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Recent Developments of Semi-fuel Cells for Powering Underwater Sensors and Platforms

机译:用于水下传感器和平台的半燃料电池的最新发展

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This paper studies two novel galvanic cells and postulates their use in underwater power applications. One couples aluminum to sodium peroxide (Al-Na_aO_2) and the other to a chlorinated halamine (Al-C_3N_3Cl_3O_3). Experimental results show that the chemistries are capable of providing good specific energies. The results from small cells showed a specific energy (SE) of 200 Wh/kg,~1 (~ 300 Wh/kg, if the packaging is not considered) for the Al-halamine cell. The SE of Al-alkali peroxide was found to be approximately 230 Wh/kg (460 Wh/kg, considering only active materials). Interestingly, latest results indicate that it is possible to increase the current of a given cell by using high surface area electrodes. Results using high surface area, porous, foam-like materials are estimated and show promising results their use in semi-fuel cell schemes (SE on the order of 0.5 kWh/Kg).
机译:本文研究了两种新型原电池,并假定它们在水下电力应用中的使用。一种将铝与过氧化钠(Al-Na_aO_2)偶联,另一种与氯化卤胺(Al-C_3N_3Cl_3O_3)偶联。实验结果表明,这些化学物质能够提供良好的比能。小型电池的结果显示,铝卤胺电池的比能(SE)为200 Wh / kg,〜1(如果不考虑包装,约为300 Wh / kg)。发现碱金属过氧化物的SE为约230Wh / kg(460Wh / kg,仅考虑活性材料)。有趣的是,最新结果表明可以通过使用高表面积电极来增加给定电池的电流。估计了使用高表面积,多孔,泡沫状材料的结果,并显示了将其用于半燃料电池方案(SE约为0.5 kWh / Kg)的结果。

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