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Electrochemically enhanced adsorption of aniline on activated carbon fibers

机译:电化学增强苯胺在活性炭纤维上的吸附

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For adsorptive separation processes,the adsorption rate and capacity are two important factors affecting the costs.This study describes the anodic polarization of activated carbon fibers (ACFs),which can enhance the adsorption rate and capacity of aniline.The electrosorption kinetics and the affecting factors (bias potential,electrolyte,and pH) of isotherms for aniline on ACFs were investigated.The adsorption/electrosorption of aniline on ACFs follow pseudo-first-order adsorption kinetics,and the adsorption rate improves with increasing bias potential.The electrosorption isotherms,which exhibit a variety of responses depending on bias potential,electrolyte and pH,follow the two classical models of Langmuir and Freundlich.With electrosorption of aniline from aqueous solution,a two-fold enhancement of adsorption capacity is achievable.The initial and saturated ACFs were characterized using scanning electron micrograph (SEM) and Fourier transform infrared spectroscopy (FT-IR).The SEM micrographs show that the surface of ACFs is not oxidized,which is also verified by cyclic voltammetry results.The FT-IR spectroscopy suggests that the interaction between aniline and ACFs is main weak physisorption instead of chemisorption.These experimental results suggest that the electrochemical polarization of ACFs can effectively improve the adsorption rate and capacity of aniline,which may be due to the enhanced affinity between aniline and ACFs instead of the oxidation on the surface of ACFs or in the solution.
机译:对于吸附分离过程,吸附速率和容量是影响成本的两个重要因素。本研究描述了活性炭纤维(ACFs)的阳极极化作用,它可以提高苯胺的吸附速率和容量。电吸附动力学及影响因素研究了ACF上苯胺的等温线的(势,电解质和pH)。ACF上苯胺的吸附/电吸附遵循拟一级反应动力学,吸附速率随偏置电位的增加而提高。根据Langmuir和Freundlich的两个经典模型,根据偏电势,电解质和pH值表现出各种响应。通过从水溶液中电吸附苯胺,可实现两倍的吸附能力增强。对初始和饱和ACF进行了表征使用扫描电子显微镜(SEM)和傅立叶变换红外光谱(FT-IR)。图表明ACFs的表面没有被氧化,这也得到了循环伏安法的证实。FT-IR光谱表明苯胺和ACFs的相互作用是主要的弱物理吸附,而不是化学吸附。这些实验结果表明,ACFs的电化学极化ACF可以有效地提高苯胺的吸附速率和容量,这可能是由于苯胺与ACF之间的亲和力增强,而不是由于ACF表面或溶液中的氧化所致。

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