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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Adsorption of Carbon Dioxide on Mesoporous Zirconia: Microcalorimetric Measurements, Adsorption isotherm Modeling, and Density Functional Theory Calculations
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Adsorption of Carbon Dioxide on Mesoporous Zirconia: Microcalorimetric Measurements, Adsorption isotherm Modeling, and Density Functional Theory Calculations

机译:介孔氧化锆上二氧化碳的吸附:量热法测量,吸附等温线模型和密度泛函理论计算

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摘要

Mesoporous zirconia was prepared using the sol-gel process and the EISA method. It presents a specific surface area of 90 m~2 · g~(-1) and an interparticular porosity associated with a pore diameter of around 4-5 nm, and it crystallizes in the tetragonal symmetry. The determination of the CO2 adsorption properties (both the isotherm and adsorption enthalpies) coupled with isotherm modeling using a multi-Langmuir model and density functional theory (DFT) calculations on different representative clusters evidenced that the surface of zirconia is heterogeneous from an energetic point of view. It emerges from both the experimental and the theoretical results that (i) the adsorption sites associated with the lowest enthalpies of adsorption (between -24 and -34 kJ · mol~(-1)) representnearly 65-70% of the total number of the adsorption sites present on the zirconia surface. They correspond to the interactions (physisorption) between carbon dioxide and oxygen atoms or hydroxyl groups of the surface, (ii) The adsorption sites associated with higher enthalpies of adsorption (around -65 kJ · mol~(-1)) correspond to the interactions between carbon dioxide and Zr atoms; they represent around 5% of the total amount of adsorption sites, (iii) The adsorption sites associated with high enthalpies of adsorption (below -70 kJ · mol~(-1)) represent only a small fraction of the adsorption sites (around 10%) and correspond probably to the interaction of CO2 with structural surface defects or charged sites.
机译:使用溶胶-凝胶法和EISA方法制备了介孔氧化锆。它具有90 m〜2·g〜(-1)的比表面积和约4-5 nm的孔径相关的孔间孔隙,并以四方对称的形式结晶。使用多朗缪尔模型和密度泛函理论(DFT)对不同的代表性簇进行的CO2吸附特性(等温线和吸附焓)的确定以及等温线模型的研究表明,氧化锆表面从高能点出发是非均质的视图。从实验和理论结果来看,(i)与最低吸附焓相关的吸附位点(在-24和-34 kJ·mol〜(-1)之间)占吸附总数的65-70%。存在于氧化锆表面上的吸附位。它们对应于二氧化碳与表面的氧原子或羟基之间的相互作用(物理吸附),(ii)与更高的吸附焓(约-65 kJ·mol〜(-1))相关的吸附位对应于相互作用在二氧化碳和Zr原子之间;它们占吸附位点总量的5%左右;(iii)与高吸附焓相关的吸附位点(-70 kJ·mol〜(-1)以下)仅占吸附位点的一小部分(约10 %),并且可能对应于CO2与结构表面缺陷或带电部位的相互作用。

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