Match each chemical mixture recovery requirement on the left with the most appropriate physical separation technique on the right.
- Separating insoluble chalk () powder suspended in an aqueous mediumFiltration
- Obtaining pure hydrated copper(II) tetraoxosulfate(VI) crystals () from an aqueous solutionEvaporation to saturation followed by cooling
- Recovering thermally stable, dry sodium chloride () completely from sea waterEvaporation to complete dryness
- Separating potassium trioxonitrate(V) () from a solution containing a soluble sodium chloride () impurity based on temperature-solubility dependenceFractional crystallization
Cevap
Insoluble chalk suspended in water is separated by filtration. Hydrated copper(II) tetraoxosulfate(VI) crystals require evaporation to saturation followed by cooling to avoid thermal decomposition. Dry sodium chloride is recovered by evaporation to complete dryness. Potassium trioxonitrate(V) is purified from sodium chloride impurity using fractional crystallization.
Each technique is uniquely suited to the physical properties of the mixture: filtration removes insoluble suspensions; evaporation to saturation followed by cooling yields hydrated crystals without thermal decomposition; direct evaporation to dryness efficiently recovers anhydrous thermally stable salts; fractional crystallization separates multiple soluble solutes using solubility-temperature gradients.
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Anahtar Kavram
Selection of separation techniques (filtration, evaporation, crystallization, fractional crystallization) based on solubility and thermal stability.