Dry reforming of polypropylene over Ni and Ru-Ni catalysts supported on mesoporous alumina: Effect of calcination temperature

Aida Younis, C. Gennequin, E. A. Aad, Jane Estephane, S. Aouad
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Abstract

The catalytic dry reforming of plastic waste is performed in a two-stage fixed bed reactor set-up for synthesis gas production. The pyrolysis of plastics occurs in the first stage, while the dry reforming of the pyrolysates over a synthesized catalyst occurs in the second stage in the presence of carbon dioxide. The plastic used is polypropylene, which is simulating the most produced type of plastic. 25NiAl2O3 and 1Ru25NiAl2O3 are the studied catalysts, synthesized via wet impregnation. The effect of the catalyst’s calcination temperature on its performance is investigated. The results show that a lower calcination temperature revealed improved catalytic performance. The catalyst promoted with ruthenium did not show any deactivation during several consecutive runs. The calcination temperature and the metal promoter play a critical role in determining the stability and activity of the Ni-based catalysts during the dry reforming of polypropylene.
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介孔氧化铝负载的Ni和Ru-Ni催化剂上聚丙烯干重整:煅烧温度的影响
在两段固定床反应器装置中进行了塑料废物的催化干重整合成气生产。塑料的热解发生在第一阶段,而热解产物在合成催化剂上的干重整发生在第二阶段,在二氧化碳的存在下。使用的塑料是聚丙烯,它模拟了生产最多的塑料类型。25NiAl2O3和1Ru25NiAl2O3为催化剂,采用湿浸渍法制备。研究了煅烧温度对催化剂性能的影响。结果表明,较低的煅烧温度可以提高催化性能。用钌促进的催化剂在连续几次运行中没有表现出任何失活。在聚丙烯干重整过程中,焙烧温度和金属助剂对镍基催化剂的稳定性和活性有重要影响。
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