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The sorption of butanes over carbon nanotubes

机译:丁烷在碳纳米管上的吸附

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摘要

Single- and multi-walled carbon nanotubes (SWCNT and MWCNT) were synthesized by the catalytic decomposition of methane and acetylene, respectively. The catalyst/carbon mixtures were submitted to various procedures to obtain samples, enriched in nanotubes. Adsorption isotherms and gas sorption frequency response (FR) spectra of butanes were determined between 273 and 373 K at different equilibrium pressures in the 1 - 6 kPa range. The adsorption capacities were found to increase with increasing (ⅰ) carbon nanotube content, (ⅱ) available surface area, and (ⅲ) concentration of O-containing surface functional groups that are sites for strong butane adsorption. The FR studies demonstrated that the rate-governing mechanism of butane sorption depends both on the morphology and the surface properties of the nanotubes. The FR method was shown to be a powerful technique for the characterization of the carbon nanotube products.
机译:通过甲烷和乙炔的催化分解分别合成了单壁和多壁碳纳米管(SWCNT和MWCNT)。将催化剂/碳混合物进行各种程序以获得富含纳米管的样品。在1-6 kPa范围内的不同平衡压力下,在273 K和373 K之间确定了丁烷的吸附等温线和气体吸附频率响应(FR)光谱。发现吸附能力随(ⅰ)碳纳米管含量,(ⅱ)可用表面积和(ⅲ)作为强丁烷吸附位点的含O表面官能团浓度的增加而增加。 FR研究表明丁烷吸附的速率控制机制取决于纳米管的形态和表面特性。 FR方法已被证明是表征碳纳米管产品的强大技术。

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