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首页> 外文期刊>International journal of hydrogen energy >Optimal design of different reforming processes of the actual composition of bio-oil for high-temperature PEMFC systems
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Optimal design of different reforming processes of the actual composition of bio-oil for high-temperature PEMFC systems

机译:高温PEMFC系统中生物油实际组成的不同重整过程的优化设计

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摘要

Hydrogen production from bio-oil, a by-product of the pyrolysis of palm empty fruit bunches, using different reforming processes, i.e., steam reforming (SR), partial oxidation (POX) and autothermal reforming (ATR), is theoretically investigated using the actual composition of bio-oil. The effect of the reaction temperature, steam to carbon (S/C) ratio and oxygen to carbon (O/C) ratio on the hydrogen production and coke formation of the reformers is analysed. Favourable operating conditions to inhibit carbon formation, to produce low CO concentrations and to achieve high hydrogen yields for the hydrogen production processes coupled with a high-temperature water-gas shift reactor (HT-WGSR) in a high-temperature proton exchange membrane fuel cell (PEMFC) system is also investigated. The results show that an S/C ratio above two is preferred for the bio-oil steam reformer to keep the CO concentration below the maximum allowable limit of the high temperature PEMFC. However, the CO concentration in the product gas from an HTWGSR integrated with an autothermal reformer and a partial oxidation reactor is lower than the 5% limit at all temperatures (300-1000 degrees C), S/C ratios (1-2) and O/C ratios (0.3-1) considered. The efficiency of different bio-oil reforming processes integrated with high temperature PEMFC systems is studied. The highest system efficiency is achieved from the integrated system consisting of a bio-oil steam reformer, an HT-WGSR and a high temperature PEMFC with heat integration. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:理论上,研究了使用不同的重整方法,即蒸汽重整(SR),部分氧化(POX)和自热重整(ATR),从棕榈油空果束热解的副产物生物油中制氢。生物油的实际组成。分析了反应温度,水蒸气与碳(S / C)比和氧碳(O / C)比对重整器产氢和结焦的影响。良好的运行条件,可抑制碳的形成,产生低的CO浓度并在制氢过程中与高温质子交换膜燃料电池中的高温水煤气变换反应器(HT-WGSR)结合使用以实现高氢气产率(PEMFC)系统也进行了研究。结果表明,对于生物油蒸汽重整器而言,S / C比率最好高于2,以使CO浓度保持在高温PEMFC的最大允许极限以下。但是,在所有温度(300-1000摄氏度),信噪比(1-2)和温度(300-1000摄氏度)下,来自集成有自热重整器和部分氧化反应器的HTWGSR的产物气中的CO浓度均低于5%的限值。考虑的O / C比(0.3-1)。研究了与高温PEMFC系统集成的不同生物油重整过程的效率。由生物油蒸汽重整器,HT-WGSR和带热集成的高温PEMFC组成的集成系统可实现最高的系统效率。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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