首页> 外文会议>International Congress on Advances in Nuclear Power Plants >COMBINATION OF OZONE FEED AND WET ELECTROSTATIC PRECIPITATOR: EXPERIMENTAL STUDY OF AN INNOVATIVE SYSTEM TO FILTER GASEOUS IODINE AND IODINE CONTAINING PARTICLES
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COMBINATION OF OZONE FEED AND WET ELECTROSTATIC PRECIPITATOR: EXPERIMENTAL STUDY OF AN INNOVATIVE SYSTEM TO FILTER GASEOUS IODINE AND IODINE CONTAINING PARTICLES

机译:臭氧饲料和湿静电除尘器的组合:一种滤过气态碘和碘含量的创新系统的实验研究

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Efficient mitigation systems capable of reducing as much as possible the radioactive discharge to the environment in a severe Nuclear Power Plant (NPP) accident are a necessity. Nuclear Power Plants are equipped with filtration systems which have been characterized for aerosol retention in a short term, but to a far lesser extent for the retention of volatile iodine or for the long-term behaviour of the system. After the Fukushima accident, one of the main concerns of the nuclear industry has been to verify the ability of filtration systems to mitigate the possible source term to the environment. Radiotoxic iodine has a significant contribution to a possible source term in a severe NPP accident. An innovative system has been developed at VTT Technical Research Centre of Finland Ltd. to filter gaseous iodine and iodine containing particles (e.g. I_xO_y). The system consists of a combination of an ozone feed and a modern wet electrostatic precipitator (WESP). The electrostatic precipitation (ESP) technique is widely used in the industry to filter out impurities (i.e. particles) in gases. The advantage of a WESP is that the impurities are removed from the system with a solution. They can thus directly be transported to a water container, such as the sump in a nuclear power plant. The addition of ozone feed at the inlet of the WESP allows the oxidation of gaseous iodine into particles. The efficiency of the system for the filtration of gaseous molecular iodine and methyl iodine has been tested and the subsequent observations are further discussed in this paper. The results showed that the combination of WESP together with ozone feed results in a good filtering efficiency against molecular iodine under air atmosphere and air/steam atmosphere.
机译:高效缓解系统尽可能地降低到严重的核电站(NPP)事故中对环境的放射性排放是必要的。核电厂配备有过滤系统,该过滤系统已经表征了气溶胶保留的短期内,但在较小程度上保持挥发性碘或系统的长期行为。在福岛事故发生后,核工业的主要问题之一是验证过滤系统的能力,以减轻可能的源期对环境的源头。无毒毒性碘对严重的NPP事故中可能的来源术语具有重要贡献。芬兰有限公司VTT技术研究中心开发了一种创新系统,用于过滤含有气态碘和含碘颗粒(例如I_XO_Y)。该系统包括臭氧饲料和现代湿静电除尘器(WEV)的组合。静电沉淀(ESP)技术广泛用于工业中以在气体中过滤杂质(即颗粒)。 Wesp的优点是用溶液从系统中除去杂质。因此,它们可以直接运输到水容器,例如核电厂中的贮槽。在Wesp的入口处加入臭氧饲料允许将气态碘氧化成颗粒。已经测试了过滤气态分子碘和甲基碘的系统的效率,本文进一步讨论了随后的观察。结果表明,与空气气氛和空气/蒸汽气氛下的分子碘的良好过滤效率。

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