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Using the local adsorption equilibrium distribution based on a Langmuir type adsorption model to investigate liquid phase adsorption of sugars on zeolite BEA

机译:利用基于Langmuir型吸附模型的局部吸附平衡分布研究沸石上糖的液相吸附

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Adsorption isotherms generated by the Elution by Characteristic Point Method were used to determine the local adsorption equilibrium distribution (AEqD) on commercial zeolite BEA 150 extrudate pellets at room temperature. The linear sugar alcohol sorbitol and the circular sugar fructose were used as sensor molecules since both showed a rather strong adsorption with a typical type I isotherm. The expectation maximization method was transferred into a MATLAB code to calculate the most probable AEqD explaining the experimental data. The resulting distribution favors a bi-site Langmuir model that is in good agreement with the pore sizes of this zeolite, the critical diameters of the adsorptive molecules and gas phase experiments conducted previously. In summary, both molecules are too big to enter the zigzag channels of the zeolite. Instead they occupy two different binding sites in the straight channels and at the intersections between the straight and the zigzag channels. Therefore, sugars and sugar alcohol can be a good sensor to investigate the interaction between a zeolite crystal and adsorptive molecules in the liquid phase.
机译:通过特征点法洗脱产生的吸附等温物用于在室温下测定商业沸石BEA 150挤出物颗粒上的局部吸附平衡分布(AEQD)。线性糖醇山梨糖醇和圆形糖果糖用作传感器分子,因为两者都显示出相当强的吸附性,其具有典型的I等温线。预期最大化方法被转移到MATLAB代码中以计算解释实验数据的最可能的AEQD。由此产生的分布有利于与该沸石的孔径良好的双峰朗马尔模型,其先前进行的吸附分子和气相实验的临界直径。总之,两个分子太大,不能进入沸石的锯齿状通道。相反,它们占据直线通道中的两个不同的绑定站点,并且在直线和锯齿形通道之间的交叉处。因此,糖和糖醇可以是良好的传感器,以研究液相中沸石晶体和吸附分子之间的相互作用。

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