[1] Chen Y, Tian Q Q, Chen B Z, et al.Preparation of lithium carbonate from spodumene by a sodium carbonate autoclave process[J].Hydrometallurgy, 2011, 109(1-2):43-46
[2] Sun Z, Cao H B, Xiao Y, et al.Toward Sustainability for Recovery of Critical Metals from Electronic Waste: The Hydrochemistry Processes[J].ACS Sustainable Chemistry & Engineering, 2017, 5(1):21-40
[3] http://baike.asianmetal.cn/metal/li/resources&production.shtml.2015
[4] Swain B.Recovery and recycling of lithium: A review[J].Separation and Purification Technology, 2017, 172:388-403
[5] Zheng X H, Gao W F, Zhang X H, et al.Spent lithium-ion battery recycling – Reductive ammonia leaching of metals from cathode scrap by sodium sulphite[J].Waste Management, 2017, 60:680-688
[6] 游清治.锂及其化合物在电池中的应用[J].新疆有色金属, 1990, (1):66-67
[7] 游清治.锂及其化合物在医药中的应用[J].世界有色金属, 1997, (12):38-40
[8] 游清治.锂在玻璃陶瓷工业中的应用[J].世界有色金属, 2000, (2):26-31
[9] 戎惠珍,邓立莲.碳酸锂的药理作用和临床应用[J].江西中医学院学报, 1995, 7(2):47-48
[10] 张嫦, 赵青.特种光学玻璃用高纯碳酸锂的制备[J].矿冶工程, 2005, (1):50-51
[11] 马培华.中国盐湖资源的开发利用与科技问题[J].地球科学进展, 2000, 15(4):365-375
[12] 林大泽.锂的用途及其资源开发[J].中国安全科学学报, 2004, 14(9):76-80
[13] 吴荣学.锂资源及产业的开发与利用[J].材料导报, 2012, 26(17):36-39
[14] 孙玉柱.碳酸锂结晶过程研究[D]. 华东理工大学, 2010.
[15] 胡开华,邱竹贤.工业铝电解添加碳酸锂的经验和建议[J].轻金属, 1992, (2):36-39
[16] 周义中, 张一鸣.铝电解添加碳酸锂工业试验[J].有色金属(冶炼部分), 1985, (6):15-17
[17] 吴鉴.氢化分解法从工业级碳酸锂提纯制备电池级碳酸锂[D]. 昆明理工大学, 2011.
[18] Kafantaris V, Coletti D J, Dicker R, et al.Lithium Treatment of Acute Mania in Adolescents: A Large Open Trial[J].Journal of the American Academy of Child & Adolescent Psychiatry, 2003, 42(9):1038-1045
[19] Akin F, Yaylali G F, Bastemir M.The Use of Lithium Carbonate in the Preparation for Definitive Therapy in Hyperthyroid Patients[J].Medical Principles and Practice, 2008, 17(2):167-170
[20] Freeman M P, Freeman S A.Lithium: Clinical Considerations in Internal Medicine[J].The American Journal of Medicine, 2006, 119(6):478-481
[21] 陈强,肖定全,吴家刚,等.法制备铌酸锂陶瓷的结晶性能研究[J].功能材料, 2004, 35(4):477-479
[22] Rezza I, Salinas E, Calvente V, et al.Extraction of lithium from spodumene by bioleaching[J].Letters in Applied Microbiology, 1997, 25(3):172-176
[23] Yu J J, Zheng M P, Wu Q, et al.Extracting lithium from Tibetan Dangxiong Tso Salt Lake of carbonate type by using geothermal salinity-gradient solar pond[J].Solar Energy, 2015, 115:133-144
[24] 曹伟,孙淑英,宋兴福,等.含锂脱附液制备碳酸锂[J].过程工程学报, 2016, 16(3):424-430
[25] 伊文涛,闫春燕,戴志锋,等.高纯碳酸锂的应用与制备方法评述[J].化工矿物与加工, 2005, 34(11):5-8
[26] 戴志锋,肖小玲,李法强,等.高纯碳酸锂的制取方法探讨[J].盐湖研究, 2005, 13(2):53-59
[27] Meshram P, Pandey B D, Mankhand T R.Extraction of lithium from primary and secondary sources by pre-treatment, leaching and separation: A comprehensive review[J].Hydrometallurgy, 2014, 150:192-208
[28] 孟平.锂镁浮选分离方法及其在盐湖卤水提取锂中的应用研究[D]. 江南大学, 2011.
