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首页> 外文期刊>Biochemical Engineering Journal >Two-stage batch sorber design using second-order kinetic model for the sorption of metal complex dyes onto pine sawdust
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Two-stage batch sorber design using second-order kinetic model for the sorption of metal complex dyes onto pine sawdust

机译:使用二级动力学模型的两阶段间歇式吸附器设计,用于将金属络合物染料吸附到松木屑上

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摘要

The sorption of metal complex dyes,metal complex blue (MCB) and metal complex yellow (MCY),onto pine sawdust in a batch sorber has been studied.A model has been used for the design of a two-stage batch sorber based on pseudo second-order sorption kinetics.The model has been optimized with respect to contact time in order to minimize total contact time to achieve a fixed percentage of metal complex dyes removal.Three simplified kinetic models including pseudo first- and second-order equation,and intraparticle diffusion equation were selected to follow the sorption process.Kinetic parameters,rate constants,equilibrium sorption capacities and related correlation coefficients,for each kinetic model were calculated and discussed.It was shown that the sorption of metal complex dyes could be described by the pseudo second-order equation.The equilibrium data fit well in the Langmuir isotherm.Results of two-stage batch sorber design studies show that the required times for the 90% efficiencies removal of metal complex dyes are 45.9 and 22.4 min for MCB and MCY,respectively.
机译:研究了间歇式吸附器中金属络合物染料,金属络合物蓝色(MCB)和金属络合物黄色(MCY)在松木屑上的吸附性能。建立了基于模型的两阶段间歇吸附器模型。该模型针对接触时间进行了优化,以最大程度地减少总接触时间,以实现固定百分比的金属络合物染料去除。三种简化的动力学模型,包括伪一级方程和二级方程以及粒子内选择扩散方程来跟踪吸附过程。计算并讨论了每种动力学模型的动力学参数,速率常数,平衡吸附容量和相关相关系数。阶方程。平衡数据非常适合Langmuir等温线。两阶段间歇式吸附器设计研究的结果表明,效率达到90%所需的时间对于MCB和MCY,金属络合物染料的去除分别为45.9和22.4分钟。

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