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VOC combustion is a demanding process for both reactor and catalyst design.
A quasi-continuous production of CO is demonstrated for both reactor designs.
For both reactor concepts, the heat and mass transfer inside the reactor or the material store respectively, have been analyzed in detail by means of numerical simulations.
In the field of nuclear reactor analysis, multi-physics calculations that account for the bonded nature of the neutronic and thermal-hydraulic phenomena are of major importance for both reactor safety and design.
Therefore, a parametric survey on design parameters for long-life small prismatic HTGRs having features for successful decay heat removal using fundamental heat transfer mechanisms was performed for both reactor concepts.
The analytical expression for describing the intraparticle profile of the surface coverage divided by the surface coverage at the pellet outermost is a function of the Thiele modulus and is the same for both reactor configurations.
Similar(49)
At least elements to calculate the cost of the plant, for both reactors are given.
Results show that the models considered for both reactors predict the experimental values well.
Load changes for both reactors could be carried out without significant overshoots of carbon monoxide.
C2+ selectivity depends for both reactors markedly on temperature and oxygen partial pressure.
Liquid residence time distribution (RTD) curves were obtained for both reactors.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com