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The maximum proton transport capacity of the PBI/phosphoric acid membrane was found to be comparable to those of Nafion® membranes.
For instance, UCP2 transported protons at the highest rate in the presence of AA, whereas UCP4 and UCP5 achieved their maximum proton transport rates in the presence of OA.
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Concerning ATPase, from the literature, Lobit et al. [ 17] calculated a maximum rate of proton transport of around 50 mmol jour−1 Kg FW−1.
In other words, the observed rate of malate accumulation must be lower than the maximum rate of malate transport through the di-anion channel, and the observed rate of proton accumulation must be lower than the maximum rate of proton transport through the ATPase.
The proton transport is not a limiting process.
A maximum proton fluence of 1.9 × 1025 p/m2 was deduced.
Shown here are the directions of electron and proton transport by the OXPHOS complexes.
DNP at this concentration most likely uncouples mitochondrial proton transport from phosphorylation.
The sulfonic acid groups can help to speed up proton transport through nanopore channels.
The proton transport number (PTN) varied between 0.45 and 1.0.
An electrochemical method for proton transport visualization was developed and applied to the investigation of proton-conducting membrane materials.
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