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A novel kinetic model for batch aqueous-solution/porous-solid adsorption systems

机译:分批水溶液/多孔固体吸附系统的新型动力学模型

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In this work, a novel kinetic model is introduced to represent the batch adsorption for aqueous-solution/porous-solid systems. The model proposes that the rate of adsorption is controlled by three parameters: solute concentration, n-powered time, and what is called varying-resistance against adsorption. Applicability of the model was examined by investigating the performance of the model considering the batch adsorption of methylene blue from aqueous solution onto three different adsorbents: hybrid resin-gel (MFTAT), commercial exhausted black tea, and dried pea husk. The effect of initial concentration was studied to explore model behavior. According to results and determined data, the DB-model successfully estimated the adsorption capacities and the rate constants. In addition, the DB-model managed to recognize the relative contributions of diffusion in the adsorption processes.
机译:在这项工作中,引入了新的动力学模型来代表水溶液/多孔固体系统的间歇吸附。该模型提出,吸附速率受三个参数控制:溶质浓度,n动力时间和所谓的抗吸附变化电阻。考虑到水溶液中亚甲基蓝在三种不同吸附剂上的批量吸附,研究了模型的性能,从而检验了模型的适用性:混合树脂-凝胶(MFTAT),商业用尽的​​红茶和干豌豆壳。研究了初始浓度的影响以探索模型行为。根据结果​​和确定的数据,DB模型成功地估计了吸附容量和速率常数。另外,DB模型设法识别出在吸附过程中扩散的相对贡献。

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