Examples of 'devolatilization' in a sentence

Meaning of "devolatilization"

Devolatilization (noun): This phrase is used in chemistry to describe the process of removing volatile substances from a material, typically through heating and evaporation
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  • The removal of volatile material.

How to use "devolatilization" in a sentence

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devolatilization
The polymer then enters a devolatilization stage.
No devolatilization operation was carried out upon completion of the reaction.
Good vacuum is maintained to maximize devolatilization efficiency.
A final devolatilization of the polymer.
A total of five levels were used as devolatilization conditions.
Devolatilization of liquid composition containing polymer and volatile constituents.
The equipment is vented periodically to allow for devolatilization.
One traditional method is extrusion devolatilization using vacuum equipped extruders.
Coal is fed into an upper fluidized bed for devolatilization.
This process incorporates a devolatilization step before the crystallization step.
The block copolymer is isolated by devolatilization.
The devolatilization treatment is generally conducted continuously by a bent type extruder.
The remaining monomer is removed by devolatilization.
This process incorporated a devolatilization step before the crystallisation step.
Steam can be added during this processing to aid in devolatilization.

See also

The portions removed in the devolatilization step may be recycled or destroyed.
The devolatilization of the interfacial modifier carrier solution removes solvent.
This process is called devolatilization.
Devolatilization performance is measured by headspace gas chromatography of the final products.
The polymer is then separated by precipitation or by devolatilization of the solvent.
Carbonization refers to the devolatilization of an organic feedstock to yield gas and char.
No methanol was added after devolatilization.
This devolatilization enables the water present in the starting oligomer to be removed.
This results in very high rates of devolatilization and pyrolysis.
Devolatilization increases the relative amount of carbon in the engineered fuel feedstock.
This was accomplished by configuring the devolatilization system in the following manner.
The coalescer removes polymer entrained in the vapor during devolatilization.
The present invention relates to the devolatilization of melts of one or more polymers.
The solvent is preferably recovered together with volatiles in a devolatilization step.
The devolatilization is affected by simply heating the particulate material in an inert gas.
This is desired in view of suppressing variations or reduction of the devolatilization efficiency.
The devolatilization model and volatile matters seem to play more important roles.
These result from cooling of gaseous devolatilization products from coal.
Devolatilization means the removal of the unpolymerized monomer in the course of the polymerization.
The pressure in the vessel can be varied to enhance or hinder devolatilization.
Use may be made of devolatilization extruder machines provided by commercial manufacturers of such equipment.
This last option is similar to a combination of a degradation reaction and a devolatilization operation.
Devolatilization and polymer recovery follow removal of polymer solution from the reactor.
The present invention discloses systems and methods for polymer devolatilization.
There can be more than one devolatilization zone along the extrusion barrel.
Other equipment can be used in combination with the extruding devolatilization apparatus.
The resin particles are subjected to a devolatilization process and are subsequently stored under vacuum.
The solvent and unreacted monomers are removed during the devolatilization process.
The devolatilization apparatus includes a distributor provided between a heat exchanger and a volatilizer.
This heat exchanger is not adapted for use as a polymer devolatilization preheater.
The devolatilization of the lactide polymer may take place in any known devolatilization process.
The product stream is then heated by passing through a heat exchanger before devolatilization.
This crystallization process consists of one or more devolatilization steps and a crystallization step.
The devolatilization temperature and the magnitude of the phenomenon depend on the initial organic compound.
These factors can vary according to the environment and conditions of devolatilization operation.

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