磁性Fe-SBA-15介孔二氧化硅分子筛的制备、表征及应用。

Huayu Huang, Yongsheng Ji, Zhenfeng Qiao, Chuande Zhao, Jianguo He, Haixia Zhang
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引用次数: 26

摘要

制备了Fe-SBA-15磁性介孔二氧化硅分子筛,对其进行了表征,并将其用于磁分离。湿浸渍、干燥和煅烧步骤导致中孔内含有铁。将氧化铁与氢还原为金属形态,得到磁性Fe-SBA-15。傅里叶变换红外光谱证实了从氧化物到金属形态的制备过程。通过Mössbauer谱图证实了磁性材料的结构。粉末x射线衍射数据表明,Fe-SBA-15的结构保留了主体SBA-15的结构。brunauer - emmet - teller分析显示,表面面积和孔径减小,表明Fe-SBA-15涂层内表面。扫描电镜证实了改性SBA-15颗粒的尺寸减小。扫描电镜发现,改性后的SBA-15颗粒尺寸减小。透射电子显微镜也证实,改性SBA-15保留了母体SBA-15二氧化硅的结构。Fe-SBA-15具有较强的磁性能,磁化值为8.8 emu g(-1)。采用原子吸附光谱法测定了Fe-SBA-15中铁的含量。Fe-SBA-15成功地用于水中3种芳香族化合物的磁分离。我们的结果表明Fe-SBA-15磁性材料广泛适用于各种化合物的快速有效分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Preparation, Characterization, and Application of Magnetic Fe-SBA-15 Mesoporous Silica Molecular Sieves.

Preparation, Characterization, and Application of Magnetic Fe-SBA-15 Mesoporous Silica Molecular Sieves.

Preparation, Characterization, and Application of Magnetic Fe-SBA-15 Mesoporous Silica Molecular Sieves.

Preparation, Characterization, and Application of Magnetic Fe-SBA-15 Mesoporous Silica Molecular Sieves.

Magnetic Fe-SBA-15 mesoporous silica molecular sieves were prepared, characterized, and used for magnetic separation. Wet impregnation, drying, and calcination steps led to iron inclusion within the mesopores. Iron oxide was reduced to the metal form with hydrogen, and the magnetic Fe-SBA-15 was obtained. Fourier-transform infrared spectroscopy confirmed the preparation process from the oxide to metal forms. The structure of magnetic materials was confirmed by Mössbauer spectra. Powder X-ray diffraction data indicated that the structure of Fe-SBA-15 retained the host SBA-15 structure. Brunauer-Emmett-Teller analysis revealed a decrease in surface area and pore size, indicating Fe-SBA-15 coating on the inner surfaces. Scanning electron micrographs confirmed the decrease in size for modified SBA-15 particles. From scanning electron micrographs, it was found that the size of the modified SBA-15 particles decreased. Transmission electron micrographs also confirmed that modified SBA-15 retained the structure of the parent SBA-15 silica. Fe-SBA-15 exhibited strong magnetic properties, with a magnetization value of 8.8 emu g(-1). The iron content in Fe-SBA-15 was determined by atom adsorption spectroscopy. Fe-SBA-15 was successfully used for the magnetic separation of three aromatic compounds in water. Our results suggest wide applicability of Fe-SBA-15 magnetic materials for the rapid and efficient separation of various compounds.

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