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Excimer laser decontamination

机译:准分子激光净化

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摘要

The application of excimer laser ablation process to the decontamination of radioactive surfaces is discussed. This technology is very attractive because it allows to efficiently remove the contaminated particles without secondary waste production. To demonstrate the capability of such technology to efficiently decontaminate large area, we studied and developed a prototype which include a XeCl laser, an optical fiber delivery system and an ablated particles collection cell. The main physical processes taking place during UV laser ablation will be explained. The influence of laser wavelength, pulse duration and absorption coefficient of material will be discussed. Special studies have been performed to understand the processes which limit the transmission of high average power excimer laser through optical fiber, and to determine the laser conditions to optimize the value of this transmission. An in-situ spectroscopic analysis of laser ablation plasma allows the real time control of the decontamination. The results obtained for painting or metallic oxides removal from stainless steel surfaces will be presented.
机译:讨论了准分子激光烧蚀过程在放射性表面的去污中的应用。该技术非常有吸引力,因为它允许有效地除去污染的颗粒而没有二次废物生产。为了证明这种技术能够有效地净化大面积的能力,我们研究并开发了一种包括XECL激光器,光纤输送系统和烧蚀颗粒收集电池的原型。将解释在UV激光消融期间发生的主要物理过程。将讨论激光波长,脉冲持续时间和吸收系数的影响。已经进行了特殊研究以了解通过光纤限制高平均电源准分子激光器传输的过程,并确定激光条件以优化该传输的值。激光消融等离子体的原位光谱分析允许实时控制净化。呈现用于从不锈钢表面去除的涂漆或金属氧化物的结果。

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