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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Investigation of Ni-Al, Ni-Mg-Al and Ni-Cu-Al catalyst for hydrogen production from pyrolysis-gasiflcation of polypropylene
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Investigation of Ni-Al, Ni-Mg-Al and Ni-Cu-Al catalyst for hydrogen production from pyrolysis-gasiflcation of polypropylene

机译:聚丙烯热解气化制氢制氢用Ni-Al,Ni-Mg-Al和Ni-Cu-Al催化剂的研究

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摘要

Co-precipitated nickel-based catalysts with different metallic molar ratios and calcination temperature were investigated for the production of hydrogen from the pyrolysis-gasiflcation of polypropylene. The experiments were carried out at a pyrolysis temperature of 500 °C and gasification temperature of 800 °C in the presence of steam using a two-stage reaction system. The results suggest that with increasing Ni content in the Ni-Al or Ni-Mg-Al catalyst, the catalytic activity of the catalyst increased, in relation to hydrogen production. For example, the potential hydrogen production increased from 48.8 to 57.7 wt.%, and the amount of water reacted increased from 1.2 to 1.3 (g water/g polypropylene), when the Ni-Al molar ratio was increased from 1:4 to 1:1. After reaction in the pyrolysis-gasiflcation process, the non-reduced Ni-Al catalyst was reduced into metallic Ni, as observed from XRD and TGA analysis. The introduction of Mg into the Ni-Al catalyst significantly increased the amount of reacted water and improved the performance of the catalyst in relation to coke formation, although the hydrogen production was not significantly improved. For the Ni-Al or Ni-Mg-Al catalyst, a 850 °C calcination temperature resulted in a lower catalytic activity compared to the lower calcination temperature of 750 °C. The substitution of Cu for Mg in the Ni-Mg-Al catalyst significantly reduced the catalytic ability for hydrogen production.
机译:研究了具有不同金属摩尔比和煅烧温度的共沉淀镍基催化剂,用于由聚丙烯的热解气化生产氢气。使用两步反应系统,在蒸汽存在下,在500°C的热解温度和800°C的气化温度下进行实验。结果表明,随着Ni-Al或Ni-Mg-Al催化剂中Ni含量的增加,催化剂的催化活性相对于氢产生而增加。例如,当Ni-Al摩尔比从1:4增加到1时,潜在的氢气产生量从48.8 wt。%增加到57.7 wt。%,反应的水量从1.2增加到1.3(g水/ g聚丙烯)。 :1。根据XRD和TGA分析,在热解气化过程中反应后,未还原的Ni-Al催化剂被还原为金属Ni。将Mg引入Ni-Al催化剂中可显着增加反应水的量,并改善与焦炭形成相关的催化剂性能,尽管不会显着提高氢气的产生。对于Ni-Al或Ni-Mg-Al催化剂,相较于较低的煅烧温度750°C,850°C的煅烧温度导致较低的催化活性。 Ni-Mg-Al催化剂中用Cu代替Mg大大降低了制氢的催化能力。

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