[29] Grosjean C, Miranda P H, Perrin M, et al.Assessment of world lithium resources and consequences of their geographic distribution on the expected development of the electric vehicle industry[J].Renewable and Sustainable Energy Reviews, 2012, 16(3):1735-1744
[30] https://minerals.usgs.gov/minerals/pubs/commodity/lithium/.2015
[31] 郑锦平,刘喜方.中国的锂资源[J].新材料产业, 2007, (8):13-16
[32] 罗清平,郭朋成,李存增,等.我国锂资源分布及提取工艺研究现状[J].湿法冶金, 2012, 31(2):67-70
[33] 李康,王建平.中国锂资源开发利用现状及对策建议[J].资源与产业, 2016, (1):82-86
[34] 张长信.煤代重油在锂辉石—石灰石烧结法制取锂盐工艺中的应用[J].昆明工学院学报, 1994, (3):70-72
[35] 陈亚,廖婷,陈白珍,等.纯碱压煮法从锂辉石中提取锂的研究[J].有色金属(冶炼部分), 2011, (9):21-23
[36] Luong V T, Kang D J, An J W, et al.Iron sulphate roasting for extraction of lithium from lepidolite[J].Hydrometallurgy, 2014, 141(2):8-16
[37] Barbosa L I, González J A, Ruiz M D C.Extraction of lithium from β-spodumene using chlorination roasting with calcium chloride[J].Thermochimica Acta, 2015, 605:63-67
[38] Barbosa L I, Valente G, Orosco R P, et al.Lithium extraction from β-spodumene through chlorination with chlorine gas[J].Minerals Engineering, 2014, 56:29-34
[39] Yan Q X, Li X H, Wang Z X, et al.Extraction of lithium from lepidolite by sulfation roasting and water leaching[J].International Journal of Mineral Processing, 2012, S(110-111):1-5
[40] An J W, Kang D J, Tran K T, et al.Recovery of lithium from Uyuni salar brine[J].Hydrometallurgy, 2012, S117-118(4):64-70
[41] Mehta, Vijay C.Process for recovery lithium from salt brines [P]. U. S. Pat. 4723962, 1988-2-9.
[42] Marshall P, Neipert, Charles K, et al.Method of lithium recovery [P]. U. S. Pat. 3306700, 1967-2-28.
[43] 刘元会,邓天龙.国内外从盐湖卤水中提锂工艺技术研究进展[J].世界科技研究与发展, 2006, 28(5):69-75
[44] 孙锡良.盐湖含锂卤水萃取锂及制备碳酸锂工艺研究[D]. 中南大学, 2005.
[45] 汪发波,王林生,文小强.碳化分解法提纯碳酸锂的研究[J].有色金属科学与工程, 2013, (2):41-45
[46] 吴鉴,姚耀春,龙萍.循环氢化对电池级碳酸锂制备中钙镁去除的影响[J].材料导报, 2013, 27(S1):150-153
[47] Yi W T, Yan C Y, Ma P H, et al.Refining of crude Li2CO3 via slurry phase dissolution using CO2[J].Separation and Purification Technology, 2007, 56(3):241-248
[48] 邓姝皓,杨子萱,杨佳逸,等.由扎布耶盐湖粗盐制备高纯碳酸锂新工艺研究水[J].无机盐工业, 2016, 48(4):26-30
[49] Brown.Process for producing high purity lithium carbonate [P]. U. S. Pat. 4207297, 1980-6-10.
[50] Gao W F, Zhang X H, Zheng X H, et al.Lithium Carbonate Recovery from Cathode Scrap of Spent Lithium-Ion Battery: A Closed-Loop Process[J].Environmental Science & Technology, 2017, 51(3):1662-1669
[51] 靳朝辉.离子交换动力学的研究[D]. 天津大学, 2004.
[52] 凌宝萍.高纯碳酸锂制备过程中氢化与除硼研究[D]. 中国科学院青海盐湖研究所, 2004.
[53] Yi W T, Yan C Y, Ma P H.Removal of calcium and magnesium from LiHCO3 solutions for preparation of high-purity Li2CO3 by ion-exchange resin[J].Desalination, 2009, 249(2):729-735
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