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The maximum reaction temperature was 280 °C.
Both reactors were able to reduce the maximum reaction temperature below the butylamine boiling point in all experiments.
The steady state reaction fronts propagate through Ti/Si/Ti/Al films with the reaction velocity of 9.1 ± 2 m/s and the maximum reaction temperature of 1768 ± 41 °C.
On the other hand, the maximum reaction temperature in the reaction chamber can be increased if the upper part of the reaction chamber is made with a non-porous material, which is favourable for treating diluted feeds.
It has been found that the model presents some inaccuracies in the calculation of the maximum reaction temperature, which have been attributed to the simplifications in the calculation of thermal properties of the fluids imposed by limitations of the software.
Using existing theoretical models for the relationship between flame temperature and propagation velocity, we analyze the experimental data to obtain the activation energy for the mixing process and find that this value varies significantly as the maximum reaction temperature changes.
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In these samples we observe a systematic reduction of heats of reaction, maximum reaction temperatures, and reaction propagation velocities as the volume fraction of reactive material is reduced.
On the heat transfer aspect, there is a decrease in the maximum reaction temperatures along with the corresponding maximum reaction rates as shown in Figs. 7 and 10, respectively.
However, according to the novel method of approach used here, the more appropriate operating temperatures would be 52 °C for free and 42 °C for immobilized inulinases, showing that the working temperature is not necessarily the same as the maximum reaction rate temperature, but preferably a lower temperature where the enzyme is much more stable.
At the 30-Hz and 50-Hz forcing frequencies, the maximum reaction-zone temperature and width were found to respond quasi-steadily.
For the second optimization based on BMP, desired goal was selected as maximum BMP, while reaction temperature and acid concentration were set within ranges.
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