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First, increasing the gas feed rate caused the oscillations.
Consequently, the result is a catalytic current decay when O2 is added to the gas feed (see Supplementary Fig. 7).
D2 was used as a reductant and the formation of D2O upon O2 addition to the gas feed was quantified.
The activity of the catalyst in an oxidizing gas feed following the reducing gas feed is initially higher than the steady-state activity.
At different gas feed ratios of Ma to S, films of identical composition are obtained.
The presence of SO2 in the gas feed substantially decreased the catalytic activity whatever the sample.
The effect of NO2 addition to the O2-containing gas feed is investigated.
Then a blowout, next the gas feed broke down, and it took Poli almost an hour to fix it, then another blowout.
The H2 oxidation current remains completely unaffected by the presence of O2 in the gas feed for the first 7 hours (Fig. 4b).
Optimizing the gas feed between ion source and neutralizer can leads to a neutralization efficiency of ∼76%.
The gas feed rate, height of the liquid surface, and length of the cylinder were varied as operational parameters.
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