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首页> 外文期刊>Journal of nanoscience and nanotechnology >Impacts of Mo Promotion on Nickel-Based Catalysts for the Synthesis of High Quality Carbon Nanotubes Using CO2 as the Carbon Source
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Impacts of Mo Promotion on Nickel-Based Catalysts for the Synthesis of High Quality Carbon Nanotubes Using CO2 as the Carbon Source

机译:Mo促进对镍基催化剂的影响,用CO2作为碳源合成高质量碳纳米管

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摘要

In recent years, the primary greenhouse gas (carbon dioxide) has caused a series of severe issues, such as global warming, climate change, etc. Therefore, CCU, CCS and CCUS technologies have been employed to reduce CO, emissions. Through our developed "chemical vapor deposition integrated process (CVD-IP)" using carbon dioxide as the carbon source, CO2 could be catalytically activated and converted to high-value carbon nanotubes. In this work, methane and carbon dioxide has been applied to synthesize CNTs respectively to compare the difference between conventional CH4 CVD and CO2 CVD-IP technology using Ni-Mo bimetallic catalysts. In the conventional CH4 CVD technology, the carbon productivity and the thermal stability of CNTs could be improved by changing the Mo content of the catalyst, the better catalytic performance 4% Mo catalyst is selected as model catalyst to apply to CO, CVD-IP technology. Moreover, when the weak oxidant CO2 is the only carbon source in the CVD-IP technology, the carbon yield is 22% and the carbon productivity is 1.98 g/g(cat). TG curves and Raman spectroscopy display that the CNTs with better thermal stability and higher degree of graphitization are achieved. TEM confirms that the fewer wall numbers and defects of CNTs are obtained. These characterizations suggest that the high quality CNTs could be achieved by CO2 CVD-IP technology.
机译:近年来,主要温室气体(二氧化碳)导致了一系列严重的问题,如全球变暖,气候变化等,因此,CCU,CCS和CCU技术已被用于减少CO,排放。通过我们开发的“化学气相沉积综合处理(CVD-IP)”用二氧化碳作为碳源,CO 2可以催化活化并转化为高价值碳纳米管。在这项工作中,已应用甲烷和二氧化碳分别合成CNT,以比较使用Ni-Mo双金属催化剂的常规CH4 CVD和CO2 CVD-IP技术之间的差异。在传统的CH4 CVD技术中,通过改变催化剂的Mo含量可以提高CNT的碳生产率和热稳定性,选择更好的催化性能4%Mo催化剂作为涂上CO,CVD-IP技术的模型催化剂。此外,当弱氧化剂CO2是CVD-IP技术中唯一的碳源时,碳产率为22%,碳生产率为1.98g / g(猫)。 Tg曲线和拉曼光谱显示器,实现了具有更好的热稳定性和更高程度的石墨化的CNT。 TEM证实,获得了CNT的壁数和缺陷。这些特征表明,通过CO2 CVD-IP技术可以实现高质量的CNT。

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