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A comprehensive energy-exergy-based assessment and parametric study of a hydrogen production process using steam glycerol reforming

机译:基于能量-火能的综合评估和使用蒸汽甘油重整制氢工艺的参数研究

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摘要

Various assessment tools are applied to comprehensively investigate a glyceroi-to-hydrogen production system. These tools investigate the chemical reactions, design and simulate the entire hydrogen production process, study the energetic and exergetic performances and perform parametric analyses (using intuitive and design of experiment-based methods). Investigating the chemical reaction of steam glycerol reforming reveals that the optimal conditions, determined based on maximizing the hydrogen production while minimizing the methane and carbon monoxide contents and coke formation, can be achieved at a reforming temperature and a water-to-glycerol feed ratio (WGFR) of 950 K and 9, respectively. The thermal and exergetic efficiencies of the resulting process are 66.6% and 59.9%, respectively. These findings are lower than those cited in the literature and relative to other reformates (methane, ethanol and methanol). The parametric investigation indicates that the performance of the process (energetic and exergetic) could be ensured by using an appropriate and judiciously selected combination of the reactor temperature and WGFR. Based on the parametric energetic and exergetic investigation, WGFR = 6 and T = 1100 K appear to be the most accurate parameters for the entire glycero1-to-hydrogen process. For this recommend configuration, the thermal and exergetic efficiencies are 78.1% and 66.1%, respectively.
机译:应用了各种评估工具来全面研究甘油制氢系统。这些工具研究化学反应,设计和模拟整个制氢过程,研究高能和高能性能以及进行参数分析(使用直观的实验方法和设计方法)。对蒸汽甘油重整的化学反应进行的研究表明,在重整温度和水与甘油进料比的条件下,可以实现最佳条件,该条件是基于最大程度地制氢,最小化甲烷和一氧化碳含量和焦炭形成而确定的( WGFR)分别为950 K和9。所得过程的热效率和热效率分别为66.6%和59.9%。这些发现低于文献中引用的发现,并且相对于其他重整产品(甲烷,乙醇和甲醇)而言。参数研究表明,可以通过使用反应堆温度和WGFR的适当和明智选择的组合来确保过程的性能(高能和高能)。基于参数化的能量和能量研究,WGFR = 6和T = 1100 K似乎是整个甘油1制氢过程中最准确的参数。对于此推荐配置,热效率和热效率分别为78.1%和66.1%。

著录项

  • 来源
    《Energy 》 |2014年第1期| 473-483| 共11页
  • 作者单位

    Unite de Recherche Catalyse et Materiaux pour l'Environnement et les Procedes URCMEP (UR11ES85), Ecole Nationale d'Ingenieurs de Gabes, Universite de Gabes, Rue Omar Ibn Alkhattab, 6029 Gabes, Tunisia;

    Unite de Recherche Catalyse et Materiaux pour l'Environnement et les Procedes URCMEP (UR11ES85), Ecole Nationale d'Ingenieurs de Gabes, Universite de Gabes, Rue Omar Ibn Alkhattab, 6029 Gabes, Tunisia;

    Unite de Recherche Catalyse et Materiaux pour l'Environnement et les Procedes URCMEP (UR11ES85), Ecole Nationale d'Ingenieurs de Gabes, Universite de Gabes, Rue Omar Ibn Alkhattab, 6029 Gabes, Tunisia,Uxboratoire Reactions et Genie des Procedes - CNRS, Universite de Lorraine, 1, rue Grandville, BP 20451, 54001 Nancy cedex, France;

    Uxboratoire Reactions et Genie des Procedes - CNRS, Universite de Lorraine, 1, rue Grandville, BP 20451, 54001 Nancy cedex, France;

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

    Hydrogen; Glycerol; Simulation; Energy-exergy assessment; Design of experiment;

    机译:氢;甘油;模拟;能量-能量评估;实验设计;

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