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The gas chromatograph was operated at an injection temperature of 200°C with 1 μL of sample injected with the AOC-20i Shimadzu auto injector.
The injection temperature and detector temperature were both 230 °C.
However, both of them increase linearly with an increase in the injection temperature.
As reaction regime became less distributed with higher injection temperature, reformate quality was adversely impacted.
The air and fuel injection temperature was at normal 300 K.
Injection temperature and holding time were chosen as variable processing parameters.
Water flooding has been studied as a function of injection temperature, injection pressure and production pressure.
The SMTF temperature and superheat degree increase with increasing of injection temperature.
Also, they show from a thermal efficiency point of view that it is most efficient to adopt an injection temperature profile where the injection temperature starts high earlier in the process and ends at lower water temperature.
Thermally induced hydraulic fracture is not expected for the 28 °C 47 °C injection temperature range or higher.
The cooling channel was also designed to cool the mold and control the uniformity of injection temperature.
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