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Effect of metal addition to Ni/activated charcoal catalyst on gasification of glucose in supercritical water

机译:镍/活性炭催化剂中金属的添加对超临界水中葡萄糖气化的影响

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摘要

Activated charcoal supported nickel-based catalysts such as Ni/AC, Ni-Y/AC, Ni-Fe/AC, and Ni-Co/AC were formulated and their catalytic activity for the gasification of glucose in supercritical water were investigated using a packed-bed reactor at 650 ℃, 28 Mpa. A set of glucose gasification experiments was also carried out without catalyst and with AC to provide baseline data. Loading of small amounts of Y to the Ni/AC catalyst appeared to increase both the extent of gasification and hydrogen yield while loading of Fe or Co metal to the Ni/AC catalyst did not give any positive effect on the gasification results. Effect of catalyst composition, temperature, reactant concentration, and reactor residence time on the glucose gasification with the Ni-Y/AC catalyst was examined. Catalyst analysis indicates that adding of Y into the Ni/AC catalyst inhibited carbon formation to a great extent, thereby maintaining catalytic activity of the Ni metal for H_2 formation reactions.
机译:配制了活性炭负载的镍基催化剂,如Ni / AC,Ni-Y / AC,Ni-Fe / AC和Ni-Co / AC,并使用填充剂研究了它们对超临界水中葡萄糖气化的催化活性。床反应器在650℃,28 Mpa。还进行了一组葡萄糖气化实验,没有使用催化剂,也没有使用AC,以提供基线数据。少量的Y负载到Ni / AC催化剂上似乎增加了气化程度和氢气产率,而Fe或Co的金属负载到Ni / AC催化剂上对气化结果没有任何正面影响。研究了催化剂组成,温度,反应物浓度和反应器停留时间对使用Ni-Y / AC催化剂进行葡萄糖气化的影响。催化剂分析表明,在Ni / AC催化剂中加入Y可以在很大程度上抑制碳的形成,从而保持Ni金属对H_2形成反应的催化活性。

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