Adsorption kinetics of Remazol Brilliant Blue R dye from liquid effluents by bovine bone charcoal

L. Lima, Antônio Vilas Boas Quintiliano Júnior, André Henrique Zeferino, A. P. Duarte
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引用次数: 1

Abstract

The textile industry stands out for generating effluents with high levels of dyes, which have a high polluting potential. Among these dyes, the Remazol Brilliant Blue R azo dye, is one of the most used for dyeing wool and cotton, being released in excess on these effluents. Intended for the carcinogenic and mutagenic potential of this type of dyes, several researches are developed in search of economical technologies for their removal. An adsorption is a viable technique, since several materials can be used for this purpose. Bovine bone activated carbon, as it is a residue from the livestock industry that is easily obtained, has been studied as an adsorbent material in the removal of dyes. Therefore, the objective of this project was to evaluate the performance of the adsorption kinetics of the Remazol Brilliant Blue R dye from the effluents using bovine bone activated carbon. The experiments were carried out in batches, with solutions concentrations of 20, 50 and 100 ppm, and the mathematical models of pseudo-first order, pseudo-second order and intraparticle diffusion were adjusted to the experimental data. For concentrations of 20 and 50 ppm, the model that best fits was the pseudo-first order, while for the concentration of 100 ppm the pseudo-second order model obtained the best result with R2 of 0.992. The intraparticle diffusion model showed that the higher the concentration of the dye in solution, the greater the thickness of the boundary layer and that the intraparticle diffusion does not control the adsorption process in any of the study criteria.
牛骨炭对雷马唑亮蓝R染料在废水中的吸附动力学
纺织工业因产生含有高浓度染料的废水而引人注目,这些染料具有高污染潜力。在这些染料中,Remazol亮蓝R偶氮染料是最常用于羊毛和棉花染色的染料之一,在这些废水中被过量释放。鉴于这类染料具有致癌性和诱变性,人们开展了一些研究,以寻找经济的技术来去除它们。吸附是一种可行的技术,因为有几种材料可用于此目的。牛骨活性炭作为一种易于获得的畜牧业残留物,已被研究作为一种吸附材料去除染料。因此,本项目的目的是评估牛骨活性炭对雷马唑亮蓝R染料的吸附动力学性能。实验以20、50和100 ppm的溶液浓度分批进行,并根据实验数据对拟一阶、拟二阶和颗粒内扩散的数学模型进行了调整。当浓度为20和50 ppm时,拟一阶模型拟合最佳,当浓度为100 ppm时,拟二阶模型拟合最佳,R2为0.992。颗粒内扩散模型表明,溶液中染料浓度越高,边界层厚度越大,颗粒内扩散在任何研究准则中都不控制吸附过程。
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