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Adsorption of Phenol from Dilute and Concentrated Aqueous Solutions by Activated Carbons

机译:活性炭从稀水溶液和浓水溶液中吸附苯酚

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摘要

Combined calorimetric and adsorption techniques show that in the case of phenol adsorption from either dilute or concentrated aqueous solutions, water is always adsorbed preferentially by the oxygen-containing surface groups of the carbon. This reduces the surface and/or the micropore volume accessible to the phenol molecule and quantitatively explains the decrease in the limiting adsorption of phenol on a given carbon after oxidation. In the case of dilute solutions, as established earlier, the mechanism corresponds to the coating of the total surface (external surface and micropore walls) by a monolayer of phenol. On the other hand, for concentrated solutions (15−25% of water), one observes a process of micropore filling by phenol. Both mechanisms can be described in the framework of Dubinin's theory, which allows predictions based on simple physical and structural parameters.
机译:量热和吸附技术的结合表明,在稀溶液或浓水溶液吸附苯酚的情况下,水总是优先被碳的含氧表面基团吸附。这减少了酚分子可及的表面和/或微孔的体积,并定量解释了氧化后苯酚在给定碳上的极限吸附的减少。如前所述,在稀溶液的情况下,其机理相当于用单层苯酚覆盖整个表面(外表面和微孔壁)。另一方面,对于浓溶液(15-25%的水),人们观察到酚引起的微孔填充过程。这两种机制都可以在Dubinin理论的框架中描述,该理论允许基于简单的物理和结构参数进行预测。

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