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首页> 外文期刊>Iranica Journal of Energy and Environment >Application of Aspen HYSYS for Predicting the Effects of Impurities on Thermodynamic Performance of Glycerol Autothermal Reforming for Hydrogen Production
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Application of Aspen HYSYS for Predicting the Effects of Impurities on Thermodynamic Performance of Glycerol Autothermal Reforming for Hydrogen Production

机译:Aspen Hysys在预测杂质对氢气产量热力学性能对氢气产生的热力学性能的应用

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摘要

Hydrogen production from glycerol via autothermal reforming (ATR) has been widely investigated. However, little is known about the influence of impurities in glycerol on thermodynamic performance of the process. This study focused on the effects of impurities in glycerol on hydrogen productivity, energetic and exergetic efficiencies. The model of the entire process was simulated under thermoneutral condition in Aspen HYSYS using pure glycerol (PG) and crude glycerol (CG) as feeds. The two cases were optimized for maximum hydrogen production. From the optimized results, the hydrogen production per mole of the feed was 4.937 and 6.160 for the case of PG and CG, respectively. The thermal and exergetic efficiency of PG as feed were computed as 79.51% and 57.04% while that of CG were obtained to be 77.7 and 54.08%, respectively. The exergy destroyed to produce 1 mole of H2 was found to be 133.5kJ and 157.3kJ for the case of PG and CG, respectively. It could be concluded that the presence of other constituents in CG contributed to increase in hydrogen productivity by increasing the energy demand of the plant but due to increase in both energy and exergy input, they decrease both the thermal and exergetic efficiencies.
机译:通过自动热再生(ATR)从甘油的氢气产生了广泛研究。然而,关于甘油中杂质在甘油中对该方法的热力学性能的影响很少。该研究侧重于甘油杂质对氢生产率,精力充沛和前进效率的影响。在使用纯甘油(PG)和粗甘油(CG)作为进料中的Aspen Hysys的ThermoNeutral renced in Thermooneutral病症下模拟了整个方法的模型。两种情况被优化以最大氢气产生。从优化的结果,对于PG和CG的情况,每摩尔进料的氢气产量分别为4.937和6.160。作为进料的PG的热量和前进效率被计算为79.51%和57.04%,而CG的含量分别为77.7和54.08%。发现以产生1摩尔H2的驱动器分别为PG和CG的情况下为133.5KJ和157.3KJ。可以得出结论,CG中的其他成分的存在导致氢生产率的增加通过提高植物的能量需求,但由于能量和漏胀投入增加,它们减少了热和前进效率。

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