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Gas emission from the UO2 samples, containing fission products and burnable absorber

机译:来自UO2样品的气体排放,含有裂变产品和可燃吸收器

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The process gas released from the fuel pellets of uranium fuel during fuel burn-up reduces the thermal conductivity of the rod-shell gap, enhances hydrogen embrittlement of the cladding material, causes it's carbonization, as well as transport processes in the fuel. In this study a technique of investigating the thermal desorption of gases from the UO2 fuel material were perfected in the temperature range 300-2000 K for uniform sample heating rate of 15 K/min in vacuum. The characteristic kinetic dependences are acquired for the gas emission from UO2 samples, containing simulators of fission products (SFP) and the burnable neutron absorber (BNA). Depending on the amount of SFP and BNA contained in the sample thermal desorption gas spectra (TDGS) vary. The composition of emitted gas varies, as well as the number of peaks in the TDGS and the peaks shift to higher temperatures. This indicates that introduction of SFPs and BNA alters the sample material structure and cause the creation of so-called traps which have different bonding energies to the gases. The traps can be a grid of dislocations, voids, and contained in the UO2 matrix SFP and BNA. Similar processes will occur in the fuel pellets in the real conditions of the Nuclear Power Plant as well.
机译:在燃料燃烧期间从铀燃料的燃料颗粒中释放的过程气体降低了棒壳间隙的导热率,增强了包层材料的氢脆,使其碳化,以及燃料中的运输过程。在该研究中,一种研究从UO2燃料材料的气体热解吸的技术在300-2000K的温度范围内完善,在真空中均匀样品加热速率为15k / min。获得来自UO2样品的气体排放的特征动力学依赖性,含有裂变产物(SFP)的模拟器和可燃的中子吸收器(BNA)。取决于样品热解吸气体光谱(TDGS)中所含的SFP和BNA的量。发射气体的组成变化,以及TDGS中的峰值的数量,并且峰值转移到更高的温度。这表明SFP和BNA的引入改变了样品材料结构,并导致产生具有不同粘合能量的所谓陷阱的陷阱。捕集器可以是脱位的网格,空隙,并且包含在UO2矩阵SFP和BNA中。核电站的真实条件中的燃料颗粒中的类似过程也将发生类似的过程。

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