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Capacitive carbon and electrochemical lead electrode systems at the negative plates of lead-acid batteries and elementary processes on cycling

机译:铅酸电池负极板上的电容碳和电化学铅电极系统以及循环的基本过程

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摘要

Batteries in hybrid electric vehicles operate in High-Rate Partial-State-of-Charge (HRPSoC) cycling duty. To make lead-acid batteries suitable for this duty, carbon is added to the negative active material. As a result of this technological change, two electrical systems form at the negative plates: (a) a capacitive carbon system comprising high-rate charging and discharging of the electric double layer; low Ah capacity, and (b) a lead electrochemical system, comprising oxidation of Pb to PbSO_4 during discharge and vice versa during charge; this system is slow to accept charge, but has high Ah capacity. Through cycling lead-acid cells under HRPSoC conditions with short current pulses of various durations we have established that the processes involved in the capacitive system proceed highly reversibly and complete hundreds of thousands HRPSoC cycles. The number of cycles achieved by the electrochemical system is limited to tens of thousands and lead to progressive sulfation. Carbon added to the negative active material changes the latter's structure. The specific surface of NAM increases and the median pore radius decreases. Some carbon additives may reduce the radius of the pores in NAM to membrane sizes, which may change the chemistry of the electrochemical system.
机译:混合动力电动汽车中的电池以高速率部分充电状态(HRPSoC)循环工作。为了使铅酸电池适合此用途,将碳添加到负极活性物质中。由于这项技术的变化,在负极板上形成了两个电气系统:(a)包括对双电层进行高速充电和放电的电容碳系统;低Ah容量,以及(b)铅电化学系统,包括在放电过程中Pb氧化为PbSO_4,在充电过程中反之亦然;该系统接受电荷的速度较慢,但​​具有较高的Ah容量。通过在各种持续时间的短电流脉冲下在HRPSoC条件下循环铅酸电池,我们已经确定,电容系统中涉及的过程高度可逆地进行,并完成了数十万个HRPSoC周期。电化学系统实现的循环数限制为数万,并导致逐步硫酸化。添加到负极活性物质中的碳会改变负极的结构。 NAM的比表面积增加,中值孔径减小。一些碳添加剂可能会将NAM中的孔半径减小到膜尺寸,这可能会改变电化学系统的化学性质。

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