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Adsorption of Remazol Red 3BS from aqueous solutions using APTES- and cyclodextrin-modified HMS-type mesoporous silicas

机译:使用APTES和环糊精改性的HMS型介孔二氧化硅从水溶液中吸附Remazol Red 3BS

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摘要

The removal of Remazol Red 3BS (C.I. 239) dye by HMS ordered mesoporous silica, aminopropyl-modified HMS (HMS-NH2) and beta-cyclodextrin-modified HMS (HMS-CD) materials was studied in the present work. The modified materials were functionalized in situ by adding the organic modifiers (3-aminopropyltriethoxysilane and a silylated derivative of MCT-beta-CD) in the synthesis mixture and using dodecylamine as the mesopore structure directing agent. The successful incorporation of aminopropyl groups in HMS-NH2 and of cyclodextrin moieties in HMS-CD was verified by means of FT-IR spectroscopy, elemental analysis and N-2 porosimetry. The HMS-CD material exhibited significantly higher adsorption capacity compared to that of the HMS-NH2 material, while the parent HMS mesoporous silica showed negligible adsorption capability. The maximum adsorption capacities obtained (at the optimum pH 2) on the basis of the Langmuir analysis were 0.28 mmol/g for HMS-CD and 0.14 mmol/g for HMS-NH2. It Was shown that the HMS-CD sorbent can be effectively regenerated by the surfactant-enhanced regeneration method using SDS and that can be reused without significant loss of its adsorption capabilities.
机译:在本工作中,研究了用有序介孔二氧化硅,HPS-氨丙基改性的HMS(HMS-NH2)和β-环糊精改性的HMS(HMS-CD)材料去除HMS的Remazol Red 3BS(C.I. 239)染料。通过在合成混合物中添加有机改性剂(3-氨基丙基三乙氧基硅烷和MCT-β-CD的甲硅烷基化衍生物)并使用十二烷基胺作为介孔结构导向剂,就可以对改性材料进行原位官能化。通过FT-IR光谱,元素分析和N-2孔隙率法验证了HMS-NH2中氨基丙基的成功结合以及HMS-CD中环糊精部分的成功结合。与HMS-NH2材料相比,HMS-CD材料表现出明显更高的吸附能力,而母体HMS中孔二氧化硅的吸附能力却可以忽略不计。根据Langmuir分析获得的最大吸附容量(在最佳pH 2下)对于HMS-CD为0.28 mmol / g,对于HMS-NH2为0.14 mmol / g。结果表明,HMS-CD吸附剂可以通过使用SDS的表面活性剂增强再生方法进行有效再生,并且可以重复使用而不会显着降低其吸附能力。

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