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A Method for Fully Utilizing the Residual Energy in Used Batteries

机译:一种用于充分利用废旧电池残留能量的方法

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Non-rechargeable batteries are often discarded when their voltages cease to support the normal operations of electronic or electrical devices. By connecting a sufficiently large number of used batteries in series, the combined output voltage becomes operable, allowing for further drainage of the residual energy from these batteries. In this study, the discharge behaviors of primary alkaline batteries were characterized. The experimental results showed that batteries connected in series discharged non-uniformly. A "weakest-link" phenomenon was observed in that one battery discharged faster than others until it rendered the entire battery bank inoperable. This unconventional voltage supply required additional circuitries for regulation and/or protection to handle the relatively wide range of output voltage. Nevertheless, the concept of draining the residual energy by stacking up multiple used batteries is feasible. The method prolongs the service life of primary batteries and should lead to applications that benefit economy as well as environment. The potential extensions to this method are also discussed.
机译:当其电压不再支持电子或电气设备的正常运行非充电电池将会被放弃。通过串联连接的足够大的数目的废旧电池,组合输出电压变得可操作,允许从这些电池的剩余能量的进一步排水。在这项研究中,一次碱性电池的放电行为进行了表征。实验结果表明,串联连接的电池放电不均匀。观察到“最薄弱的链接”的现象在于,一个电池放电快于其他,直到它呈现的整个电池组失效。这种非常规的电压供给所需的调节和/或保护,以处理相对宽范围的输出电压的附加电路系统。尽管如此,通过堆叠多台废旧电池排出的剩余能量的概念是可行的。该方法延长原电池的使用寿命,应导致应用程序受益经济以及环境。这种方法的潜在的扩展进行了讨论。

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