Recovery of Lithium from Simulated Nanofiltration-Treated Seawater Desalination Brine Using Solvent Extraction and Selective Precipitation
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[1] C. Valderrama,et al. Experimental and economic evaluation of nanofiltration as a pre-treatment for added-value elements recovery from seawater desalination brines , 2023, Desalination.
[2] K. Binnemans,et al. One-Step Solvometallurgical Process for Purification of Lithium Chloride to Battery Grade , 2022, Journal of Sustainable Metallurgy.
[3] N. Hilal,et al. Lithium recovery from brine: Recent developments and challenges , 2022, Desalination.
[4] Wensen Liu,et al. Mechanism study on the synergistic effect and emulsification formation of phosphine oxide with β-diketone for lithium extraction from alkaline systems , 2021, Separation and Purification Technology.
[5] K. Binnemans,et al. Mechanism of Ferric Chloride Facilitating Efficient Lithium Extraction from Magnesium-Rich Brine with Tri-n-butyl Phosphate , 2021 .
[6] V. Jegatheesan,et al. A review of resource recovery from seawater desalination brine , 2021, Reviews in Environmental Science and Bio/Technology.
[7] H. Shon,et al. A review on lithium recovery using electrochemical capturing systems , 2020 .
[8] Tao Qi,et al. Recovery of lithium from salt lake brine using a mixed ternary solvent extraction system consisting of TBP, FeCl3 and P507 , 2020 .
[9] K. Binnemans,et al. Selective removal of magnesium from lithium‐rich brine for lithium purification by synergic solvent extraction using β‐diketones and Cyanex 923 , 2020, AIChE journal. American Institute of Chemical Engineers.
[10] Wensen Liu,et al. Combining Selective Extraction and Easy Stripping of Lithium Using a Ternary Synergistic Solvent Extraction System through Regulation of Fe3+ Coordination , 2020 .
[11] Chuyang Y. Tang,et al. Membrane-based technologies for lithium recovery from water lithium resources: A review , 2019 .
[12] K. Binnemans,et al. Efficient and Sustainable Removal of Magnesium from Brines for Lithium/Magnesium Separation Using Binary Extractants , 2019, ACS Sustainable Chemistry & Engineering.
[13] J. Morillo,et al. Lithium recovery from desalination brines using specific ion-exchange resins , 2019, Desalination.
[14] M. Bayramoğlu,et al. Extraction of lithium from wastewaters using a synergistic solvent extraction system consisting of Mextral EOL and Cyanex 923 , 2019, Hydrometallurgy.
[15] Seunghyun Kim,et al. Rapid and selective lithium recovery from desalination brine using an electrochemical system. , 2019, Environmental science. Processes & impacts.
[16] Y. Zhang,et al. Lithium extraction from low-grade salt lake brine with ultrahigh Mg/Li ratio using TBP – kerosene – FeCl3 system , 2019, Separation and Purification Technology.
[17] Gregory P. Thiel,et al. Sodium Hydroxide Production from Seawater Desalination Brine: Process Design and Energy Efficiency. , 2018, Environmental science & technology.
[18] Pankaj K Choubey,et al. Advance review on the exploitation of the prominent energy-storage element Lithium. Part II: From sea water and spent lithium ion batteries (LIBs) , 2017 .
[19] W. Qin,et al. Lithium recovery from salt lake brine by counter-current extraction using tributyl phosphate/FeCl3 in methyl isobutyl ketone , 2017 .
[20] W. Qin,et al. Extraction of lithium from salt lake brine containing borate anion and high concentration of magnesium , 2016 .
[21] Jin-Young Lee,et al. Advance review on the exploitation of the prominent energy-storage element: Lithium. Part I: From mineral and brine resources , 2016 .
[22] Mamadou S Diallo,et al. Mining Critical Metals and Elements from Seawater: Opportunities and Challenges. , 2015, Environmental science & technology.
[23] Chu Yong Cheng,et al. Separation of lithium from sodium in chloride solutions using SSX systems with LIX 54 and Cyanex 923 , 2015 .
[24] T. Hirato,et al. Precipitation behavior of Ca(OH)2, Mg(OH)2, and Mn(OH)2 from CaCl2, MgCl2, and MnCl2 in NaOH-H2O solutions and study of lithium recovery from seawater via two-stage precipitation process , 2014 .
[25] W. Qin,et al. Extraction Equilibria of Lithium with Tributyl Phosphate in Kerosene and FeCl3 , 2012 .
[26] W. Qin,et al. Extraction Equilibria of Lithium with Tributyl Phosphate in Three Diluents , 2011 .
[27] S. Nishihama,et al. Selective Recovery Process of Lithium from Seawater Using Integrated Ion Exchange Methods , 2011 .
[28] A. Yaroshchuk. Dielectric exclusion of ions from membranes. , 2000, Advances in colloid and interface science.
[29] J. Szymanowski,et al. Composition of Copper Extractant LIX 54-100 , 1996 .
[30] M. Matsumoto,et al. RECOVERY OF LITHIUM FROM GEOTHERMAL WATER BY SOLVENT EXTRACTION TECHNIQUE , 1992 .
[31] T. V. Healy. SYNERGISM IN THE SOLVENT EXTRACTION OF METAL IONS BY DIBENZOYLMETHANE. , 1969 .
[32] T. V. Healy. Synergism in the solvent extraction of alkali metal ions by thenoyl trifluoracetone , 1968 .
[33] Mineral commodity summaries 2021 , 2020, Mineral Commodity Summaries.
[34] Zhiyong Zhou,et al. Recovery of lithium from salt-lake brines using solvent extraction with TBP as extractant and FeCl3 as co-extraction agent , 2020 .
[35] T. Zhao,et al. Anion exchange membranes for aqueous acid-based redox flow batteries: Current status and challenges , 2019, Applied Energy.
[36] Lijuan Li,et al. Recovery of lithium from alkaline brine by solvent extraction with β-diketone , 2018 .