Study on Optimal Configuration of Hydrogen Energy Storage IES with Dual-fuel Cells

W. Cao, Deman Zhai, Junli Zhang, Haiwei Sha, Zhenquan Wang, Q. Han
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Abstract

Hydrogen energy storage integrated energy system (IES) can achieve large-scale conversion of renewable energy through electrolysis hydrogen production, and obtain considerable carbon emission reduction benefits through the application of fuel cell technology. However, the performance of traditional single fuel cell system is limited by the operating characteristics of fuel cells. In this paper, a dual-fuel cells hydrogen energy storage integrated energy system combining SOFC and PEMFC was proposed to leverage the complementary advantages of the two fuel cells. In order to ensure the coordinated operation of all the devices, with economy as the goal, the capacity of devices in the system, especially the hydrogen energy storage unit and two kinds of fuel cells, was optimized by considering the annual investment cost, operation and maintenance cost, energy purchase cost and carbon emission cost. The results of case study showed that there was an optimal capacity configuration for dual-fuel cells, which was more economical than the two fuel cells alone. Finally, through sensitivity analysis, the key factors affecting the optimal configuration of hydrogen energy storage unit and dual-fuel cells were pointed out. In dual-fuel cells system, the capacity of hydrogen storage unit and SOFC increased with the increase of electricity price and decreased with the increase of natural gas price, while the capacity of PEMFC configuration was less affected by the purchase price. At the same time, the installed capacity of renewable energy would significantly increase the configured capacity of hydrogen energy storage units, and the capacity change trend for PEMFC and SOFC was opposite.
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双燃料电池储氢系统优化配置研究
氢储能集成能源系统(IES)可以通过电解制氢实现可再生能源的大规模转化,并通过燃料电池技术的应用获得可观的碳减排效益。然而,传统的单燃料电池系统的性能受到燃料电池自身工作特性的限制。为了充分利用SOFC和PEMFC两种燃料电池的互补优势,本文提出了一种结合SOFC和PEMFC的双燃料电池储氢集成能源系统。为保证各设备的协调运行,以经济性为目标,综合考虑年投资成本、运行维护成本、购能成本和碳排放成本,对系统中各设备,特别是储氢单元和两种燃料电池的容量进行优化。实例分析结果表明,双燃料电池存在最优容量配置,其经济性优于单使用双燃料电池。最后,通过灵敏度分析,指出了影响储氢单元和双燃料电池优化配置的关键因素。在双燃料电池系统中,储氢单元和SOFC的容量随电价的升高而增大,随天然气价格的升高而减小,而PEMFC配置的容量受电价影响较小。同时,可再生能源的装机容量将显著增加氢储能单元的配置容量,而PEMFC和SOFC的容量变化趋势相反。
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