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STUDIES OF MOLECULAR INTERACTION EFFECTS IN PHYSICAL ADSORPTION ON HETEROGENEOUS SOLID SURFACES (MONTE CARLO, MIXTURE).

机译:物理吸附对非均质固体表面(蒙特卡罗,混合物)的分子相互作用影响的研究。

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Model studies were carried out on the inter-relationship between the vertical and lateral interactions present in physical adsorption.; An expansion of the adsorption integral equation, (AIE), was performed in terms of the statistics of the energy distribution. This relates the isotherm to the shape of the energy distribution rather than to a particular distributions's functional form.; A new isotherm was derived from the expansion and fit to experimental data. It represents the first-order correction to the Langmuir isotherm for heterogeneity. Its properties permit the IAS theory to be stated in a simple form. An algorithm called FastIAS has been implemented on this basis and it performs 25 times faster than the conventional IAS method.; Monte Carlo simulations of a lattice model of adsorption were performed, and the results were analyzed using the AIE to back-calculate an estimate of the energy distribution. The statistics of the calculated distribution (mean, standard deviation) varied linearly with the magnitude of the neglected lateral interactions. A complete set of thermodynamic information was generated for the model system.; A lattice model of adsorbed mixtures was proposed and solved in the Bragg-Williams approximation, assuming random heterogeneity. The model includes the lateral interactions and the surface heterogeneity. It was verified by Monte Carlo calculations. The model was employed to make predictions of experimental mixture data. In most cases it agreed more closely with the data than IAS.; Activity coefficients were calculated using the lattice model. Heterogeneity caused negative deviations whereas lateral interactions caused positive deviations from Raoult's law. Contrary to intuition, the excess area remains finite at the limit of zero pressure. Application of the model to liquid adsorption yielded an interpretation of some data which had previously not been explained. This behaviour corresponds to double azeotropy.; A high-precision apparatus for the measurement of adsorption isotherms was designed and constructed and an uncertainty analysis was undertaken. Data obtained using the apparatus were shown to be of high precision, and they yielded information about the heterogeneity of the adsorbents used.
机译:对物理吸附中存在的垂直和横向相互作用之间的相互关系进行了模型研究。根据能量分布的统计量,对吸附积分方程(AIE)进行了扩展。等温线与能量分布的形状有关,而不是与特定分布的功能形式有关。从扩展中得出了新的等温线,并拟合了实验数据。它表示对Langmuir等温线异质性的一阶校正。它的特性允许以简单的形式陈述IAS理论。在此基础上实现了一种称为FastIAS的算法,其执行速度是传统IAS方法的25倍。进行了吸附晶格模型的蒙特卡洛模拟,并使用AIE对结果进行了分析以反算能量分布的估计值。计算分布的统计量(均值,标准偏差)随被忽略的横向相互作用的大小线性变化。为模型系统生成了一套完整的热力学信息。提出了吸附混合物的晶格模型,并假设存在随机异质性,并以Bragg-Williams近似进行求解。该模型包括横向相互作用和表面异质性。通过蒙特卡洛计算验证。该模型用于预测实验混合物数据。在大多数情况下,与IAS相比,它与数据更为一致。使用晶格模型计算活性系数。非均质性导致负偏差,而横向相互作用则引起与拉乌尔定律的正偏差。与直觉相反,过量区域在零压力的极限处保持有限。该模型在液体吸附中的应用产生了一些以前没有解释过的数据的解释。该行为对应于双共沸。设计并构造了一种用于测量吸附等温线的高精度仪器,并进行了不确定度分析。使用该设备获得的数据显示出很高的精度,并且它们产生了有关所用吸附剂异质性的信息。

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