Synthesis of reusable NH2-MIL-125(Ti)@polymer monolith as efficient adsorbents for dyes wastewater remediation

吸附 甲基橙 废水 朗缪尔吸附模型 化学工程 材料科学 聚合物 整体 介孔材料 甲基蓝 亚甲蓝 核化学 朗缪尔 光催化 化学 有机化学 废物管理 复合材料 催化作用 工程类
作者
Peng Yao,Yang Liu,Tang Xue,Shuxiang Lü,Zhen Li,Yue Yao
出处
期刊:Green chemical engineering [Elsevier BV]
卷期号:4 (4): 439-447 被引量:16
标识
DOI:10.1016/j.gce.2022.06.004
摘要

NH2-MIL-125(Ti) is a Ti-MOFs with high adsorption properties and is therefore widely used for wastewater purification. However, the powdered MOF material suffers from the disadvantages of being difficult to separate and being potentially wasted due to easy agglomeration, which limits its application in practical applications. Here, a mesoporous Ti-MOF/polymer (PEG, PVA, and PAM) monolithic material was prepared by freeze casting in liquid nitrogen (−196 °C) as an adsorbent for wastewater remediation. The composites could be easily picked up with tweezers and used for recovery tests. Characterization results such as XRD, BET, FT-IR, and SEM proved the successful synthesis of Ti-MOF/polymer. Adsorption tests using 100 mg/L methylene blue (MB) simulated wastewater showed that the Ti-MOF/PEG monolithic material had the best adsorption capacity. The order of adsorption was [email protected] (747.4 mg/g) > [email protected] (687.4 mg/g) > [email protected] (633.7 mg/g) > Ti-MOF (571.4 mg/g). The effects of polymer dosage, different pollutants (methylene blue, methyl orange, indigo, actual textile wastewater), pH, anions, and cations on the adsorption effect of Ti-MOF/polymer were also investigated. It was demonstrated that all the above pollutants were well adsorbed by this Ti-MOF/polymer in the pH range 3–9. The adsorption isotherms and kinetic data are fully consistent with the Langmuir and pseudo-secondary models. This suggests that the adsorption between the pollutant and the adsorbent is a chemical interaction. Thermodynamic studies indicate that the adsorption process is exothermic and spontaneous. This work provides the potential methods to fabricate Ti-MOF/polymer monolith to avoid the pollution from powdery adsorbents that could be practical applications.
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