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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Multivariate Analysis of Infrared Spectra for Monitoring and Understanding the Kinetics and Mechanisms of Adsorption Processes
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Multivariate Analysis of Infrared Spectra for Monitoring and Understanding the Kinetics and Mechanisms of Adsorption Processes

机译:红外光谱的多变量分析,用于监测和了解吸附过程的动力学和机理

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Water adsorption onto thin zeolite 3A wafers has been investigated as a function of time, water vapor concentration, and zeolite sample mass using mid-infrared spectroscopy coupled with multivariate data analysis. Principal component analysis (PCA) of the spectral region of the water combination band was used for quantitativecharacterization of water adsorption onto the zeolite. The kinetics of the adsorption of water are found to be very reproducible and nearly linear with time. The kinetics of water adsorption based on data from different masses of zeolite are consistent with a diffusion/immobilization model for which the interparticle diffusion rate iscomparable to the rate of adsorption. The infrared zeolite bands (1340--1550 cm~(-1)) change during the adsorption process and yield more detail about the adsorption sites of the material. PCA applied to the zeolite bands was not directly interpretable. However, multivariate curve resolution applied to the spectral region containing the zeolite bands readily demonstrates that zeolite 3A has three water adsorption sites or environments that are sequentially occupied. Potential explanations for the observations of the multivariate curve resolution (MCR) analysis of these infrared (IR) kinetic adsorption experiments are presented. The explanation most consistent with our data suggests that water adsorbs sequentially on the zeolite to form single, double, and triple water adsorption on singlezeolite adsorption sites. The combination of infrared spectroscopy and multivariate analysis is therefore demonstrated to be a powerful method to study detailed adsorption billetics and mechanisms of the adsorption of molecules onto surfaces.
机译:使用中红外光谱结合多元数据分析,研究了在3A薄沸石沸石上的水吸附随时间,水蒸气浓度和沸石样品质量的变化情况。使用水结合带光谱区域的主成分分析(PCA)来定量表征水吸附在沸石上的特性。发现水的吸附动力学是可重现的并且随时间几乎线性。基于来自不同质量的沸石的数据的水吸附动力学与颗粒间扩散速率与吸附速率可比的扩散/固定模型一致。红外沸石带(1340--1550 cm〜(-1))在吸附过程中发生变化,从而产生了有关材料吸附部位的更多细节。不能直接解释应用于沸石带的PCA。然而,应用于包含沸石谱带的光谱区域的多变量曲线分辨率容易证明,沸石3A具有三个水吸附位点或依次被占据的环境。提出了对这些红外(IR)动力学吸附实验进行多变量曲线分辨率(MCR)分析的潜在解释。与我们的数据最一致的解释表明,水依次吸附在沸石上,从而在单沸石吸附位上形成单,双和三重水吸附。因此,红外光谱和多元分析的结合被证明是研究详细的吸附特性和分子在表面上吸附机理的有效方法。

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