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首页> 外文期刊>Journal of Molecular Liquids >Metal-organic and Zeolitic imidazole frameworks as cationic dye adsorbents: physicochemical optimizations by parametric modeling and kinetic studies
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Metal-organic and Zeolitic imidazole frameworks as cationic dye adsorbents: physicochemical optimizations by parametric modeling and kinetic studies

机译:金属有机和沸石咪唑框架作为阳离子染料吸附剂:参数化学型和动力学研究的物理化学优化

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Adsorption of methylene blue (MB) was explored using different metal-organic frameworks (MOFs) and zeolitic imidazole framework (ZIFs) to optimize the physicochemical parameters by parametric modeling and to study the kinetics and equilibrium of the adsorption process. The frameworks were synthesized using three different metals (Fe, Zn, Co) and two linkers (2-Methylimidazole, terephthalic acid). Based on screening analysis, ZIF-8 (Zn) with a cubic morphology exhibited the highest adsorption capacity of 43.1 mg g(-1) toward MB. The adsorption capacities of the rest studied MOFs were 25.0 mg g(-1) for MIL-53 (Fe), 22.7 mg g(-1) for MIL-88B (Fe), 18.4 mg g(-1) for Ni-MOF, 16.8 mg g(-1) for ZIF-67, and 15.5 mg g(-1) for MIL-101 (Fe). The effect of contact time, initial solution pH, the dosage of the utilized framework, and MB initial concentration and their bimodal interactions on dye removal were elucidated by modeling the process according to Box-Behnken design (BBD). The model explained an incremental MB removal by pH, contact time, and adsorbent mass and inversely by dye concentration. Parametric optimization of the model revealed that the highest dye removal was achieved at a contact time of 53.4 min, MOF dose of 0.68 g L-1, pH=8.5, and an MB initial concentration of 25mg L-1. Nonlinear Khan isotherm and Pseudo-first-order and Pseudo-second-order kinetic models described better MB removal. These findings revealed that the adsorption could be described as a monolayer phenomenon under low dye concentrations values, e.g., 25 mg L-1, while it switches to multilayer at higher MB concentrations around 100 mg L-1. (C) 2021 Elsevier B.V. All rights reserved.
机译:采用不同的金属有机骨架(MOF)和沸石咪唑骨架(ZIFs)对亚甲基蓝(MB)的吸附进行了研究,通过参数模拟优化了吸附过程的物理化学参数,并对吸附过程的动力学和平衡进行了研究。这些骨架是用三种不同的金属(铁、锌、钴)和两种连接物(2-甲基咪唑、对苯二甲酸)合成的。根据筛选分析,立方形态的ZIF-8(Zn)对MB的吸附容量最高,为43.1 mg g(-1)。其余研究的MOF对MIL-53(Fe)的吸附容量为25.0 mg g(-1),对MIL-88B(Fe)的吸附容量为22.7 mg g(-1),对Ni-MOF的吸附容量为18.4 mg g(-1),对ZIF-67的吸附容量为16.8 mg g(-1),对MIL-101(Fe)的吸附容量为15.5 mg g(-1)。通过根据Box-Behnken设计(BBD)对染料去除过程进行建模,阐明了接触时间、初始溶液pH、所用骨架的剂量、MB初始浓度及其双峰相互作用对染料去除的影响。该模型解释了pH值、接触时间和吸附剂质量对MB去除的增量,与染料浓度成反比。模型的参数优化显示,在接触时间为53.4分钟、MOF剂量为0.68 g L-1、pH=8.5、MB初始浓度为25 mg L-1时,染料去除率最高。非线性Khan等温线和伪一级和伪二级动力学模型描述了更好的MB去除。这些发现表明,在较低的染料浓度值(例如25 mg L-1)下,吸附可被描述为单层现象,而在较高的MB浓度(约100 mg L-1)下,吸附可转换为多层。(c)2021爱思唯尔B.V.保留所有权利。

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