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首页> 外文期刊>Journal of Hazardous Materials >Modeling of adsorption isotherms of phenol and chlorophenols onto granular activated carbon Part I. Two-parameter models and equations allowing determination of thermodynamic parameters
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Modeling of adsorption isotherms of phenol and chlorophenols onto granular activated carbon Part I. Two-parameter models and equations allowing determination of thermodynamic parameters

机译:颗粒状活性炭上苯酚和氯酚的吸附等温线建模第一部分。两参数模型和方程式可确定热力学参数

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The adsorption equilibrium isotherms of five phenolic compounds from aqueous solutions onto granular activated carbon (GAC) were studied and modeled. Phenol (Ph), 2-chlorophenol (2-CP), 4-chlorophenol (4-CP), 2,4-dichlorophenol (DCP), and 2,4,6-trichlorophenol (TCP) were chosen for the adsorption tests. To predict the adsorption isotherms and to determine the characteristic parameters for process design, seven isotherm models: Langmuir (five linear forms), Freundlich, Elovich, Temkin, Fowler-Guggenheim, Kiselev, and Hill-de Boer models were applied to experimental data. The results reveal that the adsorption isotherm models fitted the data in the order: Fowler-Guggenheim > Hill-de Boer > Temkin > Freundlich > Kiselev > Langmuir isotherms. Adsorption isotherms modeling shows that the interaction of phenolic compounds with activated carbon surface is localized monolayer adsorption, that is adsorbed molecules are adsorbed at definite, localized sites. Each site can accommodate only one molecule. The interaction among adsorbed molecules is repulsive and there is no association between them, adsorption is carried out on energetically different sites and is an exothermic process. Uptake of phenols increases in the order Ph< 2-CP < 4-CP < DCP < TCP, which correlates well with respective increase in molecular weight, cross-sectional area, and hydrophobicity and decrease in solubility and pK_a. Additionally, for the four tested chlorophenols, it seems that the magnitude of adsorption is directly proportional to their degree of chlorination.
机译:研究和模拟了五种酚类化合物从水溶液到颗粒状活性炭(GAC)上的吸附平衡等温线。吸附试验选择了苯酚(Ph),2-氯苯酚(2-CP),4-氯苯酚(4-CP),2,4-二氯苯酚(DCP)和2,4,6-三氯苯酚(TCP)。为了预测吸附等温线并确定工艺设计的特征参数,将七个等温线模型:Langmuir(五个线性形式),Freundlich,Elovich,Temkin,Fowler-Guggenheim,Kiselev和Hill-de Boer模型应用于实验数据。结果表明,吸附等温线模型按以下顺序拟合数据:Fowler-Guggenheim> Hill-de Boer> Temkin> Freundlich> Kiselev> Langmuir等温线。吸附等温线模型表明,酚类化合物与活性炭表面的相互作用是局部单层吸附,即被吸附的分子被吸附在确定的局部位置。每个位点只能容纳一个分子。被吸附分子之间的相互作用是排斥性的,它们之间没有关联,吸附在能量上不同的位置进行,是一个放热过程。苯酚的吸收以Ph <2-CP <4-CP

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