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Multifunctionalized Ordered Mesoporous Carbon as an Efficient and Stable Solid Acid Catalyst for Biodiesel Preparation

机译:多功能有序介孔碳作为制备生物柴油的高效稳定固体酸催化剂

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摘要

The hydrophobic surface of ordered mesoporous carbon (OMC) via a hard-template route is difficult to sulfonate, which limits its practical applications in solid acid catalysis. Here, we reported an OMC solid add catalyst with large surface area and ordered mesostructure, as well as high acidity. The pretreatment of hard-template prepared OMC with H2O2 brought numerous hydrophilic groups onto the carbon surface, which are favorable for the modification of —SO3H groups by a followed sulfonation treating with sulfuric acid. The results of X-ray diffraction, N2 adsorption— desorption, and transmission electron microscopy demonstrated the preservation of large surface area and ordered mesostructure. Infrared spectra indicated the successful modification of —SO3H groups and in the meantime suggested the existence of hydrophilic groups (—COOH and —OH). The acidity of catalyst estimated by an indirect titration method and the modified amount of —SO3H groups examined by energy dispersive spectra were 2.09 mmbl H~+g~(-1) and 1.86 mmol —SO3H g~(-1), respectively. Such multifunctionalized OMC material with hydrophilic groups (—SO3H, —COOH, —OH) and the hydrophobic framework (polycyclic aromatic carbon) showed evidently improved catalytic activities for biodiesel production. Furthermore, its excellent stability and recycling property were demonstrated by five consecutive cycles.
机译:通过硬模板途径的有序介孔碳(OMC)的疏水表面难以磺化,这限制了其在固体酸催化中的实际应用。在这里,我们报道了一种OMC固体添加催化剂,具有大的表面积和有序的介孔结构以及高酸度。用H2O2预处理硬模板制备的OMC会使碳表面上带有许多亲水基团,这有利于通过随后用硫酸进行磺化处理来修饰-SO3H基团。 X射线衍射,N2吸附-解吸和透射电子显微镜的结果表明,可以保留较大的表面积和有序的介观结构。红外光谱表明成功修饰了-SO3H基团,同时表明存在亲水基团(-COOH和-OH)。通过间接滴定法估计的催化剂的酸度和通过能量色散谱检查的-SO3H基团的改性量分别为2.09mmbl H〜+ g〜(-1)和1.86mmol-SO3H g〜(-1)。具有亲水基团(-SO 3 H,-COOH,-OH)和疏水骨架(多环芳族碳)的这种多官能OMC材料显示出明显改善了生物柴油生产的催化活性。此外,通过五个连续的循环证明了其优异的稳定性和再循环性能。

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