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Studies of the pulse charge of lead-acid batteries for PV applications Part I. Factors influencing the mechanism of the pulse charge of the positive plate

机译:光伏用铅酸蓄电池脉冲电荷的研究第I部分。影响正极板脉冲电荷机理的因素

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The mechanism of the positive plate charge in pulse regime was studied in model lead-acid cells with one positive and two negative plates (8 Ah each) and Ag/Ag_2SO_4 reference electrodes. The results showed that the evolution of the electrode potential is much slower on the positive plate than on the negative plate. Regardless of this fact, the calculated capacitive current of charge and self-discharge of the electrochemical double layer (EDL) during the "ON" and "OFF" half-periods of the pulse current square waves is comparable with the charge current amplitude. The result is due to the high values of the EDL on the surface of the lead dioxide active material. The influence of different factors like state of charge, state of health, pulse frequency, current amplitude and open circuit stay before the polarization was discussed. The previously determined optimal frequency of 1 Hz was associated with a maximum in the average double layer current on frequency dependence. The average double layer current is also maximal at SOC between 75 and 100%. The exchange of the constant current polarization with pulse polarization does not change substantially the mechanism and the overvoltage of the oxygen evolution reaction on the positive plate. The mechanism of the self-discharge of the EDL was also estimated analyzing long-time PPP transients (up to 2h). It was found that when the PPP is lower than 1.2 V the preferred mechanism of EDL self-discharge is by coupling with the lead sulphate oxidation reaction. At higher values of PPP the EDL self-discharge happens via oxygen evolution. The high faradic efficiency of the pulse charge is due to the chemical oxidation of the Pb(II) ions by the O atoms and OH radicals formed at the oxygen evolution both during the "ON" and "OFF" periods.
机译:在带有一个正极板和两个负极板(每个8 Ah)和Ag / Ag_2SO_4参比电极的模型铅酸电池中研究了脉冲状态下正极板电荷的机制。结果表明,正极板上的电极电位的演变要比负极板上的慢得多。不管这个事实如何,在脉冲电流方波的“开”和“关”半周期期间计算出的电化学双层(EDL)的充电和自放电电容电流与充电电流幅度相当。结果是由于二氧化铅活性材料表面上的EDL值很高。在讨论极化之前,先要考虑电荷状态,健康状态,脉冲频率,电流幅度和开路等不同因素的影响。先前确定的1 Hz最佳频率与平均双层电流的最大频率相关。 SOC介于75%和100%之间时,平均双层电流也最大。恒定电流极化与脉冲极化的交换基本上不会改变正极板上氧气析出反应的机理和过电压。还通过分析长时间的PPP瞬态(长达2h)来估计EDL自放电的机制。发现当PPP低于1.2V时,EDL自放电的优选机理是通过与硫酸铅氧化反应偶联。在较高的PPP值下,EDL自放电通过放氧发生。脉冲电荷的高法拉第效率是由于在“开”和“关”期间氧释放时形成的O原子和OH自由基对Pb(II)离子的化学氧化作用。

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