Thermodynamic properties for MMoO4 (M = Mg, Sr and Ba) as the end-members of the yellow phases formed in the nuclear fuel waste glasses. (November 2018)
- Record Type:
- Journal Article
- Title:
- Thermodynamic properties for MMoO4 (M = Mg, Sr and Ba) as the end-members of the yellow phases formed in the nuclear fuel waste glasses. (November 2018)
- Main Title:
- Thermodynamic properties for MMoO4 (M = Mg, Sr and Ba) as the end-members of the yellow phases formed in the nuclear fuel waste glasses
- Authors:
- Morishita, Masao
Kinoshita, Yoshiki
Nozaki, Ai
Yamamoto, Hiroaki - Abstract:
- Abstract: The standard molar entropy Δ 0 T S m °, at 298.15 K of MgMoO4 (cr) of the end-members of the yellow phases formed in the nuclear fuel waste glasses was determined by measuring C p, m ° at the temperature of 2 K and above using the most recent Debye-Einstein formula. The Δ 0 T S m ° data obtained in our previous study for SrMoO4 (cr) and BaMoO4 (cr) were re-evaluated using this most recent formula. The standard Gibbs free energies of formation, Δ f G m °, of MgMoO4, SrMoO4 (cr) and BaMoO4 (cr) were determined by combining the Δ 0 T S m ° data with the reference data for the standard enthalpy of formation, Δ f H m ° . The Δ f G m ° of MoO4 2− (aq) was updated from the thermodynamic cycle based on the data obtained in the present work. The unknown standard Gibbs free energy of solution, Δ sln G m °, and the solubility product, K s, at 298.15 K for MgMoO4 were predicted. The thermodynamic values were obtained as follows: Δ 0 T S m ° (MgMoO4 (cr), 298.15 K)/(J K −1 mol −1 ) = 119.11 ± 1.19; Δ 0 T S m ° (SrMoO4 (cr), 298.15 K)/(J K −1 mol −1 ) = 136.44 ± 1.36; Δ 0 T S m ° (BaMoO4 (cr), 298.15 K)/(J K −1 mol −1 ) = 152.61 ± 1.53; Δ f G m ° (MgMoO4 (cr), 298.15 K)/(kJ mol −1 ) = −1295.73 ± 0.91; Δ f G m ° (SrMoO4 (cr), 298.15 K)/(kJ mol −1 ) = −1441.32 ± 1.36; Δ f G m ° (BaMoO4 (cr), 298.15 K)/(kJ mol −1 ) = −1443.29 ± 1.33; Δ f G m ° (MoO4 2− (aq), 298.15 K)/(kJ mol −1 ) = −836.63 ± 0.97. Δ sln G m ° (MgMoO4 (aq), 298.15 K)/(kJ (mol of MoO4 2− (aq)) −1 ) = 3.72 ± 1.88. KAbstract: The standard molar entropy Δ 0 T S m °, at 298.15 K of MgMoO4 (cr) of the end-members of the yellow phases formed in the nuclear fuel waste glasses was determined by measuring C p, m ° at the temperature of 2 K and above using the most recent Debye-Einstein formula. The Δ 0 T S m ° data obtained in our previous study for SrMoO4 (cr) and BaMoO4 (cr) were re-evaluated using this most recent formula. The standard Gibbs free energies of formation, Δ f G m °, of MgMoO4, SrMoO4 (cr) and BaMoO4 (cr) were determined by combining the Δ 0 T S m ° data with the reference data for the standard enthalpy of formation, Δ f H m ° . The Δ f G m ° of MoO4 2− (aq) was updated from the thermodynamic cycle based on the data obtained in the present work. The unknown standard Gibbs free energy of solution, Δ sln G m °, and the solubility product, K s, at 298.15 K for MgMoO4 were predicted. The thermodynamic values were obtained as follows: Δ 0 T S m ° (MgMoO4 (cr), 298.15 K)/(J K −1 mol −1 ) = 119.11 ± 1.19; Δ 0 T S m ° (SrMoO4 (cr), 298.15 K)/(J K −1 mol −1 ) = 136.44 ± 1.36; Δ 0 T S m ° (BaMoO4 (cr), 298.15 K)/(J K −1 mol −1 ) = 152.61 ± 1.53; Δ f G m ° (MgMoO4 (cr), 298.15 K)/(kJ mol −1 ) = −1295.73 ± 0.91; Δ f G m ° (SrMoO4 (cr), 298.15 K)/(kJ mol −1 ) = −1441.32 ± 1.36; Δ f G m ° (BaMoO4 (cr), 298.15 K)/(kJ mol −1 ) = −1443.29 ± 1.33; Δ f G m ° (MoO4 2− (aq), 298.15 K)/(kJ mol −1 ) = −836.63 ± 0.97. Δ sln G m ° (MgMoO4 (aq), 298.15 K)/(kJ (mol of MoO4 2− (aq)) −1 ) = 3.72 ± 1.88. K s (MgMoO4 (aq), 298.15) = 2.23 × 10 −1 ± 4.46 × 10 −2 The thermodynamic data obtained in this work are expected to be useful for nuclear fuel waste safety management. Graphical abstract: Highlights: The thermodynamic properties for the molybdates formed in the nuclear fuel waste glasses were investigated. C p, m ° of MgMoO4 was measured followed by determining Δ 0 T S m ° and Δ f G m ° via the recent developed Debye Einstein formula. Δ 0 T S m ° and Δ f G m ° of SrMoO4 and BaMoO4 obtained in our previous study were re-evaluated as in the same way of MgMoO4 . Δ f G m ° of MoO4 2- was updated from the thermodynamic cycle on the basis of the present obtained data. The present obtained thermodynamic data are expected be useful for the nuclear fuel waste safety management. … (more)
- Is Part Of:
- Applied geochemistry. Volume 98(2018)
- Journal:
- Applied geochemistry
- Issue:
- Volume 98(2018)
- Issue Display:
- Volume 98, Issue 2018 (2018)
- Year:
- 2018
- Volume:
- 98
- Issue:
- 2018
- Issue Sort Value:
- 2018-0098-2018-0000
- Page Start:
- 310
- Page End:
- 320
- Publication Date:
- 2018-11
- Subjects:
- Standard entropy -- Standard Gibbs free energy of formation -- Standard Gibbs energy of solution -- Nuclear fuel waste management -- Fission products
Environmental geochemistry -- Periodicals
Water chemistry -- Periodicals
Geochemistry -- Social aspects -- Periodicals
Geochemistry -- Periodicals
551.9 - Journal URLs:
- http://www.elsevier.com/journals ↗
- DOI:
- 10.1016/j.apgeochem.2018.08.023 ↗
- Languages:
- English
- ISSNs:
- 0883-2927
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 1572.585000
British Library DSC - BLDSS-3PM
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