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Impact of activation on properties of carbon-based solid acid catalysts for the hydrothermal conversion of xylose and hemicelluloses

机译:激活对碳基固体酸催化剂性能的影响 - 木糖和半纤维素水热转化

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Activation plays an important role in improving the pore structure of the carbon materials preparation. For carbon-based solid catalysts, activation could provide the high specific surface area and porosity. In this work, non-activated, KOH-activated, ZnCl2-activated treatments were comparatively discussed to prepare carbon-based solid acid catalysts for furfural production from xylose and hemicelluloses. These prepared catalysts were characterized by SEM, FT-IR, elemental analysis, Raman, N-2 adsorption-desorption and Boehm titration. The results showed that the chemical activated treatment could significantly improve the specific surface area of carbon-based solid catalysts, but also had an important influence on the distribution of surface functional groups especially for decreasing of the -SO3H density and the enhancement of the phenolic -OH and -COOH density. For the highest -SO3H density of non-activated carbon-based catalyst, it displayed higher catalytic activity in the conversion of xylose to furfural than other catalysts. Meanwhile, using non-activated carbon-based catalyst in the aqueous solution, the maximum furfural yield of 50% was obtained from hemicelluloses at 200 degrees C for 2.5 h, the maximum xylose yield of 55% was achieved at 200 degrees C for 1.5 h. While KOH-activated carbon-based catalyst exhibited the excellent catalytic performance to produce xylooligosaccharide with the highest yield of 62% at 180 degrees C for 1.5 h.
机译:活化在改善碳材料制剂的孔隙结构方面发挥着重要作用。对于基于碳的固体催化剂,活化可以提供高比表面积和孔隙率。在这项工作中,相对探讨了非活化,KOH活化的ZnCl2活化处理,以制备碳基固体酸催化剂,用于从木糖和半纤维素中制备用于糠醛的糠醛产生。通过SEM,FT-IR,元素分析,拉曼,N-2吸附 - 解吸和Boehm滴定来表征这些制备的催化剂。结果表明,化学活化的处理可以显着改善碳基固体催化剂的比表面积,而且对表面官能团的分布也具有重要影响,特别是用于降低-SO3H密度和酚醛的增强 - OH和-COOH密度。对于非活性炭基催化剂的最高-SO3H密度,它在木糖转化为糠醛的催化活性比其他催化剂的催化活性更高。同时,在水溶液中使用非活化的碳催化剂,在200℃下从半纤维素获得50%的最大糠醛产率2.5小时,在200℃下实现55%的最大木糖产率为1.5小时。虽然KOH活化的碳基催化剂表现出优异的催化性能,以在180℃下以最高产率为62%的高产率为1.5小时生产出优异的催化性能。

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