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Correlation between two- and three-dimensional condensations in cylindrical mesopores of active carbons

机译:活性炭圆柱形介孔二维和三维缩合的相关性

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摘要

Adsorption interactions in narrow cylindrical capillaries decay with radii approximately as r(-1.1) and this slowly decreasing adsorption potential is responsible for adsorption behavior in the capillary condensation region. Filling of mesopores with concave curvatures is considered to be an evolution of the two-dimensional (2D) condensation, which occurs: on the mesopore walls at the critical condensation pressure. An adsorption isotherm in the individual mesopore exhibits the feature characteristic of condensation: a vertical jump at a pressure approximately corresponding to the critical pressure of a 2D-condensation. Mesopore filling pressures are found proceeding from statistical mechanical theories of adsorption on the planar surface taking into account lateral adsorbate-adsorbate interactions. The model describes the adsorption branch of the hysteresis loop. The underlying reason of the hysteresis loop is discussed. Analysis of adsorption isotherms for benzene and nitrogen shows that the developed model and the classical Kelvin equation lead to close values of mesopore radii. (C) 2001 Elsevier Science Ltd. All rights reserved. References: 29
机译:窄圆柱形毛细管中的吸附相互作用衰减,半径约为r(-1.1),这种缓慢降低的吸附电位是毛细管缩合区域吸附行为的原因。具有凹曲率的中间孔隙的填充被认为是二维(2D)冷凝的演变,它发生在临界冷凝压力下的中孔壁上。单个介孔中的吸附等温线表现出冷凝的特征:在大约对应于二维冷凝临界压力的压力下垂直跳跃。中间孔填充压力是从平面表面吸附的统计力学理论出发的,同时考虑了侧向吸附物-吸附物的相互作用。该模型描述了滞后回线的吸附分支。讨论了滞后回路的根本原因。对苯和氮的吸附等温线分析表明,所建立的模型和经典的开尔文方程导致了介孔半径的接近值。(C) 2001 Elsevier Science Ltd.保留所有权利。[参考文献: 29]

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