冷冻浓缩法处理含碘模拟放射性废液

    Treatment of Iodine-Containing Simulated Radioactive Wastewater by Freeze-Concentration Method

    • 摘要: 冷冻浓缩法是一种基于物理化学中的固液相平衡原理,在低温条件下实现物质浓缩及分离的水处理方法。含挥发性核素的放射性废液对人体健康威胁较大,研究其可行的处理方法具有重要意义。采用冷冻浓缩法处理含I的模拟放射性废液,建立了冷冻浓缩处理的过程模型,推导出对于特定冷冻温度和核素浓度的溶液,净化因子和浓缩减容比呈反比关系。研究了对处理效果的影响因素,探讨该方法工程化应用的可行性。结果表明:降低I浓度导致净化因子提高,对浓缩减容比影响不大;升高冷冻温度导致净化因子提高,浓缩减容比降低;缩短冷冻时间导致净化因子提高,浓缩减容比降低。通过多级冷冻方式,可以有效提高处理效果。对于I质量浓度为0.100 g/L的模拟放射性废液,在−6 ℃下进行三级冷冻浓缩处理,净化因子为108.69±9.80、浓缩减容比为5.81±0.48,同时该方法不产生二次废物。该方法可为处理含挥发性核素的放射性废液提供一种新的思路。

       

      Abstract: The freeze-concentration method is a water treatment method that achieves the concentration and separation of substances under low-temperature conditions based on the principle of solid-liquid phase equilibrium in physical chemistry. Radioactive wastewater containing volatile nuclides is extremely harmful to human health, and it is of great significance to study feasible treatment methods. In this paper, the freeze-concentration method was used to treat the iodine-containing simulated solution, and a treatment process model was proposed. It was deduced that there was an inverse relationship between the decontamination factor(DF) and the volume reduction factor(VRF) for the solution at a specific freezing temperature and concentration. The factors that influence the treatment effect were studied, and the feasibility of applying this method in engineering was discussed. The results show that the reduction of nuclide concentration leads to an increase in the DF, which has little effect on the VRF. Increasing the freezing temperature leads to a rise in the DF and a decrease in the VRF. By using a multi-stage freeze-concentration method, the processing efficiency can be effectively improved. A three-stage freezing concentration treatment was carried out at −6 ℃ for the simulated solution containing I mass concentration of 0.100 g/L. The results show that the DF is 108.69±9.80, the VRF is 5.81±0.48 and no secondary waste is generated. This method provides a new approach for treating radioactive waste containing volatile nuclides.

       

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