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Role of active sites in the steam activation of high unburned carbon fly ashes

机译:活性部位在高碳未燃烧飞灰的蒸汽活化中的作用

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Previous studies on carbon gasification have not included high unburned carbon content fly ashes, and therefore it remains unclear why not all fly ash carbon samples are equally suitable for activation. The concentration of active sites is well known to influence carbon gasification reactions. Therefore, the objective of this work was to investigate the effect of the concentration of active sites on the behavior of fly ash carbon samples upon steam activation. Six fly ash carbons were selected to produce activated carbons using steam at 850 ℃. The concentration of active sites was determined by non-dispersive infrared analysis (NDIR), thermogravimetric analysis (TGA) and X-ray photoelectron spectroscopy (XPS). XRD analyses were also conducted to determine the crystallite size. It was observed that the concentration of active sites played a more significant effect on the surface areas of activated carbons in the carbon burn-off zone of > 60%. Statistical analysis was used to relate the surface areas of activated carbon variances with carbon burn-off levels.
机译:先前关于碳气化的研究尚未包括高未燃烧碳含量的飞灰,因此目前尚不清楚为什么不是所有飞灰碳样品都同样适合活化。众所周知,活性位点的浓度会影响碳气化反应。因此,这项工作的目的是研究蒸汽活化后活性部位浓度对粉煤灰碳样品行为的影响。选择了6种粉煤灰炭,并在850℃的蒸汽下产生活性炭。通过非分散红外分析(NDIR),热重分析(TGA)和X射线光电子能谱(XPS)确定活性部位的浓度。还进行了XRD分析以确定微晶尺寸。观察到活性位点的浓度对> 60%的碳燃烧区中的活性炭表面积发挥了更大的作用。使用统计分析将活性炭差异的表面积与碳燃烧水平相关联。

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