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Application of aspen plus to renewable hydrogen production from glycerol by steam reforming

机译:白杨加在蒸汽重整制甘油可再生制氢中的应用

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Steam reforming is the most favored method for the production of hydrogen. Hydrogen is mostly manufactured by using steam reforming of natural gas. Due to the negative environmental impact and energy politics, alternative hydrogen production methods are being explored. Glycerol is one of the bio-based alternative feedstock for hydrogen production. This study is aimed to simulate hydrogen production from glycerol by using Aspen Plus. First of all, the convenient reactor type was determined. RPlug reactor exhibited the highest performance for the hydrogen production. A thermodynamic model was determined according to the formation of byproduct. The reaction temperature, water/glycerol molar feed ratio as reaction parameters and reactor pressure were investigated on the conversion of glycerol and yield of hydrogen. Optimum reaction parameters are determined as 500 degrees C of reaction temperature, 9:1 of water to glycerol ratio and 1 atm of pressure. Reactor design was also examined. Optimum reactor diameter and reactor length values were determined as 5 m and 50 m, respectively. Hydrogen purification was studied and 99.9% purity of H(2)was obtained at 25 bar and 40 degrees C. The obtained results were shown that Aspen Plus has been successfully applied to investigate the effects of reaction parameters and reactor sizing for hydrogen production from glycerol steam reforming. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:蒸汽重整是生产氢气最受青睐的方法。氢气主要是通过天然气的蒸汽重整来制造的。由于不利的环境影响和能源政治,正在探索其他制氢方法。甘油是用于生产氢气的生物基替代原料之一。这项研究旨在通过使用Aspen Plus模拟甘油制氢。首先,确定了方便的反应堆类型。 RPlug反应器显示出最高的制氢性能。根据副产物的形成确定热力学模型。研究了反应温度,水/甘油摩尔进料比作为反应参数和反应器压力对甘油转化率和氢气产率的影响。最佳反应参数确定为反应温度500摄氏度,水与甘油的比例为9:1和1个大气压。还检查了反应堆的设计。最佳反应器直径和反应器长度值分别确定为5 m和50 m。研究了氢气的纯化,并在25 bar和40摄氏度下获得了99.9%的H(2)纯度。获得的结果表明,Aspen Plus已成功地用于研究反应参数和反应器尺寸对甘油制氢的影响蒸汽重整。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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