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Solubility and Density Measurements of Concentrated Li2B4O7 + Na2B4O7 + K2B4O7 + Li2SO4 + Na2SO4 + K2SO4 + H2O Solution at 273.15 K

Ying Zeng, Xiaofeng Lin

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Abstract

The isothermal evaporation method was employed to investigate the phase equilibria in the quinary system Li 2 B 4 O 7 + Na 2 B 4 O 7 + K 2 B 4 O 7 + Li 2 SO 4 + Na 2 SO 4 + K 2 SO 4 + H 2 O at 273.15 K. The solubilities and densities of the equilibrated solution were measured. The crystalloid forms of the solid phase were determined using chemical analysis and an X-ray diffraction method. On the basis of the experimental data, the stereophase diagram, the projected phase diagram saturated with Li 2 B 4 O 7, the projected phase diagram saturated with Na 2 B 4 O 7, and the lithium content diagram of the quinary system were plotted. The stereophase diagram consists of six invariant points, eighteen univariant curves, and eight crystallization fields corresponding to sodium sulfate decahydrate (Na 2 SO 4 ·10H 2 O), potassium sulfate, lithium sulfate monohydrate, sodium tetraborate decahydrate (borax, Na 2 B 4 O 7 ·10H 2 O), potassium tetraborate tetrahydrate (K 2 B 4 O 7 ·4H 2 O), lithium metaborate octahydrate (LiBO 2 ·8H 2 O), a potassium and lithium sulfate double salt (KLiSO 4 ), and a sodium and lithium sulfate double salt (3Na 2 SO 4 ·Li 2 SO 4 ·12H 2 O). The double salt glaserite (3K 2 SO 4 ·Na 2 SO 4 ) is not found at this temperature. The salt borax has the largest crystallization field and can be easily separated from the solution. The lithium content changes irregularly along with the evaporation process, thus the lithium salts are separated in a dispersed way.

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The isothermal evaporation method was employed to investigate the phase equilibria in the quinary system Li 2 B 4 O 7 + Na 2 B 4 O 7 + K 2 B 4 O 7 + Li 2 SO 4 + Na 2 SO 4 + K 2 SO 4 + H 2 O at 273.15 K. The solubilities and densities of the equilibrated solution were measured. The crystalloid forms of the solid phase were determined using chemical analysis and an X-ray diffraction method. On the basis of the experimental data, the stereophase diagram, the projected phase diagram saturated with Li 2 B 4 O 7, the projected phase diagram saturated with Na 2 B 4 O 7, and the lithium content diagram of the quinary system were plotted. The stereophase diagram consists of six invariant points, eighteen univariant curves, and eight crystallization fields corresponding to sodium sulfate decahydrate (Na 2 SO 4 ·10H 2 O), potassium sulfate, lithium sulfate monohydrate, sodium tetraborate decahydrate (borax, Na 2 B 4 O 7 ·10H 2 O), potassium tetraborate tetrahydrate (K 2 B 4 O 7 ·4H 2 O), lithium metaborate octahydrate (LiBO 2 ·8H 2 O), a potassium and lithium sulfate double salt (KLiSO 4 ), and a sodium and lithium sulfate double salt (3Na 2 SO 4 ·Li 2 SO 4 ·12H 2 O). The double salt glaserite (3K 2 SO 4 ·Na 2 SO 4 ) is not found at this temperature. The salt borax has the largest crystallization field and can be easily separated from the solution. The lithium content changes irregularly along with the evaporation process, thus the lithium salts are separated in a dispersed way.

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Available abstract

The isothermal evaporation method was employed to investigate the phase equilibria in the quinary system Li 2 B 4 O 7 + Na 2 B 4 O 7 + K 2 B 4 O 7 + Li 2 SO 4 + Na 2 SO 4 + K 2 SO 4 + H 2 O at 273.15 K. The solubilities and densities of the equilibrated solution were measured. The crystalloid forms of the solid phase were determined using chemical analysis and an X-ray diffraction method. On the basis of the experimental data, the stereophase diagram, the projected phase diagram saturated with Li 2 B 4 O 7, the projected phase diagram saturated with Na 2 B 4 O 7, and the lithium content diagram of the quinary system were plotted. The stereophase diagram consists of six invariant points, eighteen univariant curves, and eight crystallization fields corresponding to sodium sulfate decahydrate (Na 2 SO 4 ·10H 2 O), potassium sulfate, lithium sulfate monohydrate, sodium tetraborate decahydrate (borax, Na 2 B 4 O 7 ·10H 2 O), potassium tetraborate tetrahydrate (K 2 B 4 O 7 ·4H 2 O), lithium metaborate octahydrate (LiBO 2 ·8H 2 O), a potassium and lithium sulfate double salt (KLiSO 4 ), and a sodium and lithium sulfate double salt (3Na 2 SO 4 ·Li 2 SO 4 ·12H 2 O). The double salt glaserite (3K 2 SO 4 ·Na 2 SO 4 ) is not found at this temperature. The salt borax has the largest crystallization field and can be easily separated from the solution. The lithium content changes irregularly along with the evaporation process, thus the lithium salts are separated in a dispersed way.

Key concepts: Lithium sulfate, Double salt, Potassium sulfate, Borax, Chemistry, Phase diagram, Quinary, Sodium sulfate

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Solubility and Density Measurements of Concentrated Li2B4O7 + Na2B4O7 + K2B4O7 + Li2SO4 + Na2SO4 + K2SO4 + H2O Solution at 273.15 K — Research Paper | ScholarLens