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Gas Porosimetry by Gas Adsorption as an Efficient Tool for the Assessment of the Shaping Effect in Commercial Zeolites

机译:气体吸附作为气体吸附作为评估商业沸石中的成型效果的有效工具

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摘要

A set of three commercial zeolites (13X, 5A, and 4A) of two distinct shapes have been characterized: (i) pure zeolite powders and (ii) extruded spherical beads composed of pure zeolite powders and an unknown amount of binder used during their preparation process. The coupling of gas porosimetry experiments using argon at 87 K and CO2 at 273 K allowed determining both the amount of the binder and its effect on adsorption properties. It was evidenced that the beads contain approximately 25 wt% of binder. Moreover, from CO2 adsorption experiments at 273 K, it could be inferred that the binder present in both 13X and 5A zeolites does not interact with the probe molecule. However, for the 4A zeolite, pore filling pressures were shifted and strong interaction with CO2 was observed leading to irreversible adsorption of the probe. These results have been compared to XRD, IR spectroscopy, and ICP-AES analysis. The effect of the binder in shaped zeolite bodies can thus have a crucial impact on applications in adsorption and catalysis.
机译:已经表征了两种不同形状的三种三种商业沸石(13x,5a和4a):(i)由纯沸石粉末组成的纯沸石粉末和(ii)挤出的球形珠粒和其制备过程中使用的未知量的粘合剂过程。在87 k和CO 2下使用氩气的气孔瘤测距物实验在273 k下偶联允许确定粘合剂的量及其对吸附性质的影响。证明珠子含有约25wt%的粘合剂。此外,从273k的CO 2吸附实验中,可以推断,在13x和5a沸石中存在的粘合剂不会与探针分子相互作用。然而,对于4A沸石,孔隙填充压力偏移并且观察到与CO 2的强相互作用导致探针的不可逆吸附。将这些结果与XRD,IR光谱和ICP-AES分析进行了比较。因此,粘合剂在异形沸石体中的作用可以对吸附和催化的应用具有至关重要的影响。

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