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Thermodynamic assessment of membrane-assisted chemical looping reforming of glycerol

机译:甘油膜辅助化学循环重整热力学评估

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Chemical looping reforming (CLR) as an extension of chemical looping combustion uses less oxygen carriers to achieve hydrogen production via partial oxidation of fuel. Membrane hydrogen separation can promote hydrogen production and makes it possible to low-temperature reforming. In this work, the CLR performance of glycerol with membrane hydrogen separation is investigated by means of thermodynamic analysis. On the basis of the Gibbs free energy minimization method, the sensitivity of the CLR performance with membrane separation to operating parameters is evaluated. The results show that membrane separation can promote hydrogen production at the cost of more heat requirement. The reaction of oxygen carriers cannot achieve auto-thermal conditions of the system. The integration of sorption-enhanced and membrane separation in the CLR of glycerol is further examined.
机译:化学环循环重整(CLR)作为化学循环燃烧的延伸,使用较少的氧载体通过部分氧化燃料来实现氢生产。 膜氢分离可以促进氢气产生并使其成为可能的低温重整。 在这项工作中,通过热力学分析研究了甘油与膜氢分离的CLR性能。 在GIBBS自由能量最小化方法的基础上,评估CLR性能与膜分离与操作参数的敏感性。 结果表明,膜分离可以以更高的热量要求促进氢生产。 氧载体的反应不能达到系统的自动热条件。 进一步研究了甘油的CLR中吸附增强和膜分离的整合。

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