Fundamental Science on Nuclear Safety and Simulation Technology Laboratory, College of Nuclear Science and Technology, Harbin Engineering University, Harbin, 150001, People's Republic of China.
Yantai Research Institute, Harbin Engineering University, Yantai, 264006, Shandong, People's Republic of China.
Environ Sci Pollut Res Int. 2023 May;30(23):64771-64777. doi: 10.1007/s11356-023-27210-y. Epub 2023 Apr 26.
Herein, we report a new strategy for the rapid removal of uranium-containing contaminants from metal surfaces, and it relies on decontaminants made of NaOH-based molten salts. The addition of NaCO and NaCl to NaOH exhibited superior decontamination performance, with a decontamination rate of 93.8% within 12 min, outdoing the performance of the single NaOH molten salt. The experimental results demonstrated that the synergistic effects between CO and Cl promoted the corrosion efficiency of the molten salt on the substrate, which accelerated the decontamination rate. Additionally, benefiting from the optimization of the experimental conditions by the response surface method (RSM), the decontamination efficiency was improved to 94.9%. Notably, it also showed remarkable results in the decontamination of specimens containing different uranium oxides at low and high levels of radioactivity. This technology is promising for broadening the path in rapid decontamination of radioactive contaminants on metal surfaces.
本文提出了一种从金属表面快速去除含铀污染物的新策略,该策略依赖于由基于 NaOH 的熔融盐制成的去污剂。在 NaOH 中添加 NaCO 和 NaCl 表现出了优异的去污性能,在 12 分钟内去污率达到 93.8%,优于单一 NaOH 熔融盐的性能。实验结果表明,CO 和 Cl 之间的协同作用促进了熔融盐对基底的腐蚀效率,从而加速了去污速度。此外,通过响应面法(RSM)优化实验条件,去污效率提高到 94.9%。值得注意的是,它在去除低放射性和高放射性不同铀氧化物的样品中的去污效果也非常显著。这项技术有望拓宽金属表面放射性污染物快速去污的途径。