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Utilizing dual-template surfactant to synthesize mesoporous silica for enhancing CO_2 capture

机译:利用双模板表面活性剂合成介孔二氧化硅,以增强CO_2的捕获

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Dual-template surfactants were utilized to synthesize mesoporous silica in order to alter pore structure, and improve the adsorption of CO_2 for carbon capture and sequestration. The results indicated that P123 combined with F68 provides the best combination of dual-template surfactants for optimal adsorption of CO_2. This composition of synthesized mesoporous silica showed CO_2 adsorption capability superior to the materials, which were synthesized via single P123 and the other dual-template surfactant compositions. In addition, the weight ratio of P123 combined with F68 also influenced the synthesized mesoporous silica on CO_2 adsorption, and the optimal ratio was found to be P123:F68=1:3. The pore volume, micro surface area, and micro pore volume in the mesoporous silica, which was synthesized via dual-template surfactants, were analyzed as the conspicuous structure factors responsible for enhancing CO_2 adsorption capacity.
机译:利用双模板表面活性剂合成中孔二氧化硅,以改变孔结构,并改善CO_2对碳捕获和封存的吸附。结果表明,P123与F68组合可提供双模板表面活性剂的最佳组合,以实现CO_2的最佳吸附。合成的介孔二氧化硅的这种组合物显示出优于通过单一P123和其他双模板表面活性剂合成的材料的CO_2吸附能力。此外,P123与F68的重量比也影响了合成介孔二氧化硅对CO_2的吸附,最佳比例为P123:F68 = 1:3。分析了通过双模板表面活性剂合成的介孔二氧化硅的孔体积,微表面积和微孔体积,这是引起CO_2吸附能力增强的重要结构因素。

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