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Simulation of the gasification of animal wastes in a dual gasifier using Aspen Plus (R)

机译:使用Aspen Plus(R)在双气化炉中模拟动物粪便的气化

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摘要

The gasification of an animal waste biomass (manure) in a dual gasifier was studied using the software Aspen Plus (R). For this purpose, a model based on a Gibbs free energy reactor was considered. Effects of the gasification temperature, the gasifying biomass ratio and the use of steam and CO2 as the gasifying agents on the composition and the low heating value (LHV) of the produced syngas were evaluated. In this sense, the H-2/CO ratio and the LHV were the parameters calculated to stablish the best operating conditions for the production of either hydrocarbons via Fischer-Tropsch or energy. Furthermore, the CO2 net emissions generated by the gasification process were also important in the selection of the best operating conditions from an environmental point of view. The obtained results showed that for both gasifying agents the H-2 and CO production was favoured at high temperatures whereas the production of CH4 and CO2 was favoured at low ones. On the other hand, the H-2 production was higher when steam was used as the gasifying agent and the formation of CO was enhanced when CO2 was considered as gasification agent. An increase of the gasifying agent/biomass ratio had a negatively influence on the production of CH4, leading to a decrease of the LHV. Therefore, steam as the gasifying agent and high temperatures favoured the obtaining of a syngas suitable for the Fischer-Tropsch process whereas CO2 and low gasification temperatures enhanced a syngas with a high LHV which could be used for energy production. Finally, the net CO2 emissions were estimated to be lower when CO2 was again used as the gasifying agent. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用软件Aspen Plus(R)研究了双气化炉中动物粪便生物量(粪便)的气化。为此,考虑了基于吉布斯自由能反应堆的模型。评估了气化温度,气化生物质比以及使用蒸汽和CO2作为气化剂对合成气的组成和低发热量(LHV)的影响。从这个意义上讲,H-2 / CO比和LHV是为稳定通过费-托法生产碳氢化合物或生产能源的最佳操作条件而计算的参数。此外,从环境的角度出发,气化过程产生的二氧化碳净排放量对于选择最佳运行条件也很重要。所得结果表明,对于两种气化剂,在高温下均有利于H-2和CO的产生,而在低温时则有利于CH4和CO2的产生。另一方面,当使用蒸汽作为气化剂时,H-2的产生较高,而当将CO2视为气化剂时,则增加了CO的形成。气化剂/生物质比的增加对CH4的产生具有负面影响,导致LHV的降低。因此,作为气化剂的蒸汽和高温有利于获得适合于费-托法的合成气,而CO 2和低气化温度提高了具有高LHV的合成气,其可用于产生能量。最后,当再次将CO2用作气化剂时,估计净CO2排放量较低。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Energy Conversion & Management 》 |2017年第5期| 211-217| 共7页
  • 作者单位

    Univ Castilla La Mancha, Dept Chem Engn, Avda Camilo Jose Cela 12, E-13071 Ciudad Real, Spain;

    Univ Castilla La Mancha, Dept Chem Engn, Avda Camilo Jose Cela 12, E-13071 Ciudad Real, Spain;

    Univ Castilla La Mancha, Dept Chem Engn, Avda Camilo Jose Cela 12, E-13071 Ciudad Real, Spain;

    Univ Castilla La Mancha, Dept Chem Engn, Avda Camilo Jose Cela 12, E-13071 Ciudad Real, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Manure; Gasification; Simulation; CO2, syngas;

    机译:肥料;气化;模拟;CO2;合成气;

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