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Investigation of the Effect of Processing Parameters on the Catalytic Formation of Filamentous Carbon on Carbon Fibre Mats

机译:工艺参数对碳纤维毡上丝状碳催化形成的影响研究

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Nickel catalyst particles were supported on carbon fibres. The carbon fibre mats were impregnated with a nickel salt (I.e. Nickel nitrate) using the incipient wetness technique, the catalyst salt was then decomposed to nickel oxide under nitrogen at 500℃. The impregnated carbon fibre mats were then densified in synthetic natural gas, ethane or synthetic natural gas/hydrogen at temperatures ranging from 550℃ to 800℃. The densification gases used provided a reducing atmosphere which converted the nickel oxide to nickel metal. The percentage mass gain of the carbon fibre mats was used to calculate the percentage mass pick-up per hour of the carbon fibre mats, these rates of deposition ranged from approximately 1% to over 50% under varying densification conditions. The carbon fibre mats and the catalytically deposited carbon was characterised using XRD and TEM. XRD was used to identify the state of the catalyst during the different stages of the densification process and TEM analysis showed that the catalytically deposited carbon could be either filamentous in nature or could form a graphitic shell around the catalyst particles.
机译:镍催化剂颗粒负载在碳纤维上。使用初期润湿技术将碳纤维垫浸入镍盐(即硝酸镍)中,然后将催化剂盐在氮气氛下于500℃分解为氧化镍。然后将浸渍的碳纤维毡在合成天然气,乙烷或合成天然气/氢气中在550℃至800℃的温度下进行致密化。所使用的致密化气体提供了还原性气氛,该气氛将氧化镍转化为镍金属。碳纤维垫的质量增加百分比用于计算碳纤维垫每小时的质量吸收百分比,在不同的致密化条件下,这些沉积速率的范围从大约1%到超过50%。使用XRD和TEM对碳纤维毡和催化沉积的碳进行了表征。 XRD被用于在致密化过程的不同阶段中识别催化剂的状态,并且TEM分析表明,催化沉积的碳可以是丝状的,或者可以在催化剂颗粒周围形成石墨壳。

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