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Phase Evolution of Sphene Based Ceramics during Annealing

机译:退火过程中磷乙烯基陶瓷的相位演化

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CaO-TiO2-SiO2 (sphene) based ceramics has been prepared from a powder mixture (calcite, rutile and amorphous silica) using vibro-milling for homogenization and activation of the precursors. Sphene can be used for nuclear waste disposal. Although many approaches like multi-barrier, glass and ceramic waste forms are available for the nuclear waste disposal, the ceramic waste form is still attractive. In ceramics, because of its synthetic approach of immobilizing the radioactive waste, the radioactive nuclides are incorporated into solid solutions in an assemblage of synthetic mineralogical phase. Among various ceramic waste forms, synthetic rock (synroc) - sphene (CaTiSiO5) is currently receiving significant attention. The evolution of the phase composition during thermal treatment was investigated by thermal analyses and X-ray diffraction measurements. Also, morphology of was determined by scanning electron microscopy microscopy techniques.
机译:使用vibro-milling的粉末混合物(方解石,金红石和无定形二氧化硅)制备基于CaO-TiO2-SiO 2(SpHene)陶瓷,用于均质化和前体激活。 斯波琳可用于核废料处理。 虽然有多个屏障,玻璃和陶瓷废物形式等许多方法可用于核废料处理,但陶瓷废物形式仍然具有吸引力。 在陶瓷中,由于其对放射性废物固定的合成方法,放射性核苷酸在合成矿物相的组合中掺入固体溶液中。 在各种陶瓷废物形式中,合成岩石(Synroc) - 斯派(Catisio5)目前正在受到重大关注。 通过热分析和X射线衍射测量研究了热处理过程中相组合物的演化。 此外,通过扫描电子显微镜显微镜技术确定的形态学。

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