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Methane Cracking over a Bituminous Coal Char

机译:甲烷在沥青煤炭上开裂

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Methane cracking over a bed of Chinese bituminous coal char was studied using a fixed-bed reactor at atmospheric pressure and temperatures between 1073 and 1223 K. Methane conversion over the fresh char increased with increasing temperature to 90% at 1223 K. Hydrogen was the only gas-phase product that was detected during the experimentation. The char was shown to exert a significant catalytic effect on methane cracking by comparing results from experiments with the raw char and demineralised char as well as from blank experiments using quartz. It was further shown that the ash was not the source of the catalytic effect of the char. However, both methane conversion and hydrogen yield decreased with increasing reaction time, irrespective of other experimental conditions, indicating that the char rapidly became deactivated following the exposure to methane. It was speculated that the deposition of carbon from methane cracking was responsible for this deactivation, which is supported by scanning electron microscopy (SEM) image analysis. It was demonstrated that the catalytic activity of the deactivated char can be partially recovered by burning off the carbon deposits with an oxidizing gas mixture containing 0.46% oxygen.
机译:在大气压力下使用固定床反应器在含有固定床反应器的甲烷裂解甲烷裂解,在大气压下,在1073和1223k的温度下,在新鲜的焦炭上甲烷转化在1223k的温度下升高至90%。氢气是唯一的在实验期间检测到的气相产物。显示CHAR通过将实验与原始炭和脱蛋白的炭以及使用石英的空白实验与空白实验相比,对甲烷裂化产生显着的催化作用。进一步表明,灰分不是炭的催化作用的来源。然而,随着反应时间的增加,甲烷转化率和氢产率随着其他实验条件而言,表明炭在暴露于甲烷后迅速消失。据推测,从甲烷裂化沉积碳的沉积负责这种停用,这是通过扫描电子显微镜(SEM)图像分析的支持。证明,通过燃烧含有0.46%氧的氧化气体混合物燃烧碳沉积物,可以部分地回收去活性炭的催化活性。

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