Significant Development Potential of the Solid Oxide Fuel Cell for the Technical Progress of the Marine Main Propulsion Plant in the Context of Energy Conservation and Emission Reduction

Xiaoyu Wang, Jianzhong Zhu, Minfang Han
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Abstract

The International Maritime Organization (IMO) has proposed a series of strict pollutant emission regulations and carbon emission reduction targets, and the shipping industry is seeking new types of the marine main propulsion plant with advantages of high-efficiency and low-emission. Among the possible alternatives, the marine electric propulsion technology whose electric power source is fuel cell has gained sufficient attentions. At present, the worldwide research of the marine applications for fuel cell supplying propulsion power focuses more on the proton exchange membrane fuel cell (PEMFC) with low power instead of other types of fuel cell, and a series of research projects have achieved concrete results such as the industrialized marine fuel cell system or practical demonstration application. But the development trends of the application of the marine fuel cell supplying propulsion power are from the small boat to the great ship, from the navigating zone with low environmental complexity such as coastal water, inland waters to the ocean with complex navigation conditions. Thus, the power demand of the marine fuel cell in the future will show steady growth, which will create more development opportunities for the solid oxide fuel cell (SOFC) with the advantages of higher power, greater efficiency, long life span and fuel diversity. Although some challenges exist, the solid oxide fuel cell with significant development potential can certainly lead the technical progress of the marine main propulsion plant in the context of energy conservation and emission reduction.
固体氧化物燃料电池在节能减排背景下促进船舶主推进装置技术进步的巨大发展潜力
国际海事组织(IMO)提出了一系列严格的污染物排放法规和碳减排目标,航运业正在寻求具有高效、低排放优势的新型船用主推进装置。在可能的替代方案中,以燃料电池为电力来源的船用电力推进技术得到了足够的重视。目前,世界范围内对燃料电池提供推进动力的海洋应用研究更多集中在低功率的质子交换膜燃料电池(PEMFC)上,而非其他类型的燃料电池,一系列研究项目已取得了具体成果,如工业化的海洋燃料电池系统或实际示范应用。但船用燃料电池提供推进动力的应用发展趋势是从小船到大船,从近海、内陆水域等环境复杂度较低的航行区域到航行条件复杂的海洋。因此,未来船用燃料电池的功率需求将呈稳步增长趋势,这将为具有更高功率、更高效率、更长寿命和燃料多样性等优势的固体氧化物燃料电池(SOFC)创造更多的发展机会。尽管还存在一些挑战,但发展潜力巨大的固体氧化物燃料电池必将引领节能减排背景下船舶主推进装置的技术进步。
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