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Possibilities of a metal surface radioactive decontamination using the pulsed CO_2 laser

机译:使用脉冲CO_2激光器的金属表面放射性净化的可能性

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There is a growing interest in the laser radioactive decontamination of metal surfaces. It offers advantages over conventional methods: improved safety, reduction of secondary waste, reduced waste volume, acceptable cost. A main mechanism of cleaning by lasers is ablation. In this work a pulsed TEA CO_2 laser was used for surface cleaning, primarily in order to demonstrate that the ablation from metal surfaces with this laser is possible even with relatively low pulse energies, and secondly, that it could be competitive with other lasers because of much higher energy efficiencies. The laser pulse contains two parts, one strong and short peek at the beginning, followed with a tall. The beam was focused onto a contaminated surface with a KBr lens. The surface was contaminated with ~(137)Cs (#beta#~-, t_(1/2) = 30.17 y). Three different metals were used: stainless steel, copper and aluminum. The evaporated material was pumped out in air atmosphere and transferred to a filter. Presence of the activity on the filter was proved by a germanium detector-multichannel analyzer. Activity levels were measured by a GM counter. Calculated decontamination factors as well as collection factors have shown that ablation takes place with relatively high efficiency of decontamination. This investigation suggests that decontamination using the CO_2 laser should be seriously considered.
机译:对金属表面的激光放射性净化存在越来越感兴趣。它提供了优于传统方法的优点:提高安全性,减少二次浪费,减少废物量,可接受的成本。激光器清洁的主要机制是消融的。在这项工作中,脉冲茶CO_2激光器用于表面清洁,主要是为了证明与这种激光器的金属表面消融,即使具有相对低的脉冲能量,其它可能与其他激光器竞争能量效率更高。激光脉冲包含两部分,一开始,一个强壮的偷看,随之而来。光束用KBR透镜聚焦在污染的表面上。表面被〜(137)CS(#β#〜 - ,T_(1/2)= 30.17 y)污染。使用了三种不同的金属:不锈钢,铜和铝。将蒸发的材料泵出在空气气氛中并转移到过滤器中。通过锗检测器 - 多通道分析仪证明了过滤器上的活性。通过GM计数器测量活动水平。计算的去污因子以及收集因素表明,消融效率的净化效率相对较高。本研究表明,应认真考虑使用CO_2激光的净化。

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