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OXIDATION AND DIRECT CONDITIONING OF CONTAMINATED METALLIC SODIUM

机译:污染的金属钠的直接氧化和处理

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In the nuclear sector, elemental alkali metals are being used as coolant in the primary circuit of fast breeder reactors. Classical safety is a very critical issue for the treatment and conditioning of these metals, due to their chemical reactivity, and considering the quite severe acceptance criteria of the final waste. The SCK*CEN has conceived and patented a new and safe process to meet safety requirements and the compatibility with the further conditioning of the waste into an acceptable form. In this process, molten alkali metal reacts with a mixture of oxygen and carbon dioxide, in a fluidized bed reactor containing calibrated sand particles, to yield the metal oxide and carbonate, while avoiding the formation of peroxide. No hydrogen is formed, while the turbulent conditions guarantee a complete conversion of the metal and excellent heat transfer capabilities, eliminating explosion risks and reducing greatly fire risks. Depending on the level of radioactive contamination, the mixture of sand and carbonates may be considered as the final waste, or may be further conditioned as glass.
机译:在核部门中,元素碱金属在快速增殖反应堆的一次回路中被用作冷却剂。由于这些金属的化学反应性,并且考虑到最终废物的严格接受标准,因此经典的安全性对于这些金属的处理和调理是非常关键的问题。 SCK * CEN已构思并申请了一种新的安全工艺流程并申请了专利,以满足安全要求以及与将废物进一步处理成可接受形式的兼容性。在该方法中,熔融的碱金属在包含校准的沙粒的流化床反应器中与氧气和二氧化碳的混合物反应,生成金属氧化物和碳酸盐,同时避免了过氧化物的形成。没有氢形成,而湍流条件则保证了金属的完全转化和出色的传热能力,消除了爆炸的危险并大大降低了火灾的危险。根据放射性污染的程度,沙子和碳酸盐的混合物可被视为最终废物,或可进一步处理为玻璃。

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