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Hydrogen and power generation from supercritical water reforming of glycerol and pressurized SOFC integrated system: Use of different CO_2 adsorption process

机译:甘油和加压SOFC集成系统的超临界水重整制氢和发电:使用不同的CO_2吸附工艺

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摘要

The performance analysis of an integrated system of glycerol supercritical water reforming and pressurized SOFC was presented. The use of different CO2 adsorption processes that include in situ and ex situ processes was compared to determine the suitable process for hydrogen and power generations. The influence of operating condition, e.g., temperature and pressure of reformer, supercritical water to glycerol (S/G) molar ratio, and calcium oxide to glycerol (CaO/G) molar ratio was examined. Then, the electrical performance of each integrated process was considered with respect to the SOFC conditions comprising temperature, pressure, and current density. The simulation results revealed that both processes have same favourable conditions for temperature and pressure operated at 800 degrees C and 240 atm, respectively. The suitable S/G and CaO/G molar ratios for in situ process are 10 and 2 whereas those for ex situ process are 20 and 1. Under these conditions, maximum hydrogen can be achieved as 87% and 75% for in situ and ex situ processes, respectively. When both integrated processes are operated at the optimal SOFC conditions as 900 degrees C, 4 atm, and current density of 10,000 A/m(2), the SOFC efficiency of 71.56% and 62.12% can provide for in situ and ex situ processes, respectively. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:提出了甘油超临界水重整与加压SOFC一体化系统的性能分析。比较了包括原位和异位过程在内的不同CO2吸附过程的使用,以确定适合氢气和发电的过程。研究了操作条件例如重整器的温度和压力,超临界水与甘油(S / G)的摩尔比以及氧化钙与甘油(CaO / G)的摩尔比的影响。然后,针对包括温度,压力和电流密度在内的SOFC条件,考虑了每个集成过程的电气性能。仿真结果表明,两种工艺对于分别在800摄氏度和240大气压下工作的温度和压力具有相同的有利条件。原位工艺的合适S / G和CaO / G摩尔比为10和2,而异位工艺的S / G和CaO / G摩尔比为20和1。在这些条件下,原位和异质的最大氢含量分别为87%和75%分别为原位过程。当两种集成工艺都在最佳SOFC条件(例如900摄氏度,4个大气压,电流密度为10,000 A / m(2))下运行时,SOFC效率为71.56%和62.12%可以提供原位和异位工艺,分别。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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