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首页> 外文期刊>Journal of Colloid and Interface Science >Electrochemically enhanced adsorption of phenol on activated carbon fibers in basic aqueous solution
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Electrochemically enhanced adsorption of phenol on activated carbon fibers in basic aqueous solution

机译:碱性水溶液中活性炭纤维上苯酚的电化学增强吸附

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摘要

Electrosorption isotherms and thermodynamics of phenol on activated carbon fibers (ACFs) in basic solution, as well as the factors (bias potential, initial concentration, and electrolyte) affecting adsorption/electrosorption kinetics, were investigated. The kinetics, which followed the Lagergren adsorption rate law, exhibited a variety of responses depending on bias potential, initial concentration, and electrolyte. The electrosorption isotherms were in agreement with the classical models of Langmuir and Freundlich, but the former gave more satisfactory correlation coefficients. With electrosorption at a bias potential of 700 mV from the basic solution, a nearly 10-fold enhancement of maximum adsorption capacity was achievable. The electrosorption free energy (Delta G(ads)), enthalpy (Delta H-ads), and entropy (Delta S-ads) of phenol on the ACFs were calculated from adsorption isotherms at different temperatures. The results indicated that electrosorption of phenol in basic solution was spontaneous and exothermic. Furthermore, it was assessed that electrosorption occurred by dipole-dipole interaction with Delta H-ads of -20.14 kJ mol(-1) besides suppositional electrostatic interaction. (c) 2006 Elsevier Inc. All rights reserved.
机译:研究了碱性溶液中苯酚在活性炭纤维(ACF)上的电吸附等温线和热力学,以及影响吸附/电吸附动力学的因素(偏电势,初始浓度和电解质)。遵循Lagergren吸附速率定律的动力学表现出各种响应,具体取决于偏压,初始浓度和电解质。电吸附等温线与Langmuir和Freundlich的经典模型一致,但前者给出了更令人满意的相关系数。用碱性溶液在700 mV的偏压下进行电吸附,可将最大吸附容量提高近10倍。根据不同温度下的吸附等温线,计算了ACF上苯酚的电吸附自由能(ΔG(ads)),焓(ΔH-ads)和熵(ΔS-ads)。结果表明,碱性溶液中苯酚的电吸附是自发放热的。此外,据估计,电吸附是通过偶极子与偶极子相互作用与-20.14 kJ mol(-1)的Delta H-ads发生的,除了假定的静电相互作用。 (c)2006 Elsevier Inc.保留所有权利。

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