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首页> 外文期刊>Energy Reports >6th International Conference on Energy and Environment Research, ICEER 2019, 22–25 July, University of Aveiro, Portugal Gasification of plastic waste for synthesis gas production
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6th International Conference on Energy and Environment Research, ICEER 2019, 22–25 July, University of Aveiro, Portugal Gasification of plastic waste for synthesis gas production

机译:第六次国际能源与环境研究会议,ICEER 2019年7月22日至25日,Aveiro大学,葡萄牙塑料废物的葡萄牙气化生产

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This work presents the synthesis gas production from gasification of plastic waste, i.e. polyethylene (PE) and polypropylene (PP). The steam gasification is modeled by using AspenPlus TM simulation software. The effects of gasifier temperature and steam to feed (S/F) mass ratio were examined to determine the suitable synthesis gas mole flow rate. The simulation results showed that gasifier should be operated at 900?°C with optimal S/F mass ratio as 1.5. Considering the influence of PE/PP mass ratio, the results indicated that the PE/PP mass ratio of 100/0 or pure PE can provide the maximum synthesis gas flow rate of 21 kmol/hr and H 2 /CO ratio of 2.1.
机译:该工作介绍了塑料废物气化的合成气产量,即聚乙烯(PE)和聚丙烯(PP)。通过使用AspenPlus TM仿真软件建模蒸汽气化。研究了气化炉温度和蒸汽的影响(S / F)质量比以确定合适的合成气摩尔流速。仿真结果表明,气化器应以900°C在900°C下操作,以最佳的S / F质量比为1.5。考虑到PE / PP质量比的影响,结果表明,100/0或纯PE的PE / PP质量比可以提供21kmol / Hr和H 2 / Co比的最大合成气体流速。

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