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Characterization of Chemically Activated Carbons Prepared from Miscanthus and Switchgrass Biomass

机译:从芒草和柳枝Bio生物质制备的化学活性炭的表征

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摘要

Lignocellulosic biomass, including that of energy crops, can be an alternative source to produce activated carbons (ACs). Miscanthus and switchgrass straw were used to produce ACs in a two-step process. Crushed plant material was carbonized at 600 °C and then obtained carbon was activated using NaOH or KOH at 750 °C. The content of surface oxygen groups was determined using Boehm’s method. The porosity of ACs was assayed using the nitrogen adsorption/desorption technique, while their thermal resistance using the thermogravimetric method. The ACs derived from miscanthus and switchgrass were characterized by surfaces rich in chemical groups and a highly developed porous structure. The highest specific surface areas, over 1600 m /g, were obtained after carbon treatment with NaOH. High values of iodine number, 1200–1240 mg/g, indicate an extensive system of micropores and their good adsorption properties. The type of activator affected the contents of oxygen functional groups and some porosity parameters as well as thermal stability ranges of the ACs. Among obtained carbons, the highest quality was found for these derived from followed by switchgrass, after activation with NaOH. Hence, while these crop species are not as effective biomass sources as other energy grasses, they can become valuable feedstocks for ACs.
机译:木质纤维素生物质,包括能源作物的生物质,可以作为生产活性炭(AC)的替代来源。用芒草和柳枝straw秸秆分两步生产AC。将粉碎的植物材料在600°C下碳化,然后在750°C下使用NaOH或KOH活化获得的碳。使用Boehm方法确定表面氧基团的含量。使用氮吸附/解吸技术测定AC的孔隙率,而使用热重法测定其热阻。源自芒属和柳枝switch的ACs具有富含化学基团和高度发达的多孔结构的表面。用NaOH碳处理后,获得了最高比表面积,超过1600 m / g。碘值较高(1200–1240 mg / g)表明存在广泛的微孔系统,并具有良好的吸附性能。活化剂的类型影响氧官能团的含量和一些孔隙度参数以及AC的热稳定性范围。在获得的碳中,用NaOH活化后的from草和柳枝switch的碳素质量最高。因此,尽管这些农作物种类不像其他能源草那样有效的生物质来源,但它们可以成为AC的宝贵原料。

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