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A study of ignition of metal impregnated carbons: the influence of oxygen content in the activated carbon matrix

机译:金属浸渍碳着火的研究:活性炭基质中氧含量的影响

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A study of the reason for the early ignition of coconut-based impregnated carbon in comparison with the peat-based impregnated carbon was conducted. The surface features of carbons were evaluated using various physicochemical methods. The metal analysis of the initial carbon indicated that the content of potassium was higher in the coconut-based carbon. The surface functional group analysis revealed the presence of similar surface species; however, the peat-based carbon was more acidic in its chemical nature. Since the oxygen content was higher in the peat-based carbon, the early ignition of the coconut-based material was attributed to its higher affinity to chemisorb oxygen, which leads to exothermic effects. This conclusion was confirmed by performing oxidation of coconut-based carbon prior to impregnation. This process increased the ignition temperature for Cu/Cr impregnated coconut-based material from 186 to 289 degreesC and for the Cu/Zn/Mo impregnated carbon from 235 to 324 degreesC. (C) 2004 Elsevier Inc. All rights reserved.
机译:与基于泥炭的浸渍碳相比,进行了基于椰子的浸渍碳的提前点火的原因的研究。使用各种物理化学方法评估了碳的表面特征。初始碳的金属分析表明,椰子基碳中钾的含量较高。表面官能团分析表明存在相似的表面物种。然而,基于泥炭的碳在化学性质上更酸性。由于基于泥炭的碳中的氧含量较高,因此基于椰子的材料的早期点火归因于其对化学吸附氧的较高亲和力,这导致放热效应。通过在浸渍之前对椰子基碳进行氧化可以证实该结论。此过程将Cu / Cr浸渍的椰子基材料的着火温度从186℃提高到289℃,Cu / Zn / Mo浸渍的碳的点火温度从235℃提高到324℃。 (C)2004 Elsevier Inc.保留所有权利。

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