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Reference Electrode Measurements, Field Experience, Use and Analysis

机译:参考电极测量,现场经验,使用和分析

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For centuries, reference electrodes have been the tool of choice for laboratory electrochemists, in their attempts to obtain a more basic understanding of fundamental electrochemical processes. In the first half of the 20th century, lead antimony stationary batteries were in widespread use for reserve power back-up. Their life-limiting, progressively increasing antimony poisoning effect so dominated the electrochemical depolarization characteristics of these batteries as to allow simple cell voltage and specific gravity measurements to serve as suitable diagnostics of proper float and aging behavior, effectively obviating the need for reference electrode use. With the introduction of low corrosion, low float current, antimony-free lead electrode technology at mid-century, diagnostics became more complex. Individual cell float voltage and specific gravity became virtually meaningless as a diagnostic, useful only to detect shorted cells. Float voltage variations were dominated by the negative electrode, telling the user little if anything about the condition of the life-limiting positive electrode. Reference electrodes were found to be useful in laboratory studies of positive plate polarization and suggested the possible benefit of field studies. Several published papers [1-4] have demonstrated their benefit in the understanding of previously incomprehensible voltage variations. However, little published work [5] has documented their utility as a performance or life-predicting diagnostic. In this paper field reference electrode readings, taken on float, are compared with the results of actual discharge capacity test information, to determine the utility of reference electrode readings in predicting the performance and life of reserve backup lead acid stationary batteries.
机译:几个世纪以来,参考电极一直是实验室电化学家的首选工具,他们试图获得对基本电化学过程的更基本了解。在20世纪上半叶,铅锑固定电池广泛用于储备电源备用。它们的寿命限制,逐渐增加的锑中毒效果如此统治了这些电池的电化学去极化特性,以允许简单的电池电压和比重测量作为适当浮动和老化行为的合适诊断,有效地避免了对参考电极的需要。随着腐蚀低腐蚀,低浮动电流,锑的铅电极技术在中期,诊断变得更加复杂。单个细胞浮法电压和比重几乎毫无意义为诊断,仅用于检测短路的单元格。浮动电压变化由负电极支配,如果有关于寿命限制正电极的条件的任何内容,则告诉用户。发现参考电极可用于正板极化的实验室研究,并提出了现场研究的可能效益。几篇公布的论文[1-4]已在理解以前不可思议的电压变化方面证明了他们的利益。但是,很少发表的工作[5]已经将其实用性记录为性能或寿命预测诊断。在本文参考电极读数的情况下,在浮法上拍摄,与实际放电容量测试信息的结果进行比较,以确定参考电极读数的效用,以预测储备备用酸固定电池的性能和寿命。

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