Solubility, Density, and Refractive Index in the Ternary System (K2B4O7 + Mg2B6O11 + H2O) at 298.15 K


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Resumo

Solubilities, densities, and refractive indices for the ternary system (K2B4O7 + Mg2B6O11 + H2O) at 298.15 K have obtained using the method of isothermal dissolution equilibrium. On the basis of the experimental data, the phase diagram and its corresponding physicochemical properties versus composition diagram in the system have been plotted. It has been found that there is one eutectic point and two crystallization regions corresponding to the large area of inderite (L + Mg2B6O11 · 15H2O) and the relative small area of potassium borate tetrahydrate (L + K2B4O7 · 4H2O), respectively. Neither double salt nor solid solution have been found in this system. The physicochemical properties (density and refractive index) of the ternary system at 298.15 K change regularly with the increasing of potassium borate concentration. The calculated values of density and refractive index using empirical equations of the ternary 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

Dong Zhao

College of Chemical Engineering and Materials Science

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

Yun Song

College of Chemical Engineering and Materials Science

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

Zhen Shi

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

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