Solubilities, Densities, and Refractive Indices in the Quaternary System (Li2B4O7 + Na2B4O7 + Mg2B6O11 + H2O) at 298.15 K


Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

Solubilities, densities, and refractive indices in the quaternary system (Li2B4O7 + Na2B4O7 + Mg2B6O11 + H2O) at T = 298.15 K and p = 0.1 MPa were investigated experimentally with the method of isothermal dissolution equilibrium. According to the experimental data, the phase diagrams and the diagrams of densities and refractive indices versus lithium tetraborate composition in the solution were plotted, respectively. In the phase diagrams of the quaternary system at 298.15 K, there are one invariant point, three univariant isotherm dissolution curves, and three crystallization regions corresponding to Li2B4O7 · 3H2O, Na2B4O7 · 10H2O and Mg2B6O11 · 15H2O, respectively. The size of crystallization areas of salt is in the order Mg2B6O11 · 15H2O > Na2B4O7 · 10H2O > Li2B4O7 · 3H2O, which demonstrates Mg2B6O11 · 15H2O can be more easily separated from solution in this quaternary system. The solution density and refractive index of the quaternary system at 298.15 K change regularly with the increasing of Li2B4O7 concentration. The calculated values of density and refractive index using empirical equations of the quaternary system are in good agreement with the experimental values.

Sobre autores

Shi-Qiang Wang

College of Chemical Engineering and Materials Science; Tianjin Key Laboratory of Marine Resources and Chemistry

Autor responsável pela correspondência
Email: wangshiqiang@tust.edu.cn
República Popular da China, Tianjin, 300457; Tianjin, 300457

Yun Song

College of Chemical Engineering and Materials Science

Email: wangshiqiang@tust.edu.cn
República Popular da China, Tianjin, 300457

Xue-Min Du

College of Chemical Engineering and Materials Science

Email: wangshiqiang@tust.edu.cn
República Popular da China, Tianjin, 300457

Ya-Fei Guo

College of Chemical Engineering and Materials Science; Tianjin Key Laboratory of Marine Resources and Chemistry

Email: wangshiqiang@tust.edu.cn
República Popular da China, Tianjin, 300457; Tianjin, 300457

Tian-Long Deng

College of Chemical Engineering and Materials Science; Tianjin Key Laboratory of Marine Resources and Chemistry

Email: wangshiqiang@tust.edu.cn
República Popular da China, Tianjin, 300457; Tianjin, 300457

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML

Declaração de direitos autorais © Pleiades Publishing, Ltd., 2018