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Large-scale oxidation of multi-walled carbon nanotubes in fluidized bed from ozone-containing gas mixtures

机译:含臭氧气体混合物流化床中多壁碳纳米管的大规模氧化

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摘要

100g of multi-walled carbon nanotubes (MWCNTs) tangled in balls of 388m in Sauter diameter were treated per run in a pre-industrial scale fluidized bed reactor, using ozone-based gaseous mixtures at ambient temperature. The influence of ozone concentration and of the addition of water vapour was studied, for treatment durations between 1h and 20h. The process behaviour was analyzed in terms of fluidized bed pressure drop and temperature profile. The nature and amount of the grafted oxygen based functions were analyzed, as the structural modifications created. An oxidation mechanism in two steps was evidenced, showing the grafting of hydroxyl, phenol, and ether functions in a first step and then of lactone, quinone, carbonyl, and carboxylic groups. A moderate etching of the MWCNT outer walls was observed. The amount of grafted functions and of structural defects increased with treatment duration and was highly exalted by the presence of water vapour. All the results obtained showed that the oxidation was uniform on the whole powder of the bed and from the outer part to the centre of the balls, probably thanks to the high fluidization quality maintained all along the ozone treatment.
机译:使用臭氧基气体混合物在环境温度下,每次在工业型气态混合物中缠绕在燃露的直径388米的球中缠绕在388米的球中缠结的100g多壁碳纳米管(MWCNT)。研究了臭氧浓度和添加水蒸气的影响,用于1h和20h之间的处理持续时间。在流化床压降和温度曲线方面分析了过程行为。分析了接枝的氧函数的性质和量,因为所产生的结构修改。证明了两个步骤的氧化机制,显示了羟基,苯酚和醚官能在第一步,然后的内酯,醌,羰基和羧基中的嫁接。观察到MWCNT外壁的中等蚀刻。接枝功能和结构缺陷的量随治疗持续时间而增加,并且通过水蒸气的存在高度升高。所得到的所有结果表明,氧化在床的整个粉末上以及从球的中心到球的中心,可能由于沿着臭氧处理而保持的高流化品质。

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