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Thermodynamic study of hydrogen production from crude glycerol autothermal reforming for fuel cell applications

机译:粗甘油自热重整制氢用于燃料电池的热力学研究

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This study presents a thermodynamic analysis of hydrogen production from an autothermal reforming of crude glycerol derived from a biodiesel production process. As a composition of crude glycerol depends on feedstock and processes used in biodiesel production, a mixture of glycerol and methanol, major components in crude glycerol, at different ratios was used to investigate its effect on the autothermal reforming process. Equilibrium compositions of reforming gas obtained were determined as a function of temperature, steam to crude glycerol ratio, and oxygen to crude glycerol ratio. The results showed that at isothermal condition, raising operating temperature increases hydrogen yield, whereas increasing steam to crude glycerol and oxygen to crude glycerol ratios causes a reduction of hydrogen concentration. However, high temperature operation also promotes CO formation which would hinder the performance of low-temperature fuel cells. The steam to crude glycerol ratio is a key factor to reduce the extent of CO but a dilution effect of steam should be considered if reforming gas is fed to fuel cells. An increase in the ratio of glycerol to methanol in crude glycerol can increase the amount of hydrogen produced. In addition, an optimal operating condition of glycerol autothermal reforming at a thermoneutral condition that no external heat to sustain the reformer operation is required, was investigated.
机译:这项研究提出了对来自生物柴油生产过程的粗甘油进行自动热重整制氢的热力学分析。由于粗甘油的组成取决于生物柴油生产中使用的原料和工艺,因此使用甘油和甲醇的混合物(粗甘油中的主要成分)以不同的比例来研究其对自热重整过程的影响。确定所获得的重整气体的平衡组成与温度,蒸汽与粗甘油之比以及氧气与粗甘油之比的关系。结果表明,在等温条件下,升高操作温度会增加氢气产量,而增加蒸汽与粗甘油的比例以及增加氧气与粗甘油的比例会导致氢气浓度降低。然而,高温操作也会促进CO的形成,这将阻碍低温燃料电池的性能。蒸汽与粗甘油之比是降低CO含量的关键因素,但如果将重整气体供入燃料电池,则应考虑蒸汽的稀释作用。粗甘油中甘油与甲醇的比例增加可以增加产生的氢气量。另外,研究了在热中性条件下甘油自热重整的最佳操作条件,即不需要外部热量来维持重整器的运行。

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