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Stability of zinc stearate under alpha irradiation in the manufacturing process of SFR nuclear fuels

机译:SFR核燃料制造过程中α照射下锌硬脂酸锌的稳定性

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The manufacture of new fuels for sodium-cooled fast reactors (SFRs) will involve powders derived from recycling existing fuels in order to keep on producing electricity while saving natural resources and reducing the amount of waste produced by spent MOX fuels. Using recycled plutonium in this way will significantly increase the amount of Pu-238, a high energy alpha emitter, in the powders. The process of shaping powders by pressing requires the use of a solid lubricant, zinc stearate, to produce pellets with no defects compliant with the standards. The purpose of this study is to determine the impact of alpha radiolysis on this additive and its lubrication properties. Experiments were conducted on samples in contact with PuO2, as well as under external helium ion beam irradiation, in order to define the kinetics of radiolytic gas generation. The yield results relating to the formation of these gases (Go) show that the alpha radiation of plutonium can be simulated using external helium ion beam irradiation. The isotopic composition of plutonium has little impact on the yield. However, an increased yield was globally observed with increasing the mean linear energy transfer (LET). A radiolytic degradation process is proposed.
机译:用于钠冷却的快速反应器(SFR)的新燃料的制造将涉及源于回收现有燃料的粉末,以便继续生产电力,同时节省自然资源并减少由茅草燃料产生的废物量。以这种方式使用再生钚将显着增加PU-238,粉末中高能α发射器的量。通过压制成形粉末的方法需要使用固体润滑剂锌硬脂酸锌,产生颗粒,没有符合标准的缺陷。本研究的目的是确定α辐射对该添加剂的影响及其润滑性能。在与Puo2接触的样品中进行实验,以及在外部氦离子束照射下,以定义放射性化气体产生的动力学。与这些气体的形成有关的产量结果表明,可以使用外部氦离子束照射模拟钚的α辐射。钚的同位素组成对产率几乎没有影响。然而,随着增加平均线性能量转移(Let),全球均得到增加的产率。提出了一种辐射性降解过程。

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