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Development and qualification of an innovative wet electrostatic precipitator in view of gaseous iodine filtration on laboratory-scale

机译:鉴于实验室规模的气态碘过滤,新型湿式静电除尘器的开发和鉴定

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摘要

An innovative method to filter gaseous iodine based on a wet electrostatic precipitator (WESP) was developed and tested. It is characterized by an ozone feed located before the WESP inlet to oxidize gaseous iodine into iodine oxide particles. Tests were carried out with titanium dioxide particles, first, and then with gaseous molecular iodine (I-2) and methyl iodide (CH3I). The applied electric voltage between the electrodes, the total flow rate inside the WESP, and the injection of water droplets before the WESP were varied. The filtration efficiency based on the number of particles was calculated from ELPI and CPC measurements at the inlet and the outlet of the WESP. To determine the mass filtration efficiency for iodine, ICP-MS analyses were performed. Once the operation parameters were optimised for the tested conditions, the WESP ensured a mass filtration efficiency of 99.9% and a particle number based filtration efficiency up to 99.9% against molecular iodine. The efficiency for the filtration of methyl iodide was not as high. The filtration efficiency data are presented covering the particle size range of 0.04-2 mu m.
机译:开发并测试了一种基于湿式静电除尘器(WESP)的过滤气态碘的创新方法。它的特点是位于WESP入口之前的臭氧进料,用于将气态碘氧化为氧化碘颗粒。首先用二氧化钛颗粒进行测试,然后用气态分子碘(I-2)和甲基碘(CH3I)进行测试。改变电极之间的施加电压,WESP内部的总流速以及WESP之前的水滴注入。基于颗粒数量的过滤效率是根据WESP入口和出口处的ELPI和CPC测量得出的。为了确定碘的质量过滤效率,进行了ICP-MS分析。一旦针对测试条件优化了操作参数,WESP将确保99.9%的质量过滤效率和针对分子碘的基于颗粒数的过滤效率高达99.9%。过滤碘甲烷的效率不是很高。提出的过滤效率数据涵盖了0.04-2μm的粒径范围。

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