Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Thomas, A.C
Dacheux, N
Le Coustumer, P
Brandel, V
and
Genet, M
2000.
Kinetic and thermodynamic study of the thorium phosphate–diphosphate dissolution.
Journal of Nuclear Materials,
Vol. 281,
Issue. 2-3,
p.
91.
Thomas, A.C.
Dacheux, N.
Le Coustumer, P.
Brandel, V.
and
Genet, M.
2001.
Kinetic and thermodynamic studies of the dissolution of thorium–uranium (IV) phosphate–diphosphate solid solutions.
Journal of Nuclear Materials,
Vol. 295,
Issue. 2-3,
p.
249.
Bois, L
Guittet, M.J
Carrot, F
Trocellier, P
and
Gautier-Soyer, M
2001.
Preliminary results on the leaching process of phosphate ceramics, potential hosts for actinide immobilization.
Journal of Nuclear Materials,
Vol. 297,
Issue. 2,
p.
129.
Robisson, A.C
Dacheux, N
and
Aupiais, J
2002.
Influence of the pH on the dissolution of TPD and associated solid solutions.
Journal of Nuclear Materials,
Vol. 306,
Issue. 2-3,
p.
134.
Terra, Olivier
Clavier, Nicolas
Dacheux, Nicolas
and
Podor, Renaud
2003.
Preparation and characterization of lanthanum–gadolinium monazites as ceramics for radioactive waste storage.
New J. Chem.,
Vol. 27,
Issue. 6,
p.
957.
Clavier, N.
Dacheux, N.
Martinez, P.
Brandel, V.
Podor, R.
and
Le Coustumer, P.
2004.
Synthesis and characterization of low-temperature precursors of thorium–uranium (IV) phosphate–diphosphate solid solutions.
Journal of Nuclear Materials,
Vol. 335,
Issue. 3,
p.
397.
Marchin, L.
Trombe, J.C.
and
Verelst, M.
2004.
Synthesis and characterization of thorium phosphate phases by spray pyrolysis: chemistry of thorium phosphates.
Materials Research Bulletin,
Vol. 39,
Issue. 12,
p.
1973.
Ewing, Rodney C.
2007.
Ceramic matrices for plutonium disposition.
Progress in Nuclear Energy,
Vol. 49,
Issue. 8,
p.
635.
Yudintsev, Sergey V.
Stefanovsky, Sergey V.
and
Ewing, Rodney C.
2007.
Structural Chemistry of Inorganic Actinide Compounds.
p.
457.
Chourasia, Rashmi
Shrivastava, O.P.
Ambashta, R.D.
and
Wattal, P.K.
2010.
Crystal chemistry of immobilization of fast breeder reactor (FBR) simulated waste in sodium zirconium phosphate (NZP) ceramic matrix.
Annals of Nuclear Energy,
Vol. 37,
Issue. 2,
p.
103.
Pratheep Kumar, S.
Buvaneswari, G.
Raja Madhavan, R.
and
Govindan Kutty, K. V.
2011.
Encapsulation of heterovalent ions of two simulated high-level nuclear wastes and crystallization into single-phase NZP-based wasteforms.
Radiochemistry,
Vol. 53,
Issue. 4,
p.
421.
Orlova, A. I.
Koryttseva, A. K.
Kanunov, A. E.
Chuvil’deev, V. N.
Moskvicheva, A. V.
Sakharov, N. V.
Boldin, M. S.
and
Nokhrin, A. V.
2012.
Fabrication of NaZr2(PO4)3-type ceramic materials by spark plasma sintering.
Inorganic Materials,
Vol. 48,
Issue. 3,
p.
313.
Vance, E.R.
Davis, J.
Olufson, K.
Chironi, I.
Karatchevtseva, I.
and
Farnan, I.
2012.
Candidate waste forms for immobilisation of waste chloride salt from pyroprocessing of spent nuclear fuel.
Journal of Nuclear Materials,
Vol. 420,
Issue. 1-3,
p.
396.
Lee, William Edward
Gilbert, Matthew
Murphy, Samuel Thomas
Grimes, Robin William
and
Green, D. J.
2013.
Opportunities for Advanced Ceramics and Composites in the Nuclear Sector.
Journal of the American Ceramic Society,
Vol. 96,
Issue. 7,
p.
2005.
Bohre, Ashish
and
Shrivastava, Om Prakash
2013.
Crystallographic Evaluation of Sodium Zirconium Phosphate as a Host Structure for Immobilization of Cesium and Strontium.
International Journal of Applied Ceramic Technology,
Vol. 10,
Issue. 3,
p.
552.
Pratheep Kumar, Sathasivam
and
Gopal, Buvaneswari
2015.
Simulated monazite crystalline wasteform La0.4Nd0.1Y0.1Gd0.1Sm0.1Ce0.1Ca0.1(P0.9Mo0.1O4): Synthesis, phase stability and chemical durability study.
Journal of Nuclear Materials,
Vol. 458,
Issue. ,
p.
224.
Raja Madhavan, R.
Gandhi, A.S.
and
Govindan Kutty, K.V.
2017.
Sodium titanium phosphate NaTi 2 (PO 4 ) 3 waste forms for immobilization of simulated high level waste from fast reactors.
Ceramics International,
Vol. 43,
Issue. 12,
p.
9522.