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Adsorption of Nitrogen, Oxygen, and Argon Vapors on Supermicroporous Oxides

机译:氮,氧和氩蒸气在超微孔氧化物上的吸附

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摘要

The adsorption of N_2, O_2, and Ar vapors on a number of supermicroporous tin dioxide and zirconia xerogels at 77.4 K was studied. The micropore volumes calculated with the use of sorbate densities at the corresponding temperature were found to be in satisfactory agreement for all of the sorbates. At the same time, the volumes of larger pores measured using nitrogen were greater than the values found with other sorbates. The previously found behavior of oxygen and nitrogen molecules in the geometrically restricted space of supermicropores was substantiated. In particular, this behavior manifests itself in a change in the adsorption properties of a unit surface area of supermicropores as compared with the surface of mesopores. However, the effects of this kind were not found for the argon-nitrogen sorbate pair.
机译:研究了N_2,O_2和Ar蒸气在77.4 K条件下在许多超微孔二氧化锡和氧化锆干凝胶上的吸附。发现在所有温度下使用吸附剂密度计算出的微孔体积均令人满意。同时,使用氮气测量的较大孔的体积大于使用其他山梨酸盐的值。先前发现的氧和氮分子在超微孔的几何受限空间中的行为得到了证实。特别地,这种行为本身表现为与中孔的表面相比,超微孔的单位表面积的吸附性质发生了变化。然而,对于氩-氮山梨酸酯对没有发现这种效果。

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