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硫酸锂钠晶体相变点附近的光散射
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作者 张明生 尹真 《自然科学进展(国家重点实验室通讯)》 1992年第6期559-561,共3页
硫酸锂钠晶体(LiNaSO_4)属于二元阳离子硫酸盐.室温下它具有六角结构,其对称性为P31C(C_(3(?))~4),每个原胞中存在六个分子.硫酸锂钾晶体(LiKSO_4)也属于二元阳离子硫酸盐同样以锂离子作为阳离子,但是这两种材料的高温行为差别很大.Li的... 硫酸锂钠晶体(LiNaSO_4)属于二元阳离子硫酸盐.室温下它具有六角结构,其对称性为P31C(C_(3(?))~4),每个原胞中存在六个分子.硫酸锂钾晶体(LiKSO_4)也属于二元阳离子硫酸盐同样以锂离子作为阳离子,但是这两种材料的高温行为差别很大.Li的X射线研究和Zhang等的Raman光谱研究发现,LiKSO_4在高温区存在无公度相和超晶格相;而LiNaSO_4不存在这样的相;LiNaSO_4晶体在高温时显示了快离子导电性,而LiKSO_4不存在这样的导电性.Schroeder等,Josefson等研究表明,当温度升高至791K时,LiNaSO_4晶体进入体心立方的快离子导电相.836K温度下它的导电率为1.008Ω^(-1)cm^(-1).在791-893K的亮温区,晶体处于高温塑性相. 通过与温度有关的极化Raman光谱的测量,发现LiNaSO_4晶体存在三个温区:室温-705K,705-792K,792-893K. 展开更多
关键词 硫酸锂钠 相变 光散射 晶体
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Process for recycle of spent lithium iron phosphate battery via a selective leaching-precipitation method 被引量:23
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作者 LI Hao-yu YE Hua +1 位作者 SUN Ming-cang CHEN Wu-jie 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第11期3239-3248,共10页
Applying spent lithium iron phosphate battery as raw material,valuable metals in spent lithium ion battery were effectively recovered through separation of active material,selective leaching,and stepwise chemical prec... Applying spent lithium iron phosphate battery as raw material,valuable metals in spent lithium ion battery were effectively recovered through separation of active material,selective leaching,and stepwise chemical precipitation.Using stoichiometric Na2S2O8 as an oxidant and adding low-concentration H2SO4 as a leaching agent was proposed.This route was totally different from the conventional methods of dissolving all of the elements into solution by using excess mineral acid.When experiments were done under optimal conditions(Na2S2O8-to-Li molar ratio 0.45,0.30 mol/L H2SO4,60℃,1.5 h),leaching efficiencies of 97.53% for Li^+,1.39%for Fe^3+,and 2.58% for PO4^3−were recorded.FePO4 was then recovered by a precipitation method from the leachate while maintaining the pH at 2.0.The mother liquor was concentrated and maintained at a temperature of approximately 100℃,and then a saturated sodium carbonate solution was added to precipitate Li2CO3.The lithium recovery yield was close to 80%. 展开更多
关键词 lithium iron phosphate batteries selective leaching RECOVERY sodium persulfate lithium carbonate
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