Li+ enrichment behavior in a sodium sulfate and low carbonate salt lake brine

Results in Materials - Tập 7 - Trang 100107 - 2020
Yanfang Ma1,2,3, Kanshe Li1, Zhihong Zhang2,3, Xin Liu4
1Chemistry and Chemical Engineering College of Xi'an University of Science and Technology, XI'An, Shanxi, 710054, People's Republic of China
2Key Laboratory of Comprehensive and Highly Efficient Utilization of Salt Lake Resources, Qinghai Institute of Salt Lakes, Chinese Academy of Sciences, Xining, 810008, People's Republic of China
3Key Laboratory of Salt Lake Resources Chemistry of Qinghai Province, Xining, 810008, People's Republic of China
4University of Chinese Academy of Sciences, Beijing 100049, People’s Republic of China

Tài liệu tham khảo

Han, 2011, Preliminary discussions on uranium enrichment in typical saline lakes in Northwestern China, Uranium Geol., 27, 160 Yu, 2013, Research progress of lithium extraction process in lithium-containing salt lake, Chem. Ind. Eng. Prog., 13 Gao, 2011, Brine lithium resource in the salt lake and advances in its exploitation, Diqiu Xuebao, 32, 483 Peng-Sheng, 2011, Recent development on comprehensive utilization of salt lake resources, Chin. J. Inorg. Chem., 27, 801 Wei, 2014, Boron isotope geochemistry of salt sediments from the Dongtai salt lake in Qaidam Basin: boron budget and sources, Chem. Geol., 2014, 74, 10.1016/j.chemgeo.2014.04.026 Chang, 2017, Chronology for terraces of the Nalinggele River in the north Qinghai-Tibet Plateau and implications for salt lake resource formation in the Qaidam Basin, Quat. Int., 12, 10.1016/j.quaint.2016.02.022 Yu, 2017, Extracting lithium from Tibetan Dangxiong Tso Salt Lake of carbonate type by using geothermal salinity-gradient solar pond, Sol. Energy, 133 Ooi, 2017, Recovery of lithium from salt-brine eluates by direct crystallization as lithium sulfate, Hydrometallurgy, 123, 10.1016/j.hydromet.2017.10.007 Taborga, 2017, Effect of additives on size and shape of lithium carbonate crystals, J. Cryst. Growth, 5, 10.1016/j.jcrysgro.2016.12.001 Grosjean, 2012, Assessment of world lithium resources and consequences of their geographic distribution on the expected development of the electric vehicle industry, Renew. Sustain. Energy Rev., 16, 1735, 10.1016/j.rser.2011.11.023 Hykawy, 2010, Looking at lithium: discussing market demand for lithium in electronics, Mater. World Ceram. Lithium, 18, 34 Dewulf, 2010, Recycling rechargeable lithium ion batteries: critical analysis of natural resource savings, Resour. Conserv. Recycl., 54, 229, 10.1016/j.resconrec.2009.08.004 Liu, 2014, Solid−liquid metastable phase equilibria in the five-component system (Li+,Na+,K+,Cl+,SO42-,H2O) at 308.15 K, J. Chem. Eng. Data, 1685, 10.1021/je500140e Zeng, 2011, Metastable phase equilibrium in the aqueous quaternary system (Li2SO4+ Na2SO4+ Li2B4O7+ Na2B4O7+ H2O) at 273.15 K, J. Chem. Eng. Data, 56, 2569, 10.1021/je200091k Zheng, 2010, Hydrochemistry and minerals assemblages of salt lakes in the Qinghai-Tibet Plateau, Acta Geol. Sin., 1585 Bauman, 1997 Chang, 2017, FengQing han, chronology for terraces of the nalinggele river in the north Qinghai-Tibet Plateau and implications for Salt Lake resource formation in the qaidam basin, Quat. Int., 430, 12, 10.1016/j.quaint.2016.02.022 Sha-sha, 2004, Exploitation actuality of saline lake lithium resources in Tibet, Geol. Prospect., 40, 11 Gao, 2012, The 273.15-K-isothermal evaporation experiment of lithium brine from the Zhabei Salt Lake, Tibet, and its geochemical significance, Aquat. Geochem., 18, 343, 10.1007/s10498-012-9168-1 Ma, 2016, Study on Li+ enrichment behavior of sodium sulfate in the saline lake brine at different temperatures—as an example Laguocuo salt lake brines in Tibet, Acta Geosci. Sin., 37, 307 Hongyun, 2010, Study on catalytic oxidation of tannic acid by Laccase from Rhus Vernicifera, Chem. Bioeng., 23, 4 Room, 1988 Xu, 2009, Separating technique for magnesium and lithium from high M g/Li ratio salt lake brine, J. Cent. S. Univ., 40, 36