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STUDY ON MICROWAVE CURING OF RADIOACTIVE WASTE

机译:放射性废物的微波诱变研究

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Processing of nuclear waste has become an important issue nowadays. A microwave waste disposal method for solid waste mainly containing Ni, Fe element and their oxide produced in the primary loop is investigated in this article. The powder waste, which is treated as absorber of microwave and energy source for curing, was doped in the curing agent that using SiO_2 as a main component. In the experiment, using a household microwave oven (Microwave-frequency: 2.45GHz, Output power: 700W), thermal effects and non-thermal effects make samples heated to a high temperature quickly and then curing. In order to evaluate the effect parameters including different doping ingredient, heating period, pressure were changed. A pressure is applied to make a better curing effect. After curing, the measurement of the density of the cured body was made. The microstructure of the samples was observed with an optical microscope, and the cured body composition was analyzed by XRD and SEM. The results show that samples are sintered quickly with less than 15 minutes and the cured body has a good performance. It's therefor that microwave technology can be an effective way to dispose microwave absorbing substances such as Fe, Ni-containing powder waste.
机译:如今,核废料的处理已成为一个重要问题。本文研究了一种微波废物处理方法,用于处理一次回路中主要含有Ni,Fe元素及其氧化物的固体废物。将粉末废料作为微波吸收剂和固化能源处理后,掺入以SiO_2为主要成分的固化剂中。在实验中,使用家用微波炉(微波频率:2.45GHz,输出功率:700W),热效应和非热效应使样品迅速加热到高温然后固化。为了评估包括不同掺杂成分,加热时间,压力在内的影响参数。施加压力以实现更好的固化效果。固化后,进行固化体的密度的测定。用光学显微镜观察样品的微观结构,并通过XRD和SEM分析固化体组成。结果表明,在不到15分钟的时间内即可快速烧结样品,并且固化体具有良好的性能。因此,微波技术可以成为处理诸如Fe,Ni的粉末废物之类的微波吸收物质的有效方法。

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