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首页> 外文期刊>Catalysis science & technology >Correction for a possible reversible adsorption over an ;inert' material
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Correction for a possible reversible adsorption over an ;inert' material

机译:校正在;惰性材料上可能具有可逆的吸附

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All TAP micro-reactor configurations contain inert particles which are used so that the catalyst zone can be maintained under isothermal conditions. Even on "inert" particles adsorption will occur to some degree; however, the extent to which this occurs has a critical influence on the analysis of the TAP data. In many cases the assumption that there is no interaction between probe molecules and inert particles is required as reversible adsorption over inert material is problematic when the TAP model has to be solved. Moreover, as the TAP pulse response experiments are designed to be conducted within the Knudsen diffusion regime, central to TAP data analysis is the characterization of the diffusional transport of reagent molecules through the micro-reactor, which is achieved via "diffusion only" experiments over an inert one zone packing. Therefore, if there are any processes occurring in addition to Knudsen diffusion over the inert material, such as reversible adsorption, it is important to factor these into the analysis. If these additional processes are not included, the entire data analysis would be questionable. The current work discloses the development of a function which accounts for the adsorption over the inert material, so that the TAP data analysis can be accurately determined. This newly developed analysis method has been exemplified using the selective reduction of oxygen in a hydrogen rich ethylene feed over silver catalysts as a case study.
机译:所有TAP微反应器构型都包含使用的惰性颗粒,以便可以在等温条件下保持催化剂区域。即使在“惰性”颗粒上,吸附也会在某种程度上发生。但是,发生这种情况的程度对TAP数据的分析有关键的影响。在许多情况下,探针分子和惰性颗粒之间没有相互作用的假设是需要惰性材料的可逆吸附是有问题的。此外,由于“ Tap脉冲响应实验”设计为在knudsen扩散状态内进行的,因此TAP数据分析的中心是通过微反应器的试剂分子扩散传输的表征,这是通过仅通过“扩散”实验而实现的。惰性一个区域包装。因此,如果除了对惰性材料(例如可逆的吸附)外,还有任何过程,例如可逆的吸附,则将这些过程分解为分析非常重要。如果不包括这些附加过程,则整个数据分析将值得怀疑。当前的工作揭示了一个函数的开发,该功能解释了对惰性材料的吸附,因此可以准确确定TAP数据分析。这种新开发的分析方法已被用来选择性减少富含氢的乙烯在银催化剂上作为案例研究的选择性减少。

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