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Hydrolysis of Cellulose by a Mesoporous Carbon-Fe2(SO4)3/γ-Fe2O3 Nanoparticle-Based Solid Acid Catalyst

机译:介孔碳-Fe2(SO4)3 /γ-Fe2O3纳米粒子固体酸催化剂水解纤维素

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Carbon-based solid acid catalysts have shown significant potential in a wide range of applications, and they have been successfully synthesized using simple processes. Magnetically separable mesoporous carbon composites also have enormous potential, especially in separation and adsorption technology. However, existing techniques have been unable to produce a magnetically separable mesoporous solid acid catalyst because no suitable precursors have been identified. Herein we describe a magnetically separable, mesoporous solid acid catalyst synthesized from a newly developed mesoporous carbon-γ-Fe2O3 nanoparticle composite. This material exhibits an equivalent acid density and catalytic activity in the hydrolysis of microcrystalline cellulose, to that of the cellulose-derived conventional catalyst. Since it is magnetically separable, this material can be readily recovered and reused, potentially reducing the environmental impact of industrial processes to which it is applied.
机译:碳基固体酸催化剂在广泛的应用中显示出显着的潜力,并且已经使用简单的方法成功地合成。磁性可分离的介孔碳复合材料也具有巨大的潜力,特别是在分离和吸附技术中。然而,现有技术已经不能产生磁性可分离的介孔固体酸催化剂,因为已经鉴定出没有合适的前体。在此,我们描述了由新开发的介孔碳-γ-Fe 2 O 3纳米颗粒复合材料合成的磁性可分离的介孔固体酸催化剂。该材料在微晶纤维素水解中表现出相同的酸密度和催化活性,以纤维素衍生的常规催化剂的水解。由于它是磁性可分离的,因此可以容易地回收和重复使用该材料,可能降低了应用其应用的工业过程的环境影响。

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