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Multicomponent adsorption measurements on activated carbon, zeolite molecular sieve and metal–organic framework

机译:活性炭,沸石分子筛和金属有机骨架上的多组分吸附测量

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Sorptive gas treatment for biogas purification, mainly in pressure swing adsorption processes, currently constitutes the state of the art. Consequently the knowledge of sorption properties of appropriate sorbent materials is of great importance. In this context pure gas isotherms are often used for the evaluation of such materials. To allow a realistic description of sorptive biogas purification processes the multicomponent sorption behavior of corresponding materials is of special interest. For this reason we present measurement data for the selective sorption of quaternary gas mixtures on activated carbon Norit R1 Extra, zeolite molecular sieves 13X and metal–organic framework Basolite C300 with a gas mixture consisting of 60 mol% CH4, 33 mol% CO2, 5 mol% N2 and 2 mol% H2. Measurements were performed with a manometric-gravimetric sorption measurement apparatus, combined with a gas chromatography system. In contrast to the aforementioned multicomponent sorption measurement, measured pure gas sorption data are often used for multicomponent sorption prediction. For this purpose, several prediction models, i.e. the IAST model, are available. In this context, the multicomponent sorption behavior of the materials mentioned above was also predicted using the IAST model. The results of the performed sorption measurements and the comparison to the predicted sorption data will be presented and discussed in this paper.
机译:用于生物气净化的吸附性气体处理,主要是变压吸附工艺,目前构成了现有技术。因此,了解合适的吸附剂材料的吸附性能非常重要。在这种情况下,纯气体等温线通常用于评估此类材料。为了对吸附性沼气的净化过程进行现实的描述,特别关注相应材料的多组分吸附行为。因此,我们提供了在活性炭Norit R1 Extra,分子筛13X和金属-有机骨架Basolite C300上选择性吸附四元气体混合物的测量数据,以及由60摩尔%CH4、33摩尔%CO2、5组成的气体混合物N2摩尔%和H2摩尔%用压力-重力吸收测量仪结合气相色谱系统进行测量。与前述的多组分吸附测量相反,所测量的纯气体吸附数据通常用于多组分吸附预测。为此,可以使用几种预测模型,即IAST模型。在这种情况下,还使用IAST模型预测了上述材料的多组分吸附行为。本文将介绍和讨论进行的吸附测量的结果以及与预测吸附数据的比较。

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