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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Water Adsorption on Activated Carbons: Study of Water Adsorption in Micro- and Mesopores
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Water Adsorption on Activated Carbons: Study of Water Adsorption in Micro- and Mesopores

机译:活性炭上的水吸附:微孔和中孔中水的吸附研究

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The mechanism of water adsorption is analyzed in a range of activated carbons differing widely in the relative proportions of narrow and wide micropores, mesopores, and macropores. They also display different degrees of surface functionality. By assuming that the adsorbed phase in micropores is "ice-like", it is shown that the whole micropore volume is filled with water at a P/P_0 of about 0.82, at which point capillary condensation may begin. However, surface complexes control the wetting of the mesopore walls by adsorbed water and can influence the condensation process. Condensation in macropores may also occur at P/P_0 values above 0.95. The extent of meso-/macropore filling depends on the surface complexes. The volume filling process is progressive and in micropores is consistent with the theory of volume filling.The adsorption process was analyzed by interpreting the nitrogen isotherms systematically measured on samples of different pore structure with progressively increasing amounts of preadsorbed water up to saturation.
机译:分析了一系列活性炭的吸水机理,这些活性炭在窄和宽微孔,中孔和大孔的相对比例方面差异很大。它们还显示不同程度的表面功能。通过假定微孔中的吸附相为“冰状”,表明整个微孔体积以约0.82的P / P_0充满水,这时毛细冷凝可开始。但是,表面配合物控制中孔壁被吸附水的润湿,并可能影响缩合过程。当P / P_0值高于0.95时,大孔中也可能发生冷凝。中孔/大孔的填充程度取决于表面复合物。体积填充过程是逐步进行的,并且在微孔中与体积填充理论相符。通过解释系统地测量不同孔隙结构样品上的氮等温线来分析吸附过程,其中逐渐增加的预吸附水量达到饱和。

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