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Effect of KOH concentration and anions on the performance of Ni-H2 battery positive plateThe capacity and voltage behavior of electrochemically impregnated sintered nickel positive plates was examined by galavanostatic charging; and discharging in a flooded electrolyte cell. Three different concentrations of KOH (40 percent, 31 percent, and 26 percent) and 31 percent KOH containing dissolved nitrate, sulfate or silicate were investigated. The end of charge voltage at C/10 charge and at 10 C showed the following order: 40 percent KOH is greater than 31 percent KOH alone and in the presence of the anions greater than 26 percent KOE. The middischarge voltage at C/2 discharge was higher in 26 percent KOH, almost the same for 31 percent KOH with and without the added contaminants and much lower for 40 percent KOH. The plate capacity was marginally affected by cycling in all cases except for 40 percent KOH where the capacity declined after 1000 cycles at 80 percent DOD. At the end of cycling the plate tested in the presence of sulfate and silicate experienced measurable weight loss as a result of active material extrusion. Cyclic voltammetry of miniature electrodes in 31 percent KOH showed that the second oxidation peak that corresponds to the formation of a different phase of oxidized Ni has a lower peak current at -5 C compared to 25 C and oxygen evolution occurs a higher potential at -5 C. The reduction peak (discharge reaction) is more polarized at 25 C compared to -5 C. The presence of silicate alters the potentials only marginally. The implications of these results in plate treatment and low temperature operation are discussed.
Document ID
19950023839
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Vaidyanathan, H.
(Communications Satellite Corp. Clarksburg, MD., United States)
Robbins, Kathleen
(Communications Satellite Corp. Clarksburg, MD., United States)
Gopalakrishna, Rao M.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
September 6, 2013
Publication Date
April 1, 1995
Publication Information
Publication: NASA. Lewis Research Center, Space Electrochemical Research and Technology. Abstracts
Subject Category
Electronics And Electrical Engineering
Accession Number
95N30260
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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