直接氨燃料固体氧化物燃料电池:挑战、机遇及未来展望

Molla Asmare, M. Ilbas
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引用次数: 11

摘要

如今,我们面临的最具决定性的挑战是完全清洁的能源,以实现公平和可持续的现代能源获取,以及与正在出现的气候变化作斗争。这是因为,富含碳的燃料是加强人类社会利用能源的基本供应,而且在不久的将来将持续下去。与此相关,电化学技术是一种新兴的、霸道的工具,可以有效地将现有稀缺的化石燃料和可再生能源转化为电能,对环境的影响很小。与传统发电技术相比,高温SOFC正在成为将燃料化学能转化为电能的领跑者,并且允许各种燃料的部署,而对生态的破坏可以忽略不计。根据这篇综述,直接氨是t - sofc的主要可能选择和价格有效的绿色燃料。这是因为t - sofc具有更高的体积功率密度,机械稳定性和高热震性。也没有密封问题,这是平面问题的长期问题。因此,如果在操作过程中可能发生泄漏,则将用作燃料的氨的毒性降至最低。它便于携带和管理,当有能源需求时,可以在任何地方工作。此外,氢气的制造、车载氢沉积、运输基础设施等方面的问题也将用氨来解决。氨是一种价格低廉的碳中性能源,与氢相比,它储存的体积能量更多。然而,要在t - sofc中使用直接NH3作为载氢手段和替代绿色燃料,实际确定最佳工作温度、反应物流速、电极孔隙率、压力、阳极位置、管的厚度和直径仍需要进一步改进。因此,在规划实验工作之前,应该建立数学模型来确定这些参数。此外,还将研究直接NH3驱动的AS、ES和CS- T-SOFC的性能比较,并将仔细选择最佳支持用于实际实施,并根据数值模拟获得的最佳参数值进行实验研究以进行验证。
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Direct ammonia fueled solid oxide fuel cells: A comprehensive review on challenges, opportunities and future outlooks
Nowadays, the most decisive challenges we are fronting are perfectly clean energy making for equitable and sustainable modern energy access, and battling the emerging alteration of the climate. This is because, carbon-rich fuels are the fundamental supply of utilized energy for strengthening human society, and it will be sustained in the near future. In connection with this, electrochemical technologies are an emerging and domineering tool for efficiently transforming the existing scarce fossil fuels and renewable energy sources into electric power with a trivial environmental impact. Compared with conventional power generation technologies, SOFC that operate at high temperature is emerging as a frontrunner to convert the fuels chemical energy into electric power and permits the deployment of varieties of fuels with negligible ecological destructions. According to this critical review, direct ammonia is obtained as a primary possible choice and price-effective green fuel for T-SOFCs. This is because T-SOFCs have higher volumetric power density, mechanically stable, and high thermal shocking resistance. Also, there is no sealing issue problem which is the chronic issues of the planar one. As a result, the toxicity of ammonia to use as a fuel is minimized if there may be a leakage during operation. It is portable and manageable that can be work everywhere when there is energy demand. Besides, manufacturing, onboard hydrogen deposition, and transportation infrastructure connected snags of hydrogen will be solved using ammonia. Ammonia is a low-priced carbon-neutral source of energy and has more stored volumetric energy compared with hydrogen. Yet, to utilize direct NH3 as a means of hydrogen carrier and an alternative green fuel in T-SOFCs practically determining the optimum operating temperatures, reactant flow rates, electrode porosities, pressure, the position of the anode, thickness and diameters of the tube are still requiring further improvement. Therefore, mathematical modeling ought to be developed to determine these parameters before planning for experimental work. Also, a performance comparison of AS, ES, and CS- T-SOFC powered with direct NH3 will be investigated and best-performed support will be carefully chosen for practical implementation and an experimental study will be conducted for verification based on optimum parameter values obtained from numerical modeling.
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来源期刊
International Journal of Energy Technology and Policy
International Journal of Energy Technology and Policy Social Sciences-Geography, Planning and Development
CiteScore
1.50
自引率
0.00%
发文量
16
期刊介绍: The IJETP is a vehicle to provide a refereed and authoritative source of information in the field of energy technology and policy.
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