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Self-Propagating High-Temperature Synthesis of Simulated An~(3+)-Gontained Radioactive Graphite in N2 Atmosphere

机译:在N2气氛中自蔓延的高温合成模拟An〜(3 +) - 绝缘放射性石墨石墨

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The self-propagation synthesis (SHS) technology is characterized exclusively in multiple aspects, including: higher reaction rate, simplified procedure, shortened flow-process, facilitated process, lower energy consumption and remote control. In order to evaluate the performance of the self-propagating high-temperature synthesis (SHS) to treat An~(3+)-contained radioactive graphite in N2 atmosphere, in our study, with the exothermic reaction (3C + 4Al + 3TiO2 = 2Al2O3 + 3TiC + Q), we used the following raw powdery materials including graphite (C), aluminum (Al), titanium dioxide (TiO2) and neodymium oxide (Nd2O3, where Nd~(3+) was used to simulate An~(3+)). After a serial pretreatment including mixing, refinement and formation, a self-developed SHS reactive facility was used to prepare the simulated waste form for the An~(3+)-contained radioactive graphite. Then, X-ray diffractometer(XRD) and scanning electron microscope (SEM) were used to test and analyze the morphology, phase composition and solid solubility of the prepared waste forms. According to the results, the samples with the adding Nd2O3 of 0~16 wt% could maintain the self-sustainable reaction. And in the designed reaction, the Nd2O3 solid solubility was 1 wt%. The samples were mainly in pieces, with grain sized mainly in 5~10μm. The samples without adding Nd2O3 content were composed of Al2O3, TiC, C, TiO2 and A1N. With adding Nd2O3 content of 1 wt%, the samples were composted of Al2O3, TiC, C, TiO2, A1N and NdAlO3. While in case of adding Nd2O3 content of over 1 wt%, the occurrence of the Nd2O3 phase was observed in the XRD patterns of the samples.
机译:自传合成(SHS)技术专门在多个方面的特征,包括:更高的反应速率,简化的过程,缩短流程,便利过程,降低能耗和遥控器。为了评估自我繁殖的高温合成(SHS)的性能,在N2气氛中治疗〜(3 +)含有的放射性石墨,在我们的研究中,放热反应(3C + 4AL + 3TiO2 = 2al2O3 + 3TIC + Q),我们使用了包括石墨(c),铝(Al),二氧化钛(TiO 2)和氧化钛(Nd2O3的氧化钛(其中Nd〜(3+)模拟〜(3 +))。在连续预处理包括混合,改进和形成之后,使用自行发育的SHS反应性设施来制备〜(3 +)含有的放射性石墨的模拟废物形式。然后,使用X射线衍射仪(XRD)和扫描电子显微镜(SEM)来测试和分析制备的废物形式的形态,相组合物和固体溶解度。根据结果​​,加入Nd2O3为0〜16wt%的样品可以保持自我可持续性的反应。在设计的反应中,Nd2O3固体溶解度为1wt%。样品主要是碎片,主要尺寸为5〜10μm。不添加ND2O3含量的样品由Al 2 O 3,TiC,C,TiO 2和A1N组成。添加Nd2O3含量为1wt%,样品堆肥Al2O3,TiC,C,TiO 2,A1N和Ndalo3。虽然在添加Nd2O3含量超过1wt%的情况下,但在样品的XRD图案中观察到ND2O3相的发生。

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