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Design of an intensified coprecipitation reactor for the treatment of liquid radioactive wastes

机译:用于处理液态放射性废物的强化共沉淀反应器的设计

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摘要

In the nuclear industry, important volumes of liquid wastes have to be treated to reduce their contents in radioactive contaminants. The coprecipitation is the method mostly applied to perform decontamination of liquid wastes which cannot be concentrated by evaporation. Two operating modes are typically used for an industrial scale treatment by coprecipitation: the continuous and the semi-batch process. It was proved experimentally and theoretically that the semi-batch reactor ensures decontamination efficiency much higher than the continuous stirred tank reactor. An innovative reactor with an infinite recycling ratio is therefore designed to optimize the continuous treatment: the reactor/classifier reaches the same efficiency decontamination as the semi-batch process and represents an efficient device for the coprecipitation process intensification. Hereafter is presented this new coprecipitation reactor and its experimental application to a concrete case of nuclear decontamination. Modelling of this process is totally new: it validates experimental results and also presents theoretical equations to predict decontamination efficiency.
机译:在核工业中,必须处理大量的液体废物,以减少其在放射性污染物中的含量。共沉淀是最常用于对不能通过蒸发浓缩的液体废物进行净化的方法。通常通过共沉淀将两种操作模式用于工业规模处理:连续和半间歇过程。实验和理论证明,半间歇式反应器比连续搅拌釜式反应器具有更高的净化效率。因此,设计了一种具有无限循环比率的创新反应器,以优化连续处理:反应器/分级机达到的效率与半间歇法相同,是共沉淀过程强化的有效设备。下文介绍了这种新型的共沉淀反应器及其在核净化具体案例中的实验应用。该过程的建模是全新的:它验证了实验结果,还提出了用于预测净化效率的理论方程式。

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