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Adsorption enhancement of laterally interacting phenol/aniline mixtures onto nonpolar adsorbents

机译:横向相互作用的苯酚/苯胺混合物在非极性吸附剂上的吸附增强

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Adsorption equilibria of phenol and aniline onto nonpolar macroreticular adsorbents were investigated in single and binary-solute aqueous systems at 293 K and 313 K. All adsorption isotherms can be well represented by the Langmuir equation. Larger uptake of aniline than phenol onto all the adsorbents probably results from the higher hydrophobicity of the former compound as well as the greater electronic density of the aromatic ring of aniline. It is interestingly observed that at a relatively high loading, the total uptake of phenol and aniline in a binary system is remarkably higher than those in a single system. Such uptake difference was elucidated by the cooperative effect arising from the lateral acid-base interaction between the loaded phenol and aniline molecules. Moreover, larger average pore size of the adsorbent is found to result in a greater cooperative coefficient, as observed from the equimolar phenol/aniline adsorption system.
机译:在293 K和313 K的单溶质和二元溶质水体系中研究了苯酚和苯胺在非极性大网状吸附剂上的吸附平衡。Langmuir方程可以很好地表示所有吸附等温线。苯胺比苯酚在所有吸附剂上的吸收量更大,可能是由于前一种化合物的疏水性更高以及苯胺的芳环的电子密度更高。有趣地观察到,在较高的负载量下,二元体系中苯酚和苯胺的总摄入量明显高于单一体系中的苯酚和苯胺。这种吸收差异通过负载的苯酚和苯胺分子之间的横向酸碱相互作用产生的协同作用得以阐明。此外,如从等摩尔苯酚/苯胺吸附系统所观察到的,发现吸附剂的更大的平均孔径导致更大的协同系数。

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