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Supercritical water gasification of biomass: A stoichiometric thermodynamic model

机译:生物质的超临界水气化:化学计量热力学模型

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Supercritical water gasification (SCWG) of biomass was studied by means of a stoichiometric thermodynamic model. Such approach is based on reaction equilibria and it allows calculating the extent of the single reactions involved. A very simple model was proposed, involving only 6 components and 3 independent reactions. The model was validated against literature experimental data for different feedstock and it was used to understand the influence of biomass and operating conditions. The analyses allowed calculating the values of the reaction extent of water-gas shift (WGS) and CO methanation at equilibrium: a graphical approach was proposed in order to interpret the outcomes. Results showed that the influence of pressure is very limited. Moreover, it was observed that the maximum H-2 production is linked to a parameter psi, function of the H/C and O/C ratios of the feedstock. Finally, considerations about the role of WGS and methanation in the production of H-2 were traced. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:利用化学计量热力学模型研究了生物质的超临界水气化(SCWG)。这种方法基于反应平衡,并且可以计算涉及的单个反应的程度。提出了一个非常简单的模型,仅涉及6个成分和3个独立的反应。该模型已针对不同原料的文献实验数据进行了验证,并用于了解生物质和操作条件的影响。分析允许计算平衡时水煤气变换(WGS)和CO甲烷化反应程度的值:提出了一种图形方法来解释结果。结果表明,压力的影响非常有限。此外,观察到最大的H-2产量与参数psi,原料的H / C和O / C比的函数有关。最后,追溯了有关WGS和甲烷化在H-2生产中的作用的考虑。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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