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Characterization of microstructure and surface properties of heat-treated PAN-and rayon-based activated carbon fibers

机译:热处理的PAN和人造丝基活性炭纤维的微观结构和表面特性的表征

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Polyacrylonitrile- and rayon-based activated carbon fibers (ACFs), subject to heat treatment over 600-1,100℃ under N_2 flow, were investigated using a number of surface analytical methods, including N_2 adsorption isotherm, elemental analysis, and X-ray photoelectron spectroscopy. The adsorption capacities of benzene, carbon tetrachloride, and water vapor on as-received and heat-treated ACFs were determined. Results show that the ACFs under study were highly microporous but heat-treated ACFs contained more mesopores in the range of 20-30 A for PAN-based and 30-45 A for rayon-based. It can be seen that the high-resolution α_s plot provided valuable information about structure properties. The pore size distributions of ACFs gave insight into the pore development with heat treatment temperature. Besides, phenolic groups were found to be the most abundant oxygen-containing functional groups on the surface of both ACFs. The vapor adsorptions on ACFs indicated that molecular size and polarity of vapors, as well as the microstructure and chemistry of ACFs profoundly influenced the adsorption performance.
机译:使用N_2吸附等温线,元素分析和X射线光电子能谱等多种表面分析方法,研究了在N_2流动下经受600-1,100℃热处理的聚丙烯腈和人造丝基活性炭纤维(ACF)。 。确定了苯,四氯化碳和水蒸气在原样和热处理后的ACF上的吸附能力。结果表明,所研究的ACF是高度微孔的,但经热处理的ACF含有更多的中孔(对于PAN型而言为20-30 A,对于人造丝则为30-45 A)。可以看出,高分辨率α_s图提供了有关结构特性的有价值的信息。 ACF的孔径分布使您可以了解热处理温度对孔的影响。此外,发现酚基是两个ACF表面上最丰富的含氧官能团。 ACFs上的蒸气吸附表明,蒸气的分子大小和极性以及ACF的微观结构和化学性质深刻影响了吸附性能。

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