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Biosorption behavior of azo dye by inactive CMC immobilized Aspergillus fumigatus beads

机译:灭活的CMC固定烟曲霉珠对偶氮染料的生物吸附行为

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摘要

The biosorption equilibria and kinetics of an azo dye (reactive brilliant red K-2BP) were examined in this study using inactive carboxylmethylcellulose (CMC) immobilized Aspergillus fumigatus beads as the biosorbent. It was found that the biosorption capacity was at maximum when dye solution pH was about 2.0, that the sorption was spontaneous and endothermic with insignificant entropy changes, and that the Freundlich isotherm model fitted well to the biosorption equilibrium data. The biosorption rates were found to be consistent with a pseudo-second-order model. An intraparticle diffusion-based Weber-Morris model was applied to evaluate rate-limiting steps of the biosorption processes. The results suggested that the diffusion controlled the overall biosorption process, but the boundary layer diffusion of dye molecules could not be neglected. External mass transfer coefficients (beta S-I) obtained by both Mathews and Weber model and Frusawa and Smith model were consistent. (c) 2007 Published by Elsevier Ltd.
机译:在本研究中,使用固定化的羧甲基纤维素(CMC)固定烟曲霉珠作为生物吸附剂,研究了偶氮染料(活性艳红K-2BP)的生物吸附平衡和动力学。已发现,当染料溶液的pH值约为2.0时,生物吸附能力最大,吸附是自发的且吸热的,熵的变化很小,并且Freundlich等温模型非常适合生物吸附平衡数据。发现生物吸附速率与伪二级模型一致。基于粒子内扩散的韦伯-莫里斯模型被用于评估生物吸附过程的限速步骤。结果表明,扩散控制了整个生物吸附过程,但不能忽略染料分子的边界层扩散。 Mathews和Weber模型以及Frusawa和Smith模型获得的外部传质系数(βS-I)是一致的。 (c)2007年由Elsevier Ltd.发布。

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