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Effect of temperature on activated carbon nanotubes for hydrogen storage behaviors

机译:温度对活性炭纳米管储氢行为的影响

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In this work, activated multi-walled carbon nanotubes (Acti-MWNTs) with well-developed pore structures, a highly specific surface area, and higher hydrogen adsorption capacities due to CO_2 activation were prepared. The activation was performed at activation temperatures in the range of 500-1100 ℃. The microstructure and crystallinity of the Acti-MWNTs were evaluated with a transmission electron microscope (TEM) and an FT-Raman spectrometer, respectively. The textural properties of the Acti-MWNTs were investigated by using a nitrogen gas sorption analyzer at 77 K. The hydrogen storage capacities of the Acti-MWNTs were investigated by BEL-HP at 298 K/100 bar. The hydrogen storage capacities of the Acti-MWNTs were enhanced to 0.78 wt.% by increasing activation temperatures to 900 ℃, which resulted in the formation of a defective structure in the Acti-MWNTs. This result indicated that the CO_2 activation was one of the most effective methods to develop the textural properties, as well as to enhance the hydrogen storage capacities of MWNTs.
机译:在这项工作中,制备了具有发达的孔结构,高比表面积和由于CO_2活化而具有更高的氢吸附能力的活化多壁碳纳米管(Acti-MWNTs)。活化在500-1100℃的活化温度下进行。 Acti-MWNTs的微观结构和结晶度分别用透射电子显微镜(TEM)和FT-拉曼光谱仪评估。使用氮气吸附分析仪在77 K下研究Acti-MWNTs的组织性能。通过BEL-HP在298 K / 100 bar下研究Acti-MWNTs的储氢能力。通过将活化温度提高到900℃,使Acti-MWNTs的储氢能力提高到0.78 wt。%,从而导致Acti-MWNTs中形成有缺陷的结构。该结果表明,CO_2活化是发展质构性质以及增强MWNTs储氢能力的最有效方法之一。

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