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首页> 外文期刊>Journal of the European Ceramic Society >Densification of non-radioactive porous siliceous particles loaded with cesium potassium copper hexacyanoferrate by spark plasma sintering
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Densification of non-radioactive porous siliceous particles loaded with cesium potassium copper hexacyanoferrate by spark plasma sintering

机译:通过火花等离子体烧结加载含有铯硼丙酸铯六氰基甲醛的非放射性多孔硅胶致密化的致密化

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摘要

In the development of a conditioning process for cesium-bearing sorbents from the decontamination of aqueous waste streams, the treatment of a granular material composed of (Cs,K)(2)CuFe(CN)(6) loaded onto mesoporous silica particles has been investigated in an additive-free two-step conditioning process involving (i) calcination at 1000 degrees C to remove volatile species and (ii) densification by spark plasma sintering. A 92.0 % dense pellet was obtained after 10 min sintering at 850 degrees C under 100 MPa. Density and microstructural measurements indicate that densification is first driven by the viscous flow of a vitreous phase containing Cs, formed during calcination. The density of the sample then increases further during sintering by grain boundary diffusion. However, a limited but non negligible part of cesium is lost during densification.
机译:在开发含铯吸附剂的净化工艺过程中,在无添加剂的两步调节过程中,研究了由(Cs,K)(2)CuFe(CN)(6)负载到介孔二氧化硅颗粒上的颗粒材料的处理,包括(i)在1000℃下煅烧以去除挥发性物质,以及(ii)通过火花等离子烧结进行致密化。在850℃、100MPa下烧结10分钟后,获得了92.0%的致密球团。密度和微观结构测量表明,致密化首先由煅烧过程中形成的含有Cs的玻璃相的粘性流动驱动。在烧结过程中,通过晶界扩散,样品的密度进一步增加。然而,在致密化过程中,铯的一部分损失有限,但不可忽略。

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