火用
吸收式制冷机
聚光镜(光学)
工艺工程
木材气体发生器
质子交换膜燃料电池
可用能
热交换器
可再生能源
废物管理
余热
工程类
环境科学
机械工程
化学工程
制冷
电气工程
燃料电池
煤
物理
光源
光学
作者
Nan Xie,Zhenyu Xiao,Wei Du,Chengwei Deng,Zhiqiang Liu,Sheng Yang
出处
期刊:Energy
[Elsevier BV]
日期:2022-09-28
卷期号:262: 125595-125595
被引量:28
标识
DOI:10.1016/j.energy.2022.125595
摘要
This work investigates an integrated system consisting of biomass gasification process, proton exchange membrane fuel cell (PEMFC) and absorption chiller. The proposed system is studied from the energetic and exergoeconomic point of view. In addition, parametric analysis and uncertainty analysis are carried out to investigate the effects of four key operational parameters and three uncertain parameters. System energy efficiency and exergy efficiency are obtained as 57.41% and 18.07%, respectively. 21.46% of the electricity production is consumed by auxiliary components of the PEMFC stack. Largest exergy destruction is in the gasifier and the stack, due to significant irreversibility of chemical/electrochemical reactions. Exergoeconomic results indicate that in the selective oxidation process, investment cost is much higher than the cost rate of exergy destruction. While gasifier, anode/cathode heat exchangers and humidifiers, condenser, solution heat exchangers and valves have poor exergetic performance. High current density, operation temperature and moisture content are unfavorable for exergy efficiency. Extension of operation life, lower interest rate and lower maintenance factor can guarantee a desired system exergoeconomic performance. This research provides pragmatic information about thermodynamic and exergoeconomic performance of this integrated system. Obtained results are important for system design and operational optimization on various PEMFC coupled polygeneration systems.
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