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富锂锰电池材料的制备工艺及其性能 被引量:1
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作者 刘利雅 袁德林 《上海有色金属》 CAS 2011年第3期103-106,共4页
以硫酸锰、硫酸镍、氢氧化钠等为原料,先用氢氧化物共沉淀法制备前驱体,然后再用高温固相合成法合成富锂锰基正极材料Li_(1.07)Mn_(0.53)Ni_(0.4)O_2研究不同的烧成温度和配锂量对Li_(1.07)Mn_(0.53)Ni_(0.4)O_2正极材料结构和电化学性... 以硫酸锰、硫酸镍、氢氧化钠等为原料,先用氢氧化物共沉淀法制备前驱体,然后再用高温固相合成法合成富锂锰基正极材料Li_(1.07)Mn_(0.53)Ni_(0.4)O_2研究不同的烧成温度和配锂量对Li_(1.07)Mn_(0.53)Ni_(0.4)O_2正极材料结构和电化学性能的影响。研究表明:随着烧成温度的增加,材料的放电容量也随之升高;随着锂含量的增加,材料的放电容量随之增大;当配锂量系数超过1.10时,材料的放电容量反而降低。 展开更多
关键词 富锂锰电池 氢氧化物共沉淀法 高温固相合成法 Li1.07Mn0.53Ni0.4O2 放电容量
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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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