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COUNTER-INTUITIVE NITROGEN OCCUPANCY IN TETRAGONAL ZIRCONIA

机译:四方氧化锆中的反向直观的氮占用

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This study aims to assist in the analysis of practices applied during the severe hydrogen explosion accidents at the Fukushima nuclear reactors in 2011, by using first-principles-based computer modeling techniques. In particular the influence of nitrogen gas to the stability of zirconium cladding alloys (which host nuclear fuels), has been investigated. Current design of commercial zirconium cladding alloys is based on assumptions that nitrogen substitute lattice oxygen in zirconia, and tin or niobium were alloyed to control the nitrogen effect and slow down oxidation. We expel this nitrogen substitution mechanism and established a more energetically stable NO diatomic structure from first principles calculations. Our contribution not only opens ways to form new alloying strategies for the next generation of zirconium cladding alloys but more importantly provides opportunities to critically examine the standard operation procedures in the management of severe nuclear reactor accidents.
机译:本研究旨在通过使用基于一原则的计算机建模技术,协助分析2011年福岛核反应堆的严重氢气爆炸事故中的实践。特别地研究了氮气对锆覆层合金(其核燃料)的稳定性的影响。商业锆覆层合金的当前设计基于氧化锆中的氮气替代晶格氧气的假设,而锡或铌合金化以控制氮效果和慢氧化。我们驱逐这种氮替代机制,并从第一原理计算中建立了更具能力稳定的硅藻结构。我们的贡献不仅开放了形成新的合金化策略的方法,可以为下一代锆覆层合金,但更重要的是提供了批判性地检查严重核反应堆事故中标准操作程序的机会。

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