The kinetics of crystal growth and dissolution of strontium oxalate monohydrate
-
Add time:08/07/2019 Source:sciencedirect.com
The crystal growth and dissolution of strontium oxalate monohydrate have been studied at 25°C by following the changes in electrical conductivity of supersaturated and subsaturated aqueous solutions seeded with aged crystals of the monohydrate salt. Both processes follow a kinetic equation in which the rate of reaction is proportional to the concentration of the lattice ions. The critical supersaturation or threshold level for homogeneous nucleation and growth of strontium oxalate is considerably lower than that for many other sparingly soluble salts. Sodium pyrophosphate shows a strong inhibiting effect on the rate of crystal growth whereas its influence on the dissolution process is negligible. The thermodynamic association constant for the formation of strontium monooxalate complexes in solution has been determined conductimetrically; the value is 510 l mole−1.
We also recommend Trading Suppliers and Manufacturers of Strontium chloride monohydrate (cas 16894-53-4). Pls Click Website Link as below: cas 16894-53-4 suppliers
Prev:Thermal decomposition and rehydration of strontium oxalate: morphological evolution
Next:Photocatalytic reduction of carbon dioxide by strontium titanate nanocube-dispersed mesoporous silica) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Hydrothermal crystallisation and X-ray structure of anhydrous strontium oxalate08/12/2019
- Morphological control of strontium oxalate particles by PSMA-mediated precipitation reaction08/11/2019
- Bulk crystal growth and nonlinear optical characterization of semiorganic single crystal: Cadmium (II) dibromide l08/10/2019
- Strontium modified biocements with zero order release kinetics08/09/2019
- Photocatalytic reduction of carbon dioxide by strontium titanate nanocube-dispersed mesoporous silica08/08/2019
- Thermal decomposition and rehydration of strontium oxalate: morphological evolution08/06/2019
- 3D-printed barium strontium titanate-based piezoelectric scaffolds for bone tissue engineering08/05/2019
- Growth and characterization of new semi-organic l08/04/2019
-
Health and Chemical more >


