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Deformation of AUK microporous carbon adsorbent induced by xenon adsorption

机译:氙吸附引起的AUK微孔碳吸附剂变形

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The pressure dependences of the relative linear deformation of AUK microporous carbon adsorbent obtained from silicon carbide have been measured upon xenon adsorption in a range of pressures p from 1 Pa to 6 MPa at 178, 216, 243, 273, 313, 353, and 393 K. The adsorption-induced deformation increases with pressure and decreases with a rise in temperature, except for the initial pressure range (p < 0.05 MPa). At low temperatures, the deformation curves show that the adsorbent contracts in the initial pressure range, with the contraction region narrowing upon increasing temperature. At temperatures higher than 353 K, the initial contraction is absent and the adsorbent expands with a rise in xenon pressure in the entire pressure range. The description of the deformation versus adsorption value dependences by the equation based on the generalized 6-n intermolecular interaction potential has shown good agreement between the calculated and experimental data in the region of moderate and high fillings of micropores throughout the studied temperature range.
机译:在178,216,243,273,313,353和393的压力p从1 Pa到6 MPa的范围内氙气吸附下,测量了从碳化硅获得的AUK微孔碳吸附剂的相对线性变形的压力依赖性。 K.除了初始压力范围(p <0.05 MPa)外,吸附引起的变形随压力增加而随温度升高而减小。在低温下,变形曲线表明,吸附剂在初始压力​​范围内收缩,随着温度升高,收缩区域变窄。在高于353 K的温度下,不存在初始收缩,并且随着氙气压力在整个压力范围内的升高,吸附剂膨胀。通过基于广义6-n分子间相互作用势的方程式描述的变形与吸附值之间的依赖性,表明在整个研究温度范围内,在中等和高填充率的微孔区域中,计算数据与实验数据之间具有良好的一致性。

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