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The increase of the organic component reactivity R by adding PIC in the reactive mixture leads to the appearance of the second glass transition process Tg2 near 40°C.
No reactive azeotropes were found for the reactive mixture.
They now think it consisted largely of carbon dioxide and nitrogen, a far less reactive mixture than Dr. Miller used.
Afterwards, permeabilities of the same compounds in the reactive mixture were tested.
As observed in previous DNS calculations, ignition occurs at a "most reactive" mixture fraction.
This effect is however strongly attenuated when the oxygen concentration is increased in the reactive mixture.
The reactions take place in reactor tubes which are covered with catalyst at the inside, where the reactive mixture flows.
However, a rigorous and methodical selection of the most appropriate reactive mixture composition still needs to be investigated.
Computer simulation based on this model facilitates prediction of spatial temperature profiles and reactive mixture composition inside the reactor.
The reactive mixture was successfully consolidated without the onset of the thermite reaction.
For all compositions examined, the reactive mixture is preheated to a temperature Tu = 373 K.
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