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Supercritical Gasification of Biomass: Thermodynamics Analysis with Gibbs Free Energy Minimization

机译:生物质的超临界气化:吉布斯自由能最小化的热力学分析

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摘要

Gasification of biomass in supercritical water is a successful technology for hydrogen production especially by using wet biomass. The whole process, from feeding to purification of hydrogen, consists of a lot of equipment, such as pumps, heat exchangers, heaters, reactors, etc. Because the main reactions take place in the gasification reactor, the gasifier is the most important equipment of the process. In this article, a thermodynamic model, including chemical equilibrium in the reactor that is based on Gibbs free energy minimization, is developed to estimate equilibrium composition for gasification of biomass in supercritical water for hydrogen production.For this analysis, we use three types of equations of state, including Peng-Robinson, statistical associating fluid theory equation of state, and a new equation of state.We consider glucose as a model of real biomass. The results of each equation of slate are compared with the experimental data. The predicted results show good agreement with the experimental data and it shows that the product gases consist of hydrogen and carbon dioxide more often and methane and carbon monoxide less often.Finally, effects of temperature, pressure, and feedstock concentration are investigated on amount of hydrogen production.
机译:在超临界水中气化生物质是一种成功的制氢技术,尤其是通过使用湿生物质。从加氢到提纯氢气的整个过程由许多设备组成,例如泵,热交换器,加热器,反应器等。由于主要反应发生在气化反应器中,因此气化炉是最重要的设备。过程。本文建立了一个热力学模型,包括基于Gibbs自由能最小化的反应器中的化学平衡,以估算用于生产氢气的超临界水中生物质气化的平衡组成。为此,我们使用三种类型的方程式状态,包括Peng-Robinson,统计联想流体理论状态方程和新的状态方程。我们将葡萄糖视为真实生物量的模型。将每个方程式的结果与实验数据进行比较。预测结果与实验数据吻合良好,表明产物气体中氢和二氧化碳的含量较高,甲烷和一氧化碳的含量较低。最后,研究了温度,压力和原料浓度对氢含量的影响。生产。

著录项

  • 来源
    《Energy sources》 |2012年第4期|p.163-176|共14页
  • 作者单位

    Department of Energy Engineering, Sharif University of Technology,Tehran, Iran;

    Department of Chemical and Petroleum Engineering, Amirkabir University of Technology, Tehran, Iran;

    Chemical and Petroleum Engineering Department, Sharif University of Technology, Azadi Street, Tehran, 11365-6891, Iran Institute for Nano-science and Nano-technology, Sharif University of Technology, Tehran, Iran;

    Department of Energy Engineering, Sharif University of Technology,Tehran, Iran;

    Department of Energy Engineering, Sharif University of Technology,Tehran, Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomass; equation of state; Gibbs free energy minimization; SCWG; thermodynamic;

    机译:生物质状态方程吉布斯自由能最小化;SCWG;热力学;

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