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Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble  Anhydrite γ-CaSO4 | ACS Omega
Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO4 | ACS Omega

Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble  Anhydrite γ-CaSO4 | ACS Omega
Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO4 | ACS Omega

SEM of calcium sulfate (gypsum) precipitate in presence of additive... |  Download Scientific Diagram
SEM of calcium sulfate (gypsum) precipitate in presence of additive... | Download Scientific Diagram

Membranes | Free Full-Text | Gypsum (CaSO4·2H2O) Scaling on  Polybenzimidazole and Cellulose Acetate Hollow Fiber Membranes under  Forward Osmosis
Membranes | Free Full-Text | Gypsum (CaSO4·2H2O) Scaling on Polybenzimidazole and Cellulose Acetate Hollow Fiber Membranes under Forward Osmosis

Investigations on dehydration and rehydration processes in the CaSO4 – H2O  system at controlled time, temperature and humidity
Investigations on dehydration and rehydration processes in the CaSO4 – H2O system at controlled time, temperature and humidity

Determination and Analysis of the Solubility of CaSO4·2H2O and α-CaSO4·0.5H2O  in Formamide Aqueous Solutions at T = 303.15–363.15 K | Journal of Chemical  & Engineering Data
Determination and Analysis of the Solubility of CaSO4·2H2O and α-CaSO4·0.5H2O in Formamide Aqueous Solutions at T = 303.15–363.15 K | Journal of Chemical & Engineering Data

Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble  Anhydrite γ-CaSO4 | ACS Omega
Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO4 | ACS Omega

Thermodynamic Modeling of Calcium Sulfate Hydrates in the CaSO4–H2O System  from 273.15 to 473.15 K with Extension to 548.15 K | Journal of Chemical &  Engineering Data
Thermodynamic Modeling of Calcium Sulfate Hydrates in the CaSO4–H2O System from 273.15 to 473.15 K with Extension to 548.15 K | Journal of Chemical & Engineering Data

Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble  Anhydrite γ-CaSO4 | ACS Omega
Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO4 | ACS Omega

Influence of Activity of CaSO4·2H2O on Hydrothermal Formation of CaSO4·0.5H2O  Whiskers
Influence of Activity of CaSO4·2H2O on Hydrothermal Formation of CaSO4·0.5H2O Whiskers

The Influence of Impurities on the Dehydration and Conversion Process of Calcium  Sulfate Dihydrate to α-Calcium Sulfate Hemihydrate in the Two-Step  Wet-Process Phosphoric Acid Production | ACS Sustainable Chemistry &  Engineering
The Influence of Impurities on the Dehydration and Conversion Process of Calcium Sulfate Dihydrate to α-Calcium Sulfate Hemihydrate in the Two-Step Wet-Process Phosphoric Acid Production | ACS Sustainable Chemistry & Engineering

PDF) Dehydration Pathways of Gypsum and the Rehydration Mechanism of  Soluble Anhydrite γ-CaSO 4
PDF) Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO 4

A crystallographic study of the low-temperature dehydration products of  gypsum, CaSOa ' 2H2Oz hemihydrate CaSOr ' 0.50H2O, and 1
A crystallographic study of the low-temperature dehydration products of gypsum, CaSOa ' 2H2Oz hemihydrate CaSOr ' 0.50H2O, and 1

Experimental Study of Hydration/Dehydration Behaviors of Metal Sulfates  M2(SO4)3 (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature  Thermochemical Heat Storage Materials | ACS Omega
Experimental Study of Hydration/Dehydration Behaviors of Metal Sulfates M2(SO4)3 (M = Sc, Yb, Y, Dy, Al, Ga, Fe, In) in Search of New Low-Temperature Thermochemical Heat Storage Materials | ACS Omega

Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble  Anhydrite γ-CaSO4 | ACS Omega
Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO4 | ACS Omega

Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble  Anhydrite γ-CaSO4 | ACS Omega
Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO4 | ACS Omega

Calcium sulfate dihydrate | CaH4O6S - PubChem
Calcium sulfate dihydrate | CaH4O6S - PubChem

Reaction Characteristics of CaSO4/CaSO4·1/2H2O Reversible Reaction for  Chemical Heat Pump | Semantic Scholar
Reaction Characteristics of CaSO4/CaSO4·1/2H2O Reversible Reaction for Chemical Heat Pump | Semantic Scholar

A crystallographic study of the low-temperature dehydration products of  gypsum, CaSOa ' 2H2Oz hemihydrate CaSOr ' 0.50H2O, and 1
A crystallographic study of the low-temperature dehydration products of gypsum, CaSOa ' 2H2Oz hemihydrate CaSOr ' 0.50H2O, and 1

Experimental study of the dehydration reactions gypsum-bassanite and  bassanite-anhydrite at high pressure: indication of anomalous behavior of  H(2)O at high pressure in the temperature range of 50-300 degrees C. |  Semantic Scholar
Experimental study of the dehydration reactions gypsum-bassanite and bassanite-anhydrite at high pressure: indication of anomalous behavior of H(2)O at high pressure in the temperature range of 50-300 degrees C. | Semantic Scholar

The Mechanism of the First Hydration-Dehydration Cycle of Pure α- and β- CaSO4•0.5H2O
The Mechanism of the First Hydration-Dehydration Cycle of Pure α- and β- CaSO4•0.5H2O

Structures of a) gypsum, b) hemihydrate, and c) insoluble anhydrite... |  Download Scientific Diagram
Structures of a) gypsum, b) hemihydrate, and c) insoluble anhydrite... | Download Scientific Diagram

Thermodynamic Modeling of Calcium Sulfate Hydrates in the CaSO4–H2O System  from 273.15 to 473.15 K with Extension to 548.15 K
Thermodynamic Modeling of Calcium Sulfate Hydrates in the CaSO4–H2O System from 273.15 to 473.15 K with Extension to 548.15 K

γ -anhydrite-bassanite hydration and dehydration cycles. (a) | Download  Scientific Diagram
γ -anhydrite-bassanite hydration and dehydration cycles. (a) | Download Scientific Diagram

In Situ Raman Spectroscopic Study of Gypsum (CaSO4·2H2O) and Epsomite  (MgSO4·7H2O) Dehydration Utilizing an Ultrasonic Levitator | The Journal of  Physical Chemistry Letters
In Situ Raman Spectroscopic Study of Gypsum (CaSO4·2H2O) and Epsomite (MgSO4·7H2O) Dehydration Utilizing an Ultrasonic Levitator | The Journal of Physical Chemistry Letters

Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble  Anhydrite γ-CaSO4
Dehydration Pathways of Gypsum and the Rehydration Mechanism of Soluble Anhydrite γ-CaSO4

PDF) The thermal behaviour of γ-CaSO4 | Paolo Ballirano - Academia.edu
PDF) The thermal behaviour of γ-CaSO4 | Paolo Ballirano - Academia.edu