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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

a The hydration-dehydration cycles for transformation of gypsum... |  Download Scientific Diagram
a The hydration-dehydration cycles for transformation of gypsum... | Download Scientific Diagram

Comprehensive Thermodynamic Study of the Calcium Sulfate–Water Vapor  System. Part 1: Experimental Measurements and Phase Equil
Comprehensive Thermodynamic Study of the Calcium Sulfate–Water Vapor System. Part 1: Experimental Measurements and Phase Equil

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

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

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
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

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

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

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

Figure 1 from In Situ Raman Spectroscopic Study of Gypsum (CaSO4·2H2O) and  Epsomite (MgSO4·7H2O) Dehydration Utilizing an Ultrasonic Levitator. |  Semantic Scholar
Figure 1 from In Situ Raman Spectroscopic Study of Gypsum (CaSO4·2H2O) and Epsomite (MgSO4·7H2O) Dehydration Utilizing an Ultrasonic Levitator. | Semantic Scholar

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

Reaction control of CaSO4 during hydration/dehydration repetition for  chemical heat pump system - ScienceDirect
Reaction control of CaSO4 during hydration/dehydration repetition for chemical heat pump system - ScienceDirect

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

CaSO4
CaSO4

Laboratory Scale Study of Calcium Sulfate Hydration Forms
Laboratory Scale Study of Calcium Sulfate Hydration Forms

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

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

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

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