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Fixed-bed adsorption of toluene on high silica zeolites: experiments and mathematical modelling using LDF approximation and a multisite model

机译:高硅沸石上甲苯的固定床吸附:使用LDF近似和多立体模型进行实验和数学建模

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摘要

The adsorption of toluene (TOL) as a target volatile organic compound has been studied experimentally and modelled on various hydrophobic zeolites: Faujasite (FAU), ZSM-5 (Z) and Mordenite (MOR). The influence of the nature of the compensating cation (H+ or Na+) has also been investigated for ZSM-5 zeolite, which is known to possess three kinds of adsorption sites (sinusoidal channels, straight channels and intersections). Type I isotherms observed on FAU, Na-Z and MOR fitted well with the Langmuir model. A deviation from a type I isotherm was observed for H-Z, because of the structure of this zeolite. The Successive Langmuir Model was more successful to fit the 'bump' of the experimental curve than the Double Langmuir. Classical shapes were found for MOR, FAU and Na-Z breakthrough curves that were fitted with good accuracy using the Linear Driving Force (LDF) approximation. In the case of H-Z, a change of profile was observed during the dynamic adsorption and the differences seen between the Na-Z and H-Z behaviours were explained by the strong interactions between Na+ and adsorbed TOL at the intersection sites. The Na+ cations prevented reorientation of TOL molecules at the intersection and thereby avoided the filling of the sinusoidal channel segments. Thus, a specific model was developed for fitting the breakthrough curve of H-Z. The model developed took into account these two types of adsorption sites with the overall uptake for each site being given by an LDF approximation.
机译:通过实验研究了作为靶挥发性有机化合物的甲苯(Tol)的吸附,并在各种疏水沸石上进行建模:Faujasite(FAU),ZSM-5(Z)和MordeNite(Mor)。还研究了ZSM-5沸石的补偿阳离子(H +或Na +)的性质的影响,该ZSM-5沸石已知具有三种吸附位点(正弦通道,直线通道和交叉点)。在FAU,Na-Z和Mor与Langmuir模型很好地观察到I等温机。由于该沸石的结构,从H-Z观察到来自I型Isotherm的偏差。连续的Langmuir模型更成功地符合实验曲线的“凹凸”而不是双朗米尔。为Mor,FAU和NA-Z突破曲线发现了古典形状,其使用线性驱动力(LDF)近似具有良好的精度。在H-Z的情况下,在动态吸附过程中观察到曲线的变化,并通过Na +之间的强相互作用和在交叉点上吸附的Tol之间的强相互作用来解释在动态吸附期间和族Z和H-Z行为之间的差异。 Na +阳离子防止了交叉处的甲块分子的重新定位,从而避免了正弦通道段的填充。因此,开发了一种用于拟合H-Z的突破曲线的特定模型。该模型考虑了这两种类型的吸附位点,其中每个站点的整体摄取是由LDF近似给出的。

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