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基于粉煤灰的有序介孔材料的合成及其吸附应用。

Synthesis of Coal-Fly-Ash-Based Ordered Mesoporous Materials and Their Adsorption Application.

作者信息

Tan Miaomiao, Pan Dahai, Chen Shuwei, Yan Xiaoliang, Han Lina, Li Ruifeng, Wang Jiancheng

机构信息

College of Chemical Engineering and Technology, Taiyuan University of Technology, Taiyuan 030024, China.

College of Chemistry, Taiyuan University of Technology, Taiyuan 030024, China.

出版信息

Materials (Basel). 2023 Apr 4;16(7):2868. doi: 10.3390/ma16072868.

Abstract

A feasible approach was developed for the synthesis of ordered mesoporous SBA-15-type materials using coal fly ash (CFA) as raw material. In the proposed approach, CFA was, firstly, activated by subcritical water with the addition of NaOH, which allowed an efficient extraction of silicon species from CFA under strong acidic conditions at near room temperature. Subsequently, in the synthesis system, using silicon extraction solution as the silicon precursor, the introduction of anhydrous ethanol as a co-solvent effectively inhibited the polymerization of silanol species and promoted their collaborative self-assembly with surfactant molecules by enhancing the hydrogen bond interactions. The resultant SBA-15 material had a high purity, high specific surface area (1014 m/g) and pore volume (1.08 cm/g), and a highly ordered mesostructure, and, therefore, exhibited an excellent removal efficiency (90.5%) and adsorption capacity (160.8 mg/g) for methylene blue (MB) from simulated wastewater. Additionally, the generation of surface acid sites from the homogenous incorporation of Al atoms onto the mesoporous walls of SBA-15 combined with the perfect retention of the ordered mesostructure endowed the obtained Al-SBA-15 material with a further boost in the removal performance of MB. The MB removal efficiency can reach ~100%, along with a maximum adsorption capacity of 190.1 mg/g.

摘要

开发了一种以粉煤灰(CFA)为原料合成有序介孔SBA-15型材料的可行方法。在所提出的方法中,首先,在添加NaOH的情况下,用亚临界水对CFA进行活化,这使得在近室温的强酸性条件下能从CFA中高效提取硅物种。随后,在合成体系中,以硅提取液作为硅前驱体,引入无水乙醇作为共溶剂,通过增强氢键相互作用有效地抑制了硅醇物种的聚合,并促进了它们与表面活性剂分子的协同自组装。所得的SBA-15材料具有高纯度、高比表面积(1014 m²/g)和孔体积(1.08 cm³/g)以及高度有序的介孔结构,因此,对模拟废水中的亚甲基蓝(MB)表现出优异的去除效率(90.5%)和吸附容量(160.8 mg/g)。此外,通过将Al原子均匀掺入SBA-15的介孔壁中产生表面酸性位点,同时有序介孔结构得以完美保留,这使得所制备的Al-SBA-15材料对MB的去除性能进一步提高。MB的去除效率可达~100%,最大吸附容量为190.1 mg/g。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/249d/10096384/5de41e2b42ee/materials-16-02868-g001.jpg

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