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At high heating rate (e.g. 100°C min−1).
The inverted reactor showed very high heating rate by enhancing the carbon conversion and syngas production.
High heating rate and moisture diffusivity were achieved with IR heating.
In the high heating rate isothermal apparatus, particle size had a significant influence on conversion: transfer phenomena limit oxidative pyrolysis.
At high temperature or high heating rate, polymerization occurs first and crystallization is delayed because of the low supercooling.
Below a certain deposited nuclear energy, solid phase epitaxy (SPE) is possible and leads to recrystallisation under precise conditions (high heating rate, silicon partial pressure prescribed).
Similar(23)
Char samples are generated at high heating rates in an entrained flow reactor.
The ignition temperatures were investigated under high heating rates (500 2000 °C min−1).
Mag powders only show fragmentation and microexplosions at high heating rates.
Very high heating rates allow for quasi-instantaneous vaporization of catalyst particles.
Metals that do not oxidize readily, such as nickel, cobalt, molybdenum, and copper, can be added in the furnace to take advantage of high heating rates.
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