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Surface excess amounts in high-pressure gas adsorption: Issues and benefits

机译:高压气体吸附中的表面过量:问题和好处

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摘要

This paper introduces a calculation procedure aimed at improving the accuracy and meaningfulness of high-pressure gas adsorption data obtained by either adsorption manometry or gravimetry. The procedure is based on the Gibbs model and avoids the usual simplifying assumption that the well-defined Gibbs dividing surface (the GDS) coincides with the ill-defined adsorptive-accessible surface of the microporous adsorbent. Instead, it makes a clear distinction between the two surfaces and introduces the concept of "Gibbs exclusion volume" (i.e. the volume enclosed by the GDS) which is shown to be central in the calculation of the surface excess amount and useful to avoid any confusion with the adsorbent volume. It is shown, in the case of methane adsorption on gas shale, how this procedure avoids introducing the uncertainty due to the dead volume determination in an inter-laboratory comparison. The conditions for a surface excess isotherm to be a useful intermediate step in the assessment of the amount adsorbed are stressed and illustrated. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了一种计算程序,旨在提高通过吸附测压法或重力法获得的高压气体吸附数据的准确性和意义。该程序基于Gibbs模型,并且避免了通常的简化假设,即定义明确的Gibbs分割表面(GDS)与微孔吸附剂的定义不明确的吸附可及表面重合。取而代之的是,它明确区分了两个表面,并引入了“吉布斯排除体积”(即由GDS包围的体积)的概念,该概念在计算表面多余量时表现出中心作用,有助于避免混淆与吸附剂的体积有关。结果表明,在页岩气中有甲烷吸附的情况下,该程序如何避免在实验室间比较中由于死体积的确定而引入不确定性。强调并说明了表面过量等温线作为评估吸附量有用的中间步骤的条件。 (C)2015 Elsevier B.V.保留所有权利。

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