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首页> 外文期刊>International journal of hydrogen energy >Exergy analysis of glycerol steam reforming in a heat recovery reactor
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Exergy analysis of glycerol steam reforming in a heat recovery reactor

机译:热回收反应器中甘油蒸汽重整的透视分析

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A detailed exergy analysis was performed for the steam reforming process of glycerol by means of a series of experiments in a bench scale apparatus. The reforming was conducted in a fixed bed reactor, which operated in heat recovery mode by extracting the demanded energy from hot exhaust gases provided by a diesel engine. In order to determine the role of the main operational parameters into the exergy efficiency of the studied process, the experiments were carried out with glycerol feed concentrations in water ranging from 10% up to 90% weight, whereas the outlet reactor temperature was varied from 600 degrees C up to 800 degrees C. Detailed exergy balances revealed a compromise between the exergy destruction within the reforming reactor and liquid separator versus the exergy losses associated to the tar and char outputs. This trade-off was favourable to the 50% and 70% glycerol feed concentration regimes and plateaus of about 74% exergy efficiency and 24 MJ/kg dry syngas exergy content were verified from 650 to 800 degrees C reactor temperatures. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过在板凳刻度装置中的一系列实验,对甘油的蒸汽重整过程进行了详细的探测分析。通过从柴油发动机提供的热废气中提取所需的能量,在固定床反应器中进行重整。为了确定主要操作参数的作用进入所研究的过程的漏洞效率,实验与甘油进料浓度的水,从10%高达90%重量,而出口反应器温度从600变化高达800℃的程度C.详细的低级余额显示了重整反应器和液体分离器内的漏极破坏之间的折衷,而液体分离器与焦油和焦炭输出相关的漏洞。该权衡有利于50%和70%的甘油饲料浓度制度,并高达约74%的高度效率,24 MJ / kg干合合成气验证了650至800摄氏度的反应器温度。 (c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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