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Speciation of adsorbed CO2 on metal oxides by a new 2-dimensional approach: 2D infrared inversion spectroscopy (2D IRIS)

机译:通过新的二维方法在金属氧化物上吸附的CO2的形态:2D红外反转光谱法(2D IRIS)

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摘要

A new methodology based on the inversion of adsorption isotherms obtained using infrared spectroscopy has been developed. It provides a description of coexisting surface species in terms of their individual IR spectra and surface affinities in a new two dimensional, 2D IR spectroscopic technique. When implemented with simultaneous gravimetric analysis, it further provides the quantification of adsorbed species. The adsorption of CO2 on monoclinic ZrO2 was investigated using this technique with temperature and pressure ranges of 353-673 K and 10~(-4)-0.4 bar, respectively. The sets of spectra obtained at constant temperature and variable pressures (spectroscopic isotherms) were inverted assuming they obey a generalized Langmuir isotherm. This procedure yields a 2D map in which the IR spectra of the prominent surface species formed upon CO2 adsorption are resolved in one dimension - hydrogen carbonates, bidentate carbonates and polydentate carbonates - while these species are resolved according to their surface adsorption affinities (logarithm of adsorption equilibrium constants, InK) on the other dimension. This technique also allows for the unambiguous determination of the thermodynamic stabilities of the various adsorbed species.
机译:已经开发了一种新的方法,该方法基于利用红外光谱法获得的吸附等温线的倒置。它提供了一种新的二维二维红外光谱技术中共存的表面物种的个体红外光谱和表面亲和力的描述。当同时进行重量分析时,它还可以对吸附物质进行定量。利用该技术研究了CO2在单斜ZrO2上的吸附,温度和压力范围分别为353-673 K和10〜(-4)-0.4 bar。假设它们服从广义Langmuir等温线,则将在恒定温度和可变压力下获得的光谱集(光谱等温线)反转。此过程将产生一个二维图,其中将一氧化碳吸附形成的主要表面物质的红外光谱一维分解,即碳酸氢盐,二齿碳酸盐和多齿碳酸盐,而这些物质则根据其表面吸附亲和力(吸附对数)进行解析。平衡常数InK)在另一个维度上。该技术还可以明确确定各种吸附物质的热力学稳定性。

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