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On inverse adsorption chromatography. 2. Determination of isotherms and heats of adsorption as well as energy distributions of adsorption sites

机译:在逆吸附色谱上。 2.确定等温线和吸附热以及吸附位的能量分布

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摘要

The isotherms and heats of adsorption, as well as the energy distributions of adsorption sites for pyridine at 100 degrees C and benzene at 40 degrees C on the silica surface, were determined by the method of inverse gas chromatography (IGC). These characteristics are usually obtained from IGC after integration of its direct result: the derivative of the adsorption isotherm. It is shown that the constant of integration plays a critical role in obtaining the isosteric heats of adsorption and the energy distributions of adsorption sites. The method of extrapolation is shown herein to be most appropriate for obtaining this constant. The modified ECP method, which takes account of longitudinal diffusion and kinetics of adsorption, was developed in the companion paper (Bakaev, V. A. J. Phys. Chem. C 2007, 111, 7463-7472) and was applied here to the pyridine/silica and benzene/silica systems. It is shown how to experimentally determine the longitudinal diffusion coefficient and the kinetics of adsorption coefficient. The IGC method probes only a small fraction of all of the adsorption sites on a surface. These are the strongest adsorption sites whose adsorption energy in the case of pyridine is almost 6 times larger in magnitude than the heat of liquefaction.
机译:通过逆气相色谱法(IGC)测定了二氧化硅表面上100℃的吡啶和40℃的苯的吸附等温线和热以及吸附位的能量分布。这些特性通常是从IGC的直接结果积分后得出的:吸附等温线的导数。结果表明,积分常数对获得等温吸附热和吸附位点的能量分布起着至关重要的作用。在此示出外推方法最适合于获得该常数。在伴侣纸(Bakaev,VAJ Phys.Chem.C 2007,111,7463-7472)中开发了一种改良的ECP方法,该方法考虑了纵向扩散和吸附动力学,并在此应用于吡啶/二氧化硅和苯/二氧化硅系统。显示了如何通过实验确定纵向扩散系数和吸附系数的动力学。 IGC方法仅探测表面上所有吸附位点的一小部分。这些是最强的吸附位,在吡啶的情况下,其吸附能的大小几乎比液化热大6倍。

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