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As a result, the fluidized bed reactor is now used in many industrial applications.
Fluidized bed reactors are a relatively new tool in the chemical engineering field.
Due to the advantages of fluidized bed reactors, a large amount of research is devoted to this technology.
Today fluidized bed reactors are still used to produce gasoline and other fuels, along with many other chemicals.
Used in these applications, fluidized bed reactors allow for a cleaner, more efficient process than previous standard reactor technologies.
An animation of a fluidized bed reactor.
The increase in fluidized bed reactor use in today's industrial world is largely due to the inherent advantages of the technology.
The coating is usually deposited by thermal chemical vapor deposition in a fluidized bed reactor.
Fluidized bed reactor suspend solid fuels on upward-blowing jets of air during the combustion process.
His more than thirty years of academic and applied research has been focused on the gas-solid fixed and fluidized bed reactors.
As in any design, the fluidized bed reactor does have it draw-backs, which any reactor designer must take into consideration.
Biomass gasification technologies are less established, though several systems being developed utilize fixed bed or fluidized bed reactors.
Chattanooga Process is an extraction process that uses a fluidized bed reactor and an associated hydrogen-fired heater.
A chemical reactor may also be a fluidized bed; see Fluidized bed reactor.
The reaction involves a copper-catalyzed reaction of alkyl halides with silicon metal, which takes place in a fluidized bed reactor.
This process passes a gaseous mixture of o-xylene, ammonia, and oxygen through a distributor plate into a fluidized bed reactor, containing the catalyst.
Calcination processes are carried out in a variety of furnaces, including shaft furnaces, rotary kilns, and fluidized bed reactors.
The current industrial method places finely ground silicon in a fluidized bed reactor at about 300 C. The catalyst is applied as CuO.
In the AUC route, calcination, reduction and stabilization are simultaneously carried out in a vertical fluidized bed reactor.
A fluidized bed reactor (FBR) is a type of reactor device that can be used to carry out a variety of multiphase chemical reactions.
The solid substrate (the catalytic material upon which chemical species react) material in the fluidized bed reactor is typically supported by a porous plate, known as a distributor.
Reactive fluid technologies include the IGT Hytort (high-pressure H) process, donor solvent processes, and the Chattanooga fluidized bed reactor.
The cleaned hydrogen and light hydrocarbon gases are then fed back into the system for compression or into the hydrogen heater to provide heat for the fluidized bed reactor.
The undesired motions may be process derived (such as in a fluidized bed reactor) or from a natural phenomenon such as an earthquake (design basis event or DBE).
The fluidized catalyst particles are shuttled between the fluidized bed reactor and a fluidized bed burner where the coke deposits are burned off, generating heat for the endothermic cracking reaction.