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THE TREATMENT OF LOW-LEVEL RADIOACTIVE WASTEWATER BY THE NUCLEAR WEAPONS USING ULTRASONIC STANDING WAVE METHODS

机译:超声驻波法处理核武器处理低水平放射性废水

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The radiation hazards of radionuclide arising from the storage of nuclear weapons can not be ignored to the operators. Ultrasonic standing wave methods can be considered as the green cleaning separation techniques with high efficiency, and it allows the elimination of many chemical flocculants to reduce radioactive contamination. The application of ultrasonic standing wave methods for liquid radioactive wastes treatment requires solving many problems connected with the proper selection of the frequency and power of ultrasonic transducers, and the processing time, etc. Based on the model of one single suspended radioactive particle subjected to in the field of ultrasonic standing wave, the principle of the treatment of low-level radioactive wastewater by ultrasound was analyzed. The mathematic equation representing the change of the number of the suspended particles was built and calculated. The theoretical results show that under the action of ultrasonic standing wave, the particle will move toward the wave node plane, and the time of particle reaching the plane become shorter when the radius particle and the frequency and power of ultrasound was enlarged. The experimental apparatus for liquid low-level radioactive wastes treatment was designed according to the results of theoretical analysis. The experimental results show that the radioactive concentration of wastewater could be reduced from 400Bq · L~(-1) to 9.3Bq · L~(-1) and the decontamination efficiency was 97.68%. The decontamination efficiency could not be obviously improved by further increasing the treating time.
机译:储存核武器引起的放射性核素的辐射危害对运营人而言是不容忽视的。超声波驻波法可以看作是高效的绿色清洁分离技术,它可以消除许多化学絮凝剂,从而减少放射性污染。超声波驻波方法在液体放射性废物处理中的应用需要解决许多与正确选择超声波换能器的频率和功率以及处理时间等有关的问题。在超声驻波领域,分析了超声处理低放射性废水的原理。建立并计算了代表悬浮颗粒数量变化的数学方程式。理论结果表明,在超声波驻波作用下,随着半径粒子的增大和超声频率和功率的增大,粒子向波节​​点平面移动,到达平面的时间变短。根据理论分析的结果,设计了液态低放废物处理实验装置。实验结果表明,废水的放射性浓度可以从400Bq·L〜(-1)降低到9.3Bq·L〜(-1),去污效率为97.68%。通过进一步增加处理时间不能明显提高去污效率。

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