Combined molecular dynamics simulations and experimental studies of the removal of cationic dyes on the eco-friendly adsorbent of activated carbon decorated montmorillonite Mt@AC

吸附 结晶紫 蒙脱石 阳离子聚合 纳米复合材料 亚甲蓝 朗缪尔吸附模型 化学 活性炭 化学工程 分子动力学 材料科学 有机化学 纳米技术 计算化学 催化作用 病理 工程类 医学 光催化
作者
Hassan Ouachtak,Anouar El Guerdaoui,Rachid El Haouti,Redouane Haounati,Hamza Ighnih,Yahya Toubi,Fadi Alakhras,Rabia Rehman,Naima Hafid,Abdelaziz Aït Addi,Mohamed Labd Taha
出处
期刊:RSC Advances [Royal Society of Chemistry]
卷期号:13 (8): 5027-5044 被引量:74
标识
DOI:10.1039/d2ra08059a
摘要

In recent years, the combination of experimental and theoretical study to explain adsorbate/adsorbent interactions has attracted the attention of researchers. In this context, this work aims to study the adsorption of two cationic dyes, namely methylene blue (MB) and crystal violet (CV), on a green adsorbent Montmorillonite@activated carbon (Mt@AC) composite and to explain the adsorption behavior of each dye by the molecular dynamics (MD) simulation method. The eco-friendly nanocomposite Mt@AC is synthesized and characterized by the analysis methods: XRD, FTIR, BET, TGA/DTA, SEM-EDS, EDS-mapping and zeta potential. The experimental results of adsorption equilibrium show that the adsorption of the two dyes is well suited to the Langmuir adsorption model. The maximum adsorption capacity of the two dyes reaches 801.7 mg g-1 for methylene blue and 1110.8 mg g-1 for crystal violet. The experimental kinetics data fit well with a pseudo-first order kinetic model for the two dyes with coefficient of determination R2 close to unity, non-linear chi-square χ2 close to zero and lower Root Mean Square Error RMSE (R2 → 1 and χ2 → 0, RMSE lower). Molecular dynamic simulations are run to gain insights on the adsorption process. According to the RDF analysis and interaction energy calculations, the obtained results reveal a better affinity of the CV molecule with both the AC sheet and montmorillonite framework as compared with MB. This finding suggests that CV is adsorbed to a larger extent onto the nanocomposite material which is in good agreement with the adsorption isothermal experiment observations.
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