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Influence of metal addition to Ni-based catalysts for the co-production of carbon nanotubes and hydrogen from the thermal processing of waste polypropylene

机译:添加金属对Ni基催化剂的影响,用于从废聚丙烯的热加工中共同生产碳纳米管和氢

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摘要

This paper investigates the co-production of hydrogen and carbon nanotubes from the pyrolysis-catalytic gasification of waste plastics (polypropylene). We report on the influence of a range of metal additions to a nickel based catalyst based on ternary mixed oxide types Ni-Metal-Al, where the metal was Zn, Mg, Ca, Ce or Mn. The results showed that of the different metal-nickel catalysts investigated, the Ni-Mn-Al catalyst was the most promising catalyst in relation to the co-production of hydrogen and CNT. For example, the Ni-Mn-Al catalyst produced 71.4 mmol hydrogen g- 1 plastic, while the hydrogen production using Ni-Ca-Al, Ni-Ce-Al and Ni-Zn-Al catalysts were 68.5 mmol g- 1, 63.1 mmol g- 1 and 45.9 mmol hydrogen g- 1 plastic respectively. In addition, carbon deposition on the catalyst was highest in the order of: Ni-Mn-Al > Ni-Ca-Al > Ni-Zn-Al > Ni-Ce-Al > Ni-Mg-Al. The carbon deposition for the Ni-Mn-Al catalyst was found to consist of mostly carbon nanotubes. Further investigation of the Ni-Mn-Al catalyst demonstrated that the interaction between Ni and catalyst support plays a significant role in the gasification process; weak metal support interaction (for the Ni-Mn-Al catalyst calcined at 300 °C) resulted in a lower hydrogen production and much higher yield of carbon products. In addition, the influence of steam injection rate on hydrogen and carbon nanotube production was investigated for the Ni-Mn-Al catalyst. Increasing the steam injection rate significantly increased hydrogen production and decreased carbon deposition. However, at lower steam injection rates, the quality of the product carbon nanotubes was improved.
机译:本文研究了废塑料(聚丙烯)的热解催化气化过程中氢和碳纳米管的联产。我们报告了基于三元混合氧化物类型Ni-Metal-Al的镍基催化剂中一系列金属添加的影响,其中金属为Zn,Mg,Ca,Ce或Mn。结果表明,在研究的各种金属镍催化剂中,就氢和CNT的联产而言,Ni-Mn-Al催化剂是最有前途的催化剂。例如,Ni-Mn-Al催化剂产生71.4 mmol的氢g-1塑料,而使用Ni-Ca-Al,Ni-Ce-Al和Ni-Zn-Al催化剂产生的氢为68.5 mmol g-1、63.1分别为mmol g-1和45.9 mmol氢g-1塑料。另外,催化剂上的碳沉积最高的顺序为:Ni-Mn-Al> Ni-Ca-Al> Ni-Zn-Al> Ni-Ce-Al> Ni-Mg-Al。发现Ni-Mn-Al催化剂的碳沉积物主要由碳纳米管组成。对Ni-Mn-Al催化剂的进一步研究表明,Ni与催化剂载体之间的相互作用在气化过程中起着重要作用。较弱的金属与载体之间的相互作用(对于在300°C下煅烧的Ni-Mn-Al催化剂)导致较低的氢气产生和较高的碳产物收率。此外,研究了Ni-Mn-Al催化剂中蒸汽注入速率对氢和碳纳米管生产的影响。增加蒸汽注入速率会显着增加氢气产量并减少碳沉积。然而,在较低的蒸汽注入速率下,产物碳纳米管的质量得以改善。

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