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Excess surface work—A modelless way of getting surface energies and specific surface areas directly from sorption isotherms

机译:多余的表面功-一种直接从吸附等温线获取表面能和比表面积的无模型方法

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Sorption isotherms can be easily transformed into excess surface work (ESW) isotherms, computed as the product of the adsorbed amount and the change in chemical potential. Plotted against the amount adsorbed at least one minimum is yield. Thermodynamically ESW is the sum of the surface free energy and the isobaric isothermal work of sorption. Therefore, ESW is not a model, instead it is just another way of presenting an isotherm. From the amount adsorbed in the first minimum one can obtain a specific surface area similar to the BET surface area. The depth of the ESW in the minimum gives a sorption energy, which corresponds approximately to the loss of degrees of freedom of the sorptive. In this contribution the ESW plots of various sorption isotherms on highly ordered alumina with cylindrical pores of 25 nm width and mesoporous SBA 15 will be presented and discussed.
机译:吸附等温线可以很容易地转换成多余的表面功(ESW)等温线,计算方法为吸附量与化学势变化的乘积。相对于至少一个最小吸附量绘制出产量。热力学上的ESW是表面自由能和等压吸附等温功的总和。因此,ESW不是模型,而是只是表示等温线的另一种方法。从第一最小值中的吸附量,可以获得与BET表面积相似的比表面积。 ESW的深度最小时会产生一种吸附能,大约相当于吸附剂自由度的损失。在此贡献中,将展示和讨论在具有25 nm宽度的圆柱孔和中孔SBA 15的高度有序的氧化铝上的各种吸附等温线的ESW图。

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