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1、doi:10.3969/j.issn.1007-7545.2017.08.006磁性锂离子筛的制备及提锂性能研究李志勇1,李亦然1,张卫民1,项军2,廉欢1,陈程3(1.东华理工大学水资源与环境工程学院,南昌330013;2.天津科技大学化工与材料学院,天津300457;3.东华理工大学地球科学学院,南昌330013)摘要:在Stober法的基础上采用二氧化硅对Fe3O4包覆钝化,使锂锰氧化物在二氧化硅界面生长,陈化、过滤、烘干、煅烧后生成Li1.6Mn1.6O4@SiO2@Fe3O4纳米锂离子
2、筛前驱体。酸浸抽锂后得到磁性锂离子筛。SEM结合EDX测试表明,锂锰尖晶石相对均匀地包覆在钝化后的磁核表面,磁性离子筛的平均粒径为18.6nm。在配制的模拟卤水中,H1.6Mn1.6O4对锂的平衡吸附量是8.78mg/g,本文制备的H1.6Mn1.6O4@SiO2@Fe3O4对锂平衡吸附量可达6.01mg/g,除了Mg2+平衡吸附量达到5.213mg/g以外,其它离子的吸附量都在1.756mg/g以下,说明材料对Li+的吸附有较好的选择性。用磁性锂离子筛开展反复吸附、脱附试验10次后,其对Li+
3、仍有良好的吸附效果,平衡吸附量稳定在5.1mg/g,锂解吸率在95%左右。磁性锂离子筛的饱和磁化强度为15.14emu/g,矫顽力为63.02G,可在外加磁场作用下实现与卤水的磁分离。关键词:包覆;钝化;磁性锂离子筛;吸附;磁分离中图分类号:TQ131.1文献标志码:A文章编号:1007-7545(2017)08-0000-00PreparationofMagneticLithiumIon-sieveandItsLithiumUptakingLIZhi-yong1,LIYi-ran1,ZHANG
4、Wei-min1,XIANGJun2,LIANHuan1,CHENCheng3(1.SchoolofWaterResourcesandEnvironmentalEngineering,EastChinaUniversityofTechnology,Nanchang330013,China;2.TianjinUniversityofScienceandTechnology,Tianjin300457,China;3.SchoolofEarthSciences,EastChinaUniversity
5、ofTechnology,Nanchang330013,China)Abstract:Fe3O4waspassivatedbysilicabasedonStobermethod.Lithiummanganeseoxidegrewatsilicainterface.Li1.6Mn1.6O4@SiO2@Fe3O4nanometerlithiumion-sieveprecursorswereproducedafteraging,filtration,drying,andcalcining.SEMand
6、EDXtestsshowthatlithiummanganesespinelisrelativelyuniformlycoatedonsurfaceofpassivatedmagneticcore.Averageparticlesizeofmagneticion-sieveis18.6nm.EquilibriumadsorptioncapacityoflithiumH1.6Mn1.6O4is8.78mg/g,andadsorptioncapacityofH1.6Mn1.6O4@SiO2@Fe3O
7、4preparedforthisresearchis6.01mg/ginsimulatedbrine.InadditiontoMg2+equilibriumadsorptioncapacityof5.213mg/g,adsorptionofotherionsis1.756mg/gbelow,indicatingthatadsorptionofLi+tomaterialhasgoodselectivity.Afterrepeatedexperimentswithmagneticlithiumion
8、sievesfor10times,equilibriumadsorptioncapacityofLi+is5.1mg/gwithdesorptionrateoflithiumofabout95%.Magneticlithiumionsievehasgoodmagneticpropertieswithsaturationmagnetizationof15.14emu/gandcoercivityof63.02G,whichcanbeseparatedfrombrinebymagnetismsepa