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糖蔗渣制备的活性炭对瑞佐尔黑 B 的吸附动力学。

Kinetics of Remazol Black B adsorption onto carbon prepared from sugar beet pulp.

机构信息

Department of Environmental Engineering, Firat University, 23100 Elazig, Turkey.

出版信息

Environ Sci Pollut Res Int. 2013 Apr;20(4):2472-83. doi: 10.1007/s11356-012-1133-4. Epub 2012 Sep 4.

Abstract

Dried sugar beet pulp, an agricultural solid waste, was used for the production of carbon. Carbonised beet pulp was tested in the adsorption of Remazol Black B dye, and adsorption studies with real textile wastewater were also performed. Batch kinetic studies showed that an equilibrium time of 180 min was needed for the adsorption. The maximum dye adsorption capacity was obtained as 80.0 mg g(-1) at the temperature of 25 °C at pH = 1.0. The Langmuir and Freundlich adsorption models were used for the mathematical description of the adsorption equilibrium, and it was reported that experimental data fitted very well to the Langmuir model. Mass transfer and kinetic models were applied to the experimental data to examine the mechanisms of adsorption and potential rate-controlling steps. It was found that both external mass transfer and intraparticle diffusion played an important role in the adsorption mechanisms of dye, and adsorption kinetics followed the pseudo-second-order type kinetic model. The thermodynamic analysis indicated that the sorption process was exothermic and spontaneous in nature.

摘要

干糖甜菜浆,一种农业固体废物,被用于生产碳。碳化甜菜浆被用于吸附 Remazol Black B 染料的测试,并且还进行了实际纺织废水的吸附研究。批量动力学研究表明,吸附需要 180 分钟的平衡时间。在 25°C 和 pH = 1.0 的温度下,最大染料吸附容量为 80.0mg g(-1)。Langmuir 和 Freundlich 吸附模型用于吸附平衡的数学描述,据报道,实验数据非常符合 Langmuir 模型。传质和动力学模型被应用于实验数据,以研究吸附的机制和潜在的速率控制步骤。结果表明,在外扩散和内扩散都在吸附染料的机制中起重要作用,吸附动力学遵循拟二级动力学模型。热力学分析表明,吸附过程是放热和自发的。

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