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Carbon-Fuelled Solid Oxide Cells for Military Applications

机译:军用碳素固体氧化物电池

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We are evaluating the suitability of solid oxide cells for efficient power generation from carbons delivered as solids to the anode space in order to satisfy the requirements of military applications such as waste-to-energy and portable power. Ample evidence in the literature testifies to the feasibility of this concept. In order to de-risk a portable battery system based on this concept, consideration is given in this paper to the anode type, gasification rate of carbons, heat and mass transfer within the cell and the control of a complete system. A palladium-based anode is preferred for operation of a cell with carbon adjacent to the anode since the electrical performance is higher and it is more resistant to oxidation under fuel starved conditions than traditional nickel anodes. There is ample experimental evidence that carbon can gasify in CO_2 at sufficient rate to support operation of a battery system based on cells bearing these anodes. In fact, cell modelling suggests it is the activity of the anode that is limiting. There are significant heat and mass transfer effects within the components of the cell, but these may not prevent the achievement of sufficient electrical performance to enable a portable system. System modelling suggests such a system at the 150 W scale and equipped with enough carbon for 12 hour operation could be 48% efficient.
机译:我们正在评估固态氧化物电池从以固体形式输送到阳极空间的碳有效发电的适用性,以满足军事应用的需求,例如废物转化为能源和便携式电源。文献中有大量证据证明了该概念的可行性。为了降低基于此概念的便携式电池系统的风险,本文考虑了阳极类型,碳的气化速率,电池内的热量和质量传递以及整个系统的控制。钯基阳极优选用于碳与阳极相邻的电池的操作,因为与传统的镍阳极相比,其电性能更高并且在燃料短缺的条件下更耐氧化。有大量的实验证据表明,碳可以以足够的速率在CO_2中气化,以支持基于带有这些阳极的电池的电池系统的运行。实际上,电池建模表明,限制阳极活性的是阳极。电池组件内部存在显着的传热和传质效果,但这些效果可能不会阻止实现足以实现便携式系统的电气性能。系统建模表明,这种150 W规模的系统并配备足够的碳以供12小时运行,其效率可能为48%。

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  • 来源
    《Fuel Cell Seminar Exposition》|2012年|141-153|共13页
  • 会议地点 Uncasville CT(US)
  • 作者单位

    Defence Science Technology Laboratory Porton Down Salisbury Wiltshire UK;

    School of Chemistry St Andrews University St Andrews Fife Scotland UK;

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