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Mass transfer dynamics of gaseous methyl-iodide adsorption by silver-exchanged sodium mordenite.

机译:银交换钠丝光沸石吸附气态甲基碘的传质动力学。

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The adsorption of methyl iodide onto hydrogen-reduced silver-exchange mordenite was studied. The removal of organic iodides from off-gas streams is an important step in controlling the release of radioactive iodine to the environment during the treatment of radioactive wastes or the processing of some irradiated materials. Nine well-accepted mass transfer models were evaluated for their ability to adequately explain the observed CH3I uptake behavior onto the Ag-Z. Linear and multidimensional regression techniques were utilized in the estimation of the diffusion constants and other model parameters which then permitted the selection of an appropriate mass transfer model. To date, only bulk loading data exist for the adsorption of CH3I onto Ag-Z. This is believed to be the first study to quantify the controlling mass transfer mechanisms of this process. It can be concluded from the analysis of the experimental data obtained by the single-pellet type experiments and for the process conditions used in this study that the overall mass transfer rate associated with the adsorption of CH3I onto Ag-Z is affected by both micropore and macropore diffusion. 75 refs.

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