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1.
J Nanosci Nanotechnol ; 16(2): 1672-5, 2016 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-27433644

RESUMO

Synroc (Synthetic Rock) consists of four main titanate phases: peroveskite (CaTiO3), zirconolite (CaZrTi2O7), hollandite (BaAl2Ti6O16) and rutile (TiO2). Nano-polycrystalline synroc powders were made by a synthesis combustion process. The combustion process, an externally initiated reaction is self-sustained owing to the exothermic reaction. A significant volume of gas is evolved during the combustion reaction and leads to loosely agglomerated powders. This exothermic reaction provides necessary heat to further carry the reaction in forward direction to produce nanocrystalline powders as the final product. Glycine is used as a fuel, being oxidized by nitrate ions. It is inexpensive, has high energy efficiency, fast heating rates, short reaction times and high compositional homogeneity. In this study, combustion synthesis of nano-sized synroc-B powder is introduced. The fabrication of synroc-B powder result of observation XRD were prepared for polycrystalline (perovskite, zirconolite, hollandite, rutile) structures. The characterization of the synthesized powders is conducted by using XRD, SEM/EDS and TEM.


Assuntos
Compostos de Cálcio/química , Cerâmica/química , Glicina/química , Nanopartículas/química , Óxidos/química , Resíduos Radioativos , Titânio/química
2.
J Nanosci Nanotechnol ; 16(2): 1676-9, 2016 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-27433645

RESUMO

A solution combustion process for the synthesis of perovskite (CaTiO3) powders is described. Perovskite is one of the crystalline host matrics for the disposal of high-level radioactive wastes (HLW) because it immobilizes Sr and Lns elements by forming solid solutions. Solution combustion synthesis, which is a self-sustaining oxi-reduction reaction between nitrate and organic fuel, the exothermic reaction, and the heat evolved convert the precursors into their corresponding oxide products above 1100 degrees C in air. To investigate the effects of amino acid on the combustion reaction, various types of fuels were used; a glycine, amine and carboxylic ligand mixture. Sr, La and Gd-nitrate with equivalent amounts of up to 20% of CaTiO3 were mixed with Ca and Ti nitrate and amino acid. X-ray diffraction analysis, SEM and TEM were conducted to confirm the formed phases and morphologies. While powders with an uncontrolled shape are obtained through a general oxide-route process, Ca(Sr, Lns)TiO3 powders with micro-sized soft agglomerates consisting of nano-sized primary particles can be prepared using this method.


Assuntos
Compostos de Cálcio , Cerâmica , Óxidos , Resíduos Radioativos , Estrôncio/química , Titânio , Compostos de Cálcio/síntese química , Compostos de Cálcio/química , Cerâmica/síntese química , Cerâmica/química , Óxidos/síntese química , Óxidos/química , Titânio/química
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