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Thermodynamic analysis of steam reforming of glycerol for hydrogen production at atmospheric pressure

机译:大气压下甘油蒸汽重整热力学分析

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Thermodynamic chemical equilibrium analysis of steam reforming of glycerol (SRG) for selective hydrogen production was performed based on the Gibbs free energy minimisation method. The ideal SRG reaction (C3H8O3+ 3H(2)O - 3CO(2)+7H(2)) and a comprehensive set of side reactions during SRG are considered for the formation of a wide range of products. Specifically, this work focused on the analysis of formation of CO2, CO and CH4 in the gas phase and determination of the carbon free region in SRG under the conditions at atmospheric pressure, 600 K-1100 K and 1.013 x 10(5)-1.013 x 10(6) Pa with the steam-to-glycerol feed ratios (SGFR) of 1:5-10. The reaction conditions which favoured SRG for H-2 production with minimum coke formation were identifies as: atmospheric pressure, temperatures of 900 K-1050 K and SGFR of 10:1. The influence of using the inert carrier gas (i.e., N-2) in SRG was studied as well at atmospheric pressure. Although the presence of N-2 in the stream decreased the partial pressure of reactants, it was beneficial to improve the equilibrium yield of H-2. Under both conditions of SRG (with/without inert gas), the CH4 production is minimised, and carbon formation was thermodynamically unfavoured at steam rich conditions of SGFR 5:1.
机译:基于吉布斯自由能量最小化方法进行甘油(SRG)蒸汽重整蒸汽重整的热力学化学平衡分析。理想的SRG反应(C3H803 + 3H(2)O - > 3CO(2)+ 7h(2))和SRG期间的综合副反应被认为是形成各种产品的形成。具体地,这项工作的重点是在气相中形成CO2,CO和CH4的形成和在大气压下的条件下测定SRG中的无源区域,600 k-1100k和1.013×10(5)-1.013 X 10(6)PA具有蒸汽 - 甘油进料比(SGFR)为1:5-10。用最小焦炭形成H-2生产的SRG的反应条件鉴定为:大气压,900 k-1050k和10:1的SGFR的温度。在大气压下,在大气压下研究了使用惰性载气(即N-2)在SRG中的影响。尽管流中N-2的存在降低了反应物的分压,但有益于提高H-2的平衡产率。在SRG的两个条件下(用/不带惰性气体),CH4的产生是最小化的,并且在SGFR> 5:1的蒸汽富含蒸汽的蒸汽的蒸汽条件下热力地碳形成。

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