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Significance of the Capacity Recovery Effect in Pouch Lithium-Sulfur Battery Cells

机译:袋锂 - 硫电池电池容量恢复效应的重要性

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Lithium-Sulfur (Li-S) batteries are an emerging energy storage technology, which is technically-attractive due to its high theoretical limits; practically, it is expected that Li-S batteries will result into lighter energy storage devices with higher capacities than traditional Lithium-ion batteries. One of the actual disadvantages for this technology is the highly pronounced rate capacity effect, which reduces the available capacity to be discharged when high currents are used. This drawback might be addressed by the use of the capacity recovery effect, which by introducing relaxation periods between consecutive pulse discharges of the battery, increases the available discharge capacity of the cell. The capacity recovery effect of the Li-S cell is studied in this paper using the pulse discharge technique, considering its dependence on the applied current, discharge step length, temperature, and on the length of the relaxation period between the discharging pulses.
机译:锂 - 硫(LI-S)电池是一种新兴储能技术,这是由于其高理论限制而导致的技术上吸引力;实际上,预计Li-S电池将导致具有比传统锂离子电池更高的容量的更轻的能量存储装置。该技术的实际缺点之一是高音率的速率效应,这减少了当使用高电流时放电的可用容量。通过使用容量恢复效果可以解决该缺点,这通过引入电池的连续脉冲放电之间的松弛周期,增加了小区的可用放电容量。利用脉冲放电技术在本文中研究了LI-S电池的容量恢复效果,考虑到其对施加的电流,放电步长,温度和放电脉冲之间的松弛时段的长度的依赖性。

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