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External mass transfer and hindered diffusion of organic compounds in the adsorption on activated carbon cloth

机译:活性炭布吸附过程中有机物的外部传质和阻碍扩散

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摘要

The overall rate of adsorption of organic compounds on activated carbon cloth (ACC) was interpreted with a diffusional model which takes into account external mass transfer and intrafiber diffusion. It was assumed that the intrafiber diffusion was solely due to pore volume diffusion (Fick diffusion). The effect of molecular size of the organic compounds on the overall rate of adsorption was studied using pyridine (0.49 nm), phenol (0.53 nm), naphthalenesulfonic acid (NAS) (0.85 nm), pentachlorophenol (PCP) (0.87 nm) and methylene blue (MB) (1.03 nm). The experimental concentration decay data were obtained in a differential column batch adsorber. The overall adsorption rate of pyridine and phenol was controlled by the external mass transfer whereas the intrafiber diffusion was the controlling mechanism in the adsorption rate of NSA, PCP and MB. Additionally, the intrafiber diffusion of NSA, PCP and MB was substantially reduced by hindered diffusion, which was due to steric exclusion, wall drag effects and obstruction caused by the molecules adsorbed on the pore walls. The controlling mechanism in the adsorption rate on ACC is a function of the molecular size of the organic compound.
机译:用扩散模型解释了有机化合物在活性炭布(ACC)上的总吸附速率,该模型考虑了外部传质和纤维内扩散。假定纤维内扩散仅是由于孔体积扩散(Fick扩散)引起的。使用吡啶(0.49 nm),苯酚(0.53 nm),萘磺酸(NAS)(0.85 nm),五氯苯酚(PCP)(0.87 nm)和亚甲基研究了有机化合物的分子大小对总吸附速率的影响蓝色(MB)(1.03 nm)。在差分塔间歇式吸附器中获得了实验浓度衰减数据。吡啶和苯酚的总吸附速率由外部传质控制,而纤维内扩散是NSA,PCP和MB吸附速率的控制机制。另外,由于位阻,壁阻力效应和吸附在孔壁上的分子引起的阻塞,阻碍了扩散,从而大大降低了NSA,PCP和MB的纤维内扩散。 ACC吸附速率的控制机制是有机化合物分子大小的函数。

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