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Russian officials say they hope to use profits from the new industry to help pay for an extensive environmental cleanup program here and to promote the development of more efficient reactors that would use plutonium-based fuels in a form designed to prevent their diversion for weapons use.
Consequently, there is a necessity to develop methodologies not only to design more efficient reactors but to control the reaction behavior under different conditions: pollutants feeding, air flows, humidity and biomass production.
In order to better understand the complex physic phenomena involved in this process, and to design more efficient reactors or to insure future efficient scale-up, a simulation with the Computational Fluid Dynamics software FLUENT was carried out for a simple tubular reactor.
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Some of the investigators try to improve this process by representing more effective catalysts, while others try to elucidate its kinetic and deactivation mechanisms and design more efficient reactor setups.
These improvements would be observed in presenting more efficient reactor setups in order to improve production yield and operating conditions, as well as elucidating better kinetic and deactivation models with higher predicting ability.
There are designs for more efficient fission reactors, and for "breeder" reactors, which spawn their own fuel, but they will require billions of dollars in investment, and their widespread use might abet the proliferation of fissile material.
Exelon, the nation's largest nuclear energy company, is the only American corporation developing a design for the pebble-bed reactor, which it says will lead to a new generation of cheaper, smaller and more efficient nuclear reactors.
This type of information could be used to design more effective and longer-lasting catalysts and more efficient chemical reactors.
Here, more efficient dual reactor systems were developed using a single-chamber MFC as a low-voltage power source to simultaneously accomplish H2O2 generation and Fe2+ release for the Fenton reaction.
The results of this study demonstrate that micro-structuring of the fluidized bed results in reduced gas back-mixing and thus in a more efficient membrane reactor configuration for hydrogen production because of the increased driving force for gas permeation.
As a result, the improved methodology of incorporating catalyst into the micro-channels of CHFMR is the key to a more efficient membrane reactor design of this type, for both the SMR in this study and the other catalytic reforming reactions.
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