)SiO_(4) and Al_(2)(SO_(4))_(3) decomposed successively,resulting in generation of mullite and spinel.The mullite formation aided in decreasing the leaching efficiencies of Al and Si,while increasing the Li leaching efficiency.The formation of spinel,however,decreased the leaching efficiencies of Mn and Li. 展开更多
关键词 spent lithium-ion battery manganese-rich slag sulfation roasting manganese recovery lithium recovery
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