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The maximum reaction rate and kinetic constants were matched with the order bi bi model.
At the initial stage, Ar atmosphere was switched to steam, and maximum reaction rate could be observed.
Higher enzyme concentrations exceeding the amount required for the maximum reaction rate resulted in lower hydrolysis rates.
The apparent maximum reaction rate (vmax) of the ultrasound treatment was 2.85 times higher than that of the mechanical shaking.
The maximum reaction rate varied between 3.5 μmol/min mg enzyme and 29.8 μmol/min mg enzyme.
For such conditions, the maximum reaction rate which can be determined from IS data is limited.
There is a maximum reaction rate during the gasification process, and the value moves to the higher carbon conversion with the increase of gasification temperature.
With lower mass flow rate value represented in (a), the maximum reaction rate is achieved leading to the higher internal temperature along the bed.
However, the rate constants (kcat) and maximum reaction rate (Vmax) were found to be higher with lower activation energy for the developed nanocatalyst.
The kinetic parameters of the biosensor, maximum reaction rate of the enzyme (Vmax) and Michaelis Menten constant (Km) were determined for two different substrates.
The flow velocity with the maximum reaction rate was 0.66 m/s, and it can be adjusted by changing windward area.
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