Reactive crystallization of calcium sulfate dihydrate (gypsum) was investigated at pH 3.5 and 65 degrees C in the presence of citric acid and Cr3+ ions. Concentrations of both additives varied between 0 and 4000 ppm. The combined effect of additives on crystal size distributions, filtration characteristics, and crystal morphology were investigated and discussed. It was found that the effect of citric acid on gypsum morphology was suppressed in the presence of Cr3+ ions. The change of morphology is related to the complex formation between Cr3+ ions and citric acid at high ion concentrations
The sorption of dissolved inorganic pollutants into the structure of minerals is an important proces...
Phase transformation of calcium sulfate hemihydrate to calcium sulfate dihydrate was performed in a ...
The research is aimed to the clarification of the calcium sulfatedihydrate crystals growth and forma...
The effect of Fe2+, Fe3+, and Cr3+ ions on crystallization of calcium sulfate dihydrate (gypsum) pro...
The crystallization of Calcium sulfate dihydrate produced by the reaction between pure Ca(OH)(2) sus...
In the study, the optimal experimental conditions for gypsum crystals formation were 323 K, 300 rpm ...
The effects that 50–500 mM aqueous Li+, Na+, K+, and Mg2+ have on the crystallization kinetics of ca...
The present work focused on the recycle of the sulfate and the metal ions from acidic wastewater dis...
Currently, functional additives represented by many classes of substances and compounds, including p...
Calcium sulphate dihydrate is a compound important among those which form troublesome scale in disti...
Calcium sulfate dihydrate crystallization was carried out using a mixed-suspension mixed-product rem...
Diese Arbeit beschäftigt sich mit der Kristallisation von Calciumsulfat-Dihydrat aus Calciumsulfat-H...
Currently, functional additives are widely spread in the production of inorganic dry mixtures. Howev...
The comprehension of the mechanisms of nucleation and growth that regulate the gypsum (calcium sulfa...
Measurements of the induction period for gypsum nucleation, when citric acid is added in solution as...
The sorption of dissolved inorganic pollutants into the structure of minerals is an important proces...
Phase transformation of calcium sulfate hemihydrate to calcium sulfate dihydrate was performed in a ...
The research is aimed to the clarification of the calcium sulfatedihydrate crystals growth and forma...
The effect of Fe2+, Fe3+, and Cr3+ ions on crystallization of calcium sulfate dihydrate (gypsum) pro...
The crystallization of Calcium sulfate dihydrate produced by the reaction between pure Ca(OH)(2) sus...
In the study, the optimal experimental conditions for gypsum crystals formation were 323 K, 300 rpm ...
The effects that 50–500 mM aqueous Li+, Na+, K+, and Mg2+ have on the crystallization kinetics of ca...
The present work focused on the recycle of the sulfate and the metal ions from acidic wastewater dis...
Currently, functional additives represented by many classes of substances and compounds, including p...
Calcium sulphate dihydrate is a compound important among those which form troublesome scale in disti...
Calcium sulfate dihydrate crystallization was carried out using a mixed-suspension mixed-product rem...
Diese Arbeit beschäftigt sich mit der Kristallisation von Calciumsulfat-Dihydrat aus Calciumsulfat-H...
Currently, functional additives are widely spread in the production of inorganic dry mixtures. Howev...
The comprehension of the mechanisms of nucleation and growth that regulate the gypsum (calcium sulfa...
Measurements of the induction period for gypsum nucleation, when citric acid is added in solution as...
The sorption of dissolved inorganic pollutants into the structure of minerals is an important proces...
Phase transformation of calcium sulfate hemihydrate to calcium sulfate dihydrate was performed in a ...
The research is aimed to the clarification of the calcium sulfatedihydrate crystals growth and forma...