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Thermodynamic Model for Updraft Gasifier with External Recirculation of Pyrolysis Gas

机译:裂解气外部再循环的上浮式气化炉热力学模型

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摘要

Most of the thermodynamic modeling of gasification for updraft gasifier uses one process of decomposition (decomposition of fuel). In the present study, a thermodynamic model which uses two processes of decomposition (decomposition of fuel and char) is used. The model is implemented in modification of updraft gasifier with external recirculation of pyrolysis gas to the combustion zone and the gas flowing out from the side stream (reduction zone) in the updraft gasifier. The goal of the model obtains the influences of amount of recirculation pyrolysis gas fraction to combustion zone on combustible gas and tar. The significant results of modification updraft are that the increases amount of recirculation of pyrolysis gas will increase the composition of H_2 and reduce the composition of tar; then the composition of CO and CH_4 is dependent on equivalence ratio. The results of the model for combustible gas composition are compared with previous study.
机译:上流式气化炉的大多数气化热力学模型都使用一种分解过程(燃料分解)。在本研究中,使用了使用两个分解过程(燃料和炭的分解)的热力学模型。该模型是在上气流式气化炉的改造中实现的,其中热解气体在外部循环到燃烧区,气体从上气流式气化炉的侧流(还原区)流出。该模型的目标获得了可燃气体和焦油对燃烧区的再循环热解气馏分量的影响。改性上升气流的显着结果是:热解气体再循环量的增加将增加H_2的组成,并降低焦油的组成。那么CO和CH_4的组成取决于当量比。将可燃气体成分模型的结果与以前的研究进行了比较。

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  • 来源
    《Journal of combustion》 |2016年第2016期|9243651.1-9243651.6|共6页
  • 作者单位

    Department of Mechanical Engineering, Faculty of Engineering Universitas Sriwijaya, Jalan Raya Palembang - Prabumulih km 32, Indralaya, Ogan Ilir, Sumatera Selatan 30662, Indonesia;

    Department of Mechanical Engineering Faculty of Engineering Universitas Indonesia, Kampus Baru UI Depok, Jawa Barat 16424, Indonesia;

    Department of Mechanical Engineering Faculty of Engineering Universitas Indonesia, Kampus Baru UI Depok, Jawa Barat 16424, Indonesia;

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  • 正文语种 eng
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