Concerning recharge efficiency, Fig. 7 shows that, from
50 to 400 cycles, the time needed to fully recharge the cells
is longer for the competition separator than for TGL400.
More than the single effect of higher porosity and larger pore
size, the tortuosity of the Amersil separator helps slowing
the oxygen transfer in order to allow an easier recharge of the
negative plate before current is used for oxygen reduction.
Moreover, even though no detailed study has been performed
yet concerning compression in gelled-electrolyte
batteries, one can assume that compression is also an issue,
as gel VRLA may also suffer from poor contact between the
immobilised electrolyte and the plates, when battery is
ageing and gel is drying out due to water loss. In that case,
the springiness of the Amersil separator might be highly
beneficial to maintain plate–electrolyte contact. This important
aspect has to be further evaluated.
Concerning recharge efficiency, Fig. 7 shows that, from50 to 400 cycles, the time needed to fully recharge the cellsis longer for the competition separator than for TGL400.More than the single effect of higher porosity and larger poresize, the tortuosity of the Amersil separator helps slowingthe oxygen transfer in order to allow an easier recharge of thenegative plate before current is used for oxygen reduction.Moreover, even though no detailed study has been performedyet concerning compression in gelled-electrolytebatteries, one can assume that compression is also an issue,as gel VRLA may also suffer from poor contact between theimmobilised electrolyte and the plates, when battery isageing and gel is drying out due to water loss. In that case,the springiness of the Amersil separator might be highlybeneficial to maintain plate–electrolyte contact. This importantaspect has to be further evaluated.
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