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Quantitative far-infrared band strengths of iodine monochloride (ICl), a molten salt off-gas product

机译:熔融盐废气产品一氯化碘(ICl)的定量远红外带强度

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The gaseous (by)products generated from molten salt reactors need to be monitored to prevent the release of potentially toxic gases to the environment. In particular, ~(129)I has a long half-life and its toxicity and persistence in the environment make iodine and iodine-containing compounds (such as IC1 from chloride containing molten salt systems) of great concern. Optical spectroscopy tools, including Raman and Fourier-transform infrared (FTIR) spectroscopies, are ideal for monitoring and quantifying such off-gas products. Iodine (I_2) has a strong and distinct Raman signature and the change in signal with a change in concentration can be used for quantification of these byproducts. Iodine monochloride (ICl) has distinct signatures in both the Raman and the infrared, and its spectrum can also potentially be used for quantitative measurement of this species. In this paper we discuss our recent results on the quantification of iodine monochloride using infrared spectroscopy, in particular first reports of the absolute infrared band strength of ICl.
机译:需要监控熔融盐反应器产生的气态(副)产物,以防止向环境释放潜在的有毒气体。特别地,〜(129)I具有长的半衰期,并且其毒性和在环境中的持久性使人们非常关注碘和含碘的化合物(例如含氯的熔盐体系中的IC1)。光学光谱工具,包括拉曼光谱和傅立叶变换红外(FTIR)光谱仪,是监测和量化此类废气产品的理想选择。碘(I_2)具有很强的拉曼特征,并且随浓度变化的信号变化可用于量化这些副产物。一氯化碘(ICl)在拉曼光谱和红外光谱中均具有独特的特征,其光谱也可潜在地用于对该物种的定量测量。在本文中,我们讨论了使用红外光谱法定量一氯化碘的最新结果,尤其是有关ICl绝对红外谱带强度的首次报道。

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