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Pore size distribution and supercritical hydrogen adsorption in activated carbon fibers

机译:活性炭纤维中的孔径分布和超临界氢吸附

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摘要

Pore size distributions (PSD) and supercritical H_2 isotherms have been measured for two activated carbon fiber (ACF) samples. The surface area and the PSD both depend on the degree of activation to which the ACF has been exposed. The low-surface-area ACF has a narrow PSD centered at 0.5 nm, while the high-surface-area ACF has a broad distribution of pore widths between 0.5 and 2 nm. The H_2 adsorption enthalpy in the zero-coverage limit depends on the relative abundance of the smallest pores relative to the larger pores. Measurements of the H_2 isosteric adsorption enthalpy indicate the presence of energy heterogeneity in both ACF samples. Additional measurements on a microporous, coconut-derived activated carbon are presented for reference.
机译:已对两个活性炭纤维(ACF)样品测量了孔径分布(PSD)和超临界H_2等温线。表面积和PSD都取决于ACF已经暴露的活化程度。低表面积ACF具有以0.5nm为中心的窄PSD,而高表面积ACF具有在0.5至2nm之间的孔宽度的宽分布。零覆盖极限中的H_2吸附焓取决于最小孔相对于较大孔的相对丰度。 H_2等位吸附焓的测量表明在两个ACF样品中均存在能量异质性。提出了对微孔椰子衍生活性炭的其他测量方法,以供参考。

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