Thermodynamic Phase Equilibria of the Aqueous Ternary System (LiCl+LiBO2+H2O) at 308 K: Experimental Data and Predictions Using the Pitzer Model
Author:
Affiliation:
1. Tianjin Key Laboratory of Marine Resources and Chemistry, College of Chemical Engineering and Materials Science, Tianjin University of Science and Technology
2. College of Chemistry and Materials Science, Northwest University
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/jcej/49/4/49_15we045/_pdf
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3. Deng, T. L., X. Yu and B. Sun; “Metastable Phase Equilibrium in the Aqueous Quaternary System (Li2SO4+K2SO4+MgSO4+H2O) at 288.15 K,” J. Chem. Eng. Data, 53, 2496–2500 (2008)
4. Felmy, A. R. and J. H. Weare; “The Prediction Borate Mineral Equilibria in Natural Waters: Application to Searles Lake, California,” Geochim. Cosmochim. Acta, 50, 2771–2783 (1986)
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1. Dilution enthalpies of the binary systems (LiBO2 + H2O) and (LiB5O8 + H2O) and the ion interactions at 308.15 K;Thermochimica Acta;2023-09
2. Solubilities, Densities, Refractive Indices, and pH Values in the Ternary Systems (Li2SO4 + Li2CO3 + H2O) and (LiCl + Li2CO3 + H2O) at 308.15 K;Russian Journal of Physical Chemistry A;2023-06
3. Solid-Liquid Phase Equilibria of the Quaternary System (LiCl + LiBO2 + Li2B4O7 + H2O) at 308.15 K: Experimental and Theoretical Prediction;Journal of Chemistry;2022-10-11
4. Solid–Liquid Phase Equilibria and Boron Species Distribution in the Quaternary System LiCl–LiBO2–Li2B4O7–H2O at T = 323.15 K and P = 0.1 MPa;Journal of Chemical & Engineering Data;2022-08-04
5. Solubility determination and thermodynamic modeling in the quaternary system Li2SO4 – LiBO2 – Li2B4O7 – H2O at T = 308.15 K and p = 0.1 MPa;The Journal of Chemical Thermodynamics;2022-05
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