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SURFACE TENSION OF SODIUM DISPERSING NANO PARTICLES -A BASIC STUDY ON MITIGATION OF SODIUM-WATER REACTION

机译:分散钠纳米粒子的表面张力-减轻钠水反应的基础研究

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In sodium-cooled fast reactors, it is very important to evaluate sodium-water reaction from the viewpoint of safety. If once it happens in the steam generator, it is desirable its scale is small and its reaction is mild. The sodium dispersing nano particles is expected to mitigate the sodium-water reaction. Nano particles is titan particles whose diameter is tens nanometer and dispersing rate in sodium is several percent. In order to find out the effect clearly, it is essential to evaluate the reaction behavior and characteristics of physical properties closely. For this purpose, we tried to measure the surface tension of sodium dispersing nano particles as an important part of foundational physical property.We had employed the pendant drop method for the measurement, with which we can measure surface tension from the shape of pendant drop. This method is suitable for our measurement because nano sample is very limited. The measurement was done in a sealed box keeping inert gas atmosphere, which is required for sodium experiment because of an easy chemical reaction of sodium with oxygen and moisture. At first, we did a series of experiments for pure sodium. We succeeded to make pendant drops between 150°C and 350°C. For the measurement, we selected only the drops in clear mirror surface with axial symmetry. The scatter range of obtained results is slightly larger than that of a recommended equation. We estimated that it was caused due to a weak wet condition on the edge face of nozzle. Then we measured the surface tension of the sodium dispersing nano particles under the same condition. The obtained results almost show values larger than those of pure sodium. The dispersion rate of nano particles has an uncertainty in the present study. However even in giving the worst evaluation, the measured surface tensionsfor the sodium dispersing nano particles show larger values than those for the pure sodium.
机译:在钠冷快堆中,从安全角度评估钠水反应非常重要。如果它在蒸汽发生器中发生,则希望其规模小并且反应温和。分散钠的纳米颗粒有望减轻钠水反应。纳米粒子是直径为数十纳米且在钠中的分散率为百分之几的钛粒子。为了清楚地发现效果,必须密切评估反应行为和物理性质特征。为此,我们试图测量分散钠的纳米颗粒的表面张力,这是基础物理性能的重要组成部分。 我们采用悬垂法进行测量,利用该方法可以从悬垂物的形状测量表面张力。该方法适用于我们的测量,因为纳米样品非常有限。测量是在保持惰性气体气氛的密闭箱中进行的,这是钠实验所必需的,因为钠与氧气和湿气容易发生化学反应。首先,我们对纯钠进行了一系列实验。我们成功地使悬垂线降落在150°C至350°C之间。对于测量,我们仅选择具有轴向对称性的透明镜面中的液滴。获得的结果的分散范围比推荐方程式的分散范围稍大。我们估计这是由于喷嘴边缘表面的湿润条件弱所致。然后我们在相同条件下测量了钠分散纳米颗粒的表面张力。所得结果几乎显示出比纯钠更大的值。在本研究中,纳米颗粒的分散速率具有不确定性。但是,即使给出最差的评估,所测得的表面张力 用于分散钠的纳米颗粒的值大于纯钠的值。

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