期刊论文详细信息
FUEL 卷:287
Simulation-assisted design of a catalytic hydrogenation reactor for plastic pyrolysis fuels
Article
Gala, Alberto1  Catalan-Martinez, David2  Guerrero, Marta1  Manuel Serra, Jose2 
[1] URBASER SA, Technol Waste Innovat Ctr CIAM, Dept Innovat, C Azufre 120, Zaragoza 50720, Spain
[2] Univ Politecn Valencia, CSIC, Inst Tecnol Quim, Valencia 46022, Spain
关键词: CFD;    Hydrotreatment;    Pyrolysis;    LDPE;    Automotive fuels;   
DOI  :  10.1016/j.fuel.2020.119400
来源: Elsevier
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【 摘 要 】

An enhancement of the properties of pyrolysis liquids (PL) from municipal plastic waste (mainly low-density polyethylene) by catalytic hydrotreatment is required to obtain automotive quality fuels. In this context, we report the design of a pilot catalytic hydrotreatment reactor using computational fluid dynamics (CFD). This modelling technique considered fluid flows, gas diffusion, olefin hydrogenation reactions, and heat transfer. The built model allowed the development of different sensitive analysis to evaluate the influence of spatial time, heat transfer fluid (used as a reactor coolant) and hydrogen/pyrolysis liquid ratio. Possible phase changes (from gas to liquid) were analyzed by a thermodynamic approach. The results showed that the refrigerant oil allows alleviating possible temperature gradients arising from the exothermic hydrogenation reaction. It was also found that the system can be optimized in order to minimize the energy cost by adjusting the inlet temperature of the reactive gas (H-2) and the refrigerant oil flow. Condensations in the reactive chamber could be avoided by working at intermediate pressures (40-60 bar) and/or increasing the feed of H-2. Additionally, the results obtained with the CFD 3D model together with the condensation analysis allowed to optimize the operational regime and the pilot-reactor design in terms of dimensioning and construction materials.

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