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首页> 外文期刊>Adsorption Science & Technology >Effect of Functional Groups and pH on the Affinity and Adsorption Capacity of Activated Carbon: Comparison of Homogeneous and Binary Langmuir Model Parameters
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Effect of Functional Groups and pH on the Affinity and Adsorption Capacity of Activated Carbon: Comparison of Homogeneous and Binary Langmuir Model Parameters

机译:官能团和pH值对活性炭亲和力和吸附能力的影响:均相和二元Langmuir模型参数的比较

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The adsorption of p-nitrophenol (an electrolyte) and nitrobenzene (a non-electrolyte) on activated carbon was carried out at 301 K under controlled pH conditions. The experimental isotherms ere fitted to the homogeneous Langmuir model and the binary Langmuir model. Variation of the model parameters with solution pH was studied. The fitted parameters obtained from the Langmuir equations (homogeneous and binary models) showed that both the maximum amount of solute adsorbed (Q_(max)) and the adsorption affinity of the carbon (K_1) towards the electrolytic adsorbate exhibited the more significant decrease. Under pH conditions below the pK_a value of p-nitrophenol (when the adsorbate existed in a molecular form), both the solubility of the adsorbate and the electron density of its aromatic ring were significant factors affected the extent of London dispersion interactions. At higher solution pH values, electrostatic forces had a significant impact on the extent of adsorption. The influence of pH must be considered in terms of its combined effect on the carbon surface and on the solute molecules. It was confirmed that the uptake of the molecular forms of the aromatic solutes was dependent on the substituents attached to the aromatic ring. The adsorption of p-nitrophenol at higher pH values depended on the concentration of the anionic form of the solute present in the aqueous solution.
机译:对硝基苯酚(一种电解质)和硝基苯(一种非电解质)在活性炭上的吸附是在301 K的受控pH条件下进行的。实验等温线适合均质Langmuir模型和二元Langmuir模型。研究了模型参数随溶液pH的变化。从Langmuir方程(均质模型和二元模型)获得的拟合参数表明,最大的溶质吸附量(Q_(max))和碳(K_1)对电解被吸附物的吸附亲和力均表现出更显着的降低。在低于对硝基苯酚的pK_a值的pH条件下(当被吸附物以分子形式存在时),被吸附物的溶解度及其芳环的电子密度都是影响伦敦分散相互作用程度的重要因素。在较高的溶液pH值下,静电力对吸附程度有重大影响。必须根据pH对碳表面和溶质分子的综合影响来考虑pH的影响。已证实,对芳香族溶质的分子形式的吸收取决于与芳香环相连的取代基。对硝基苯酚在较高pH值下的吸附取决于水溶液中存在的溶质的阴离子形式的浓度。

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