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Plasma enhanced decomposition of propylene on activated carbon fibers

机译:等离子增强丙烯在活性炭纤维上的分解

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摘要

Activated carbons with uniform size micropores appear to have the highest potential for improvement of their molecular sieving properties by employing chemical vapor deposition techniques. In this work RF plasma was used to enhance propylene cracking and to examine its effect on the pore structure, chemical surface groups and selective CO_2 adsorption of a commercial activated carbon fiber. Plasma treatment of carbon fibers was carried out under various experimental conditions. Raman, FTIR and XPS spectroscopy were used to evaluate the modifications on the fibers surface. SEM was also used for the observation of fibers surface before and after plasma treatment.
机译:通过采用化学气相沉积技术,具有均匀尺寸的微孔的活性炭似乎具有提高其分子筛分性能的最高潜力。在这项工作中,RF等离子用于增强丙烯裂化并检查其对商业活性炭纤维的孔结构,化学表面基团和选择性CO_2吸附的影响。碳纤维的等离子体处理是在各种实验条件下进行的。拉曼光谱,FTIR和XPS光谱用于评估纤维表面的改性。 SEM还用于观察等离子体处理之前和之后的纤维表面。

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