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吴震

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个人简介

教授,博导,西安交通大学青年拔尖人才(A类),化工机械所所长和支部书记。

研究方向为固态储氢与燃料电池,牵头主持国家重点研发计划重点专项项目(2项)、国家重大科技专项项目任务(1项)、国家自然科学基金项目(3项)等国家级项目6项以及陕西省重点研发计划专项项目(3项)等省部级项目10余项。

一作或通讯作者在Chemical Reviews、Journal of Energy Chemistry等期刊发表论文80余篇,获中国发明创业奖成果奖二等奖(第一完成人)、陕西省石化科学技术一等奖、中国发明创业奖人物奖等。


论文成果

Modeling of a novel SOFC-PEMFC hybrid system coupled with thermal swing adsorption for H2 purification: Parametric and exergy analyses

发布时间:2025-04-30  点击次数:

发布时间:2025-04-30

论文名称:Modeling of a novel SOFC-PEMFC hybrid system coupled with thermal swing adsorption for H2 purification: Parametric and exergy analyses

发表刊物:Energy Conversion and Management

摘要:A novel hybrid system fueled with natural gas (NG), consisting of solid oxide fuel cell (SOFC), proton exchange
membrane fuel cell (PEMFC) and gas processing (GP) subsystem for H2 production and purification, is proposed
and modeled in this paper. The combination of water gas shift (WGS) and thermal swing adsorption (TSA)
methods is adopted to convert the syngas from the SOFC into H2 with high purity for subsequent use as a fuel in
PEMFC for additional power generation. The parametric and exergy analyses show that the proposed hybrid
system can achieve high energy conversion efficiency of approximately 64% and exergy efficiency of 61%, which
are higher than some other fuel cell systems, such as reformer-PEMFC, standalone SOFC, SOFC-engine/gas
turbine and SOFC-chemical looping hydrogen production. The waste heat recovery for driving the TSA reaction
and the H2 recirculation for the PEMFC are found to improve the net electricity efficiency by 3.24% and 6.33%,
respectively. In addition, using TSA method instead of the traditional pressure swing adsorption (PSA) could
improve the efficiency of the SOFC-PEMFC hybrid system without increasing the exergy destruction. These
results reveal that the novel hybrid system is a promising energy conversion system with high efficiency.

合写作者:Zhen Wu, Zaoxiao Zhang, Meng Ni*

卷号:174

页面范围:802-813

是否译文:否

发表时间:2018-08-18

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