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Melamine/MIL-101(Fe)-derived magnetic carbon nanotube-decorated nitrogen-doped carbon materials as sorbent for rapid removal of organic dyes from environmental water sample

吸附 碳纳米管 材料科学 三聚氰胺 朗缪尔吸附模型 罗丹明B 甲基橙 化学工程 吸附剂 碳化 化学 有机化学 纳米技术 复合材料 催化作用 工程类 光催化
作者
Peige Qin,Dengke Chen,Mengyuan Li,Dan Li,Yanmei Gao,Shiping Zhu,Mengyao Mu,Minghua Lu
出处
期刊:Journal of Molecular Liquids [Elsevier BV]
卷期号:359: 119231-119231 被引量:30
标识
DOI:10.1016/j.molliq.2022.119231
摘要

In this work, a magnetic carbon nanotube-decorated nitrogen-doped carbon (CNT/[email protected]) composite was successfully prepared by carbonization of melamine and MIL-101(Fe) under inert atmosphere at 900 °C. In order to study the removal performance of adsorbents for the organic dyes, different mass ratios melamine/MIL-101-derived CNT/[email protected] were prepared. The results show that the as-prepared CNT/[email protected] material delivers a high performance for removal of organic dyes (Rhodamine B, malachite green, and methyl orange) with mass ratio of MIL-101(Fe) and melamine at 1:3. The experimental parameters including amount of adsorbent, pH, contact time, and initial concentration of organic dyes were investigated. Under the optimized conditions, the maximum adsorption amount of CNT/[email protected] for three dyes are in the range of 182.1–196.5 mg/g. The adsorption process of three dyes on the CNT/[email protected] material was consistent with Langmuir isotherm model and pseudo-second-order model. The results indicate that the adsorption may be the monolayer chemisorption process. The adsorption mechanism of organic dyes on the adsorbent material is may be due to the electrostatic interactions and π-π stacking interaction. Finally, the CNT/[email protected] material can be reused 5 times without a significant reduction in the removal rate. The results indicate that the CNT/[email protected] material is a promising sorbent for removing organic dyes. This work provides a new strategy to prepare CNT/[email protected] carbon material with excellent adsorption properties from nitrogen-free raw MOF materials by calcining a mixture of MOF and melamine at high temperature.
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