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首页> 外文期刊>Green and Sustainable Chemistry >Direct Preparation of Hydrogen and Carbon Nanotubes by Microwave Plasma Decomposition of Methane over Fe/Si Activated by Biased Hydrogen Plasma
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Direct Preparation of Hydrogen and Carbon Nanotubes by Microwave Plasma Decomposition of Methane over Fe/Si Activated by Biased Hydrogen Plasma

机译:偏压等离子体活化Fe / Si上的微波微波分解甲烷直接制备氢和碳纳米管

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Methane was decomposed to hydrogen and carbon nanotubes (CNTs) by microwave plasma, using Fe/Si catalyst activated by biased (—150 V) hydrogen plasma for various treatment times. Upon exposure to biased hydrogen plasma, the catalyst surface becomes lumpy within 1 min, coheres between 5 and 10 min and forms particles after 20 min. The methane conversion increased up to 93% over the treatment time of 5 min. The hydrogen yield showed as similar tendency as the methane conversion and kept 83% at treatment time of 5 min. The treatment time up to 1 min increased the amount of deposited carbon, and after treatment time of 5 min it dropped; then again after treatment time of 20 min, it increased to reach a maximum value of 22 gc/gcat. Deposited carbon was found to be consisted of carbon nanotubes. It grew vertically on the catalyst surface and reached a maximum length of 30.7 nm after treatment time of 10 min. Multiple types of CNTs were present, and the CNT diameters decreased with increasing plasma treatment time.
机译:使用通过偏压(-150 V)氢等离子体活化的Fe / Si催化剂,通过微波等离子体将甲烷分解为氢和碳纳米管(CNT)各种时间。暴露于偏压的氢等离子体后,催化剂表面在1分钟内结块,在5至10分钟之间凝聚,并在20分钟后形成颗粒。在5分钟的处理时间内,甲烷转化率提高了93%。氢气产率显示出与甲烷转化率相似的趋势,并且在5分钟的处理时间内保持83%的产率。长达1分钟的处理时间增加了沉积的碳量,经过5分钟的处理时间后碳下降了。然后在经过20分钟的处理时间后,又增加到22 gc / gcat的最大值。发现沉积的碳由碳纳米管组成。它在催化剂表面垂直生长,在10分钟的处理时间后达到30.7 nm的最大长度。存在多种类型的CNT,并且CNT直径随着等离子体处理时间的增加而减小。

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