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Stirred reactor

Stirred-tank reactors. Stirred-tank reactors consist simply of an... [Pg.53]

Figure 11-13. Reactors stirred by pumped fluid ID, Injector nozzle SK, float G, gas F, liquid. (Source Schuger [11].)... Figure 11-13. Reactors stirred by pumped fluid ID, Injector nozzle SK, float G, gas F, liquid. (Source Schuger [11].)...
Figure 10-14. The SNIA BPD process for producing caprolactam (1) toluene oxidation reactor, (2) fractionator, (3) hydrogenation reactor (stirred autoclave), (4) multistage reactor (conversion to caprolactam), (5) water dilution, (6) crystallizer, (7) solvent extraction, (8) fractionator. Figure 10-14. The SNIA BPD process for producing caprolactam (1) toluene oxidation reactor, (2) fractionator, (3) hydrogenation reactor (stirred autoclave), (4) multistage reactor (conversion to caprolactam), (5) water dilution, (6) crystallizer, (7) solvent extraction, (8) fractionator.
Stirred-tank reactors. Stirred-tank reactors consist simply of an agitated tank and are used for reactions involving a liquid. Applications include ... [Pg.128]

Continuous Flow Reactors—Stirred Tanks. The continuous flow stirred tank reactor is used extensively in chemical process industries. Both single tanks and batteries of tanks connected in series are used. In many respects the mechanical and heat transfer aspects of these reactors closely resemble the stirred tank batch reactors treated in the previous subsection. However, in the present case, one must also provide for continuous addition of reactants and continuous withdrawal of the product stream. [Pg.249]

Studies in Table 1 refer to different types of reactors stirred tank (mechanically agitated reactors and rotary reactors), fixed bed and fluidized bed. Figure 2 reports an outline of the most common reactor typologies. The reactors may be operated... [Pg.109]

In some multiphase reactors, stirring with an impeller or the flow pattern caused by gravity will control the interfacial area. By suitably designing and positioning propellers and reactant injection orifices or by using static mixers, it is possible to provide very efficient breakup of hquids into drops and bubbles. A factor of two decrease in drop or bubble size means a factor of four increase in interfacial area. [Pg.481]

A continuous bulk polymerization process with three reaction zones in series has been developed. The degree of polymerization increases from the first reactor to the third reactor. Examples of suitable reactors include continuous stirred tank reactors, stirred tower reactors, axially segregated horizontal reactors, and pipe reactors with static mixers. The continuous stirred tank reactor type is advantageous, because it allows for precise independent control of the residence time in a given reactor by adjusting the level in a given reactor. Thus, the residence time of the polymer mixtures can be independently adjusted and optimized in each of the reactors in series (8). [Pg.271]

The relevant processing components like the types of reactors (tubular reactor, stirred reactor etc.), and their mode of operation. [Pg.411]

Reactor Stirred tank 10m3 Tubular d = 10mm Micro d = 0.1 mm... [Pg.200]

Tubular bundle reactors, homogeneous tubular reactors, stirred tank reactors > 10 000... [Pg.606]

Another type of continuous flow reactor is found in industry the continuous flow stirred tank reactor (CSTR), Fig. 7.2. Stirring of the reactor content might be necessary to increase the heat exchange with the surroundings or to maintain a heterogeneous catalyst in suspension. If more than one fluid phase is present in the reactor, stirring increases the contact surface area and, hence, the rate of mass transfer between these phases. [Pg.257]

Any form of convection, of course, increases the value of Ks. In slurry operation with no liquid flow, gas flow induces convection. In an agitated slurry reactor, stirring causes convection. In a pulsating slurry reactor, pulsation of the slurry induces convection and in a three-phase fluidized bed, the movements of both gas and liquid phases cause convection. Any one or more modes of convection will increase the value of the solid-liquid mass-transfer coefficient. In broad terms, the convective liquid-solid mass-transfer coefficient is correlated by-two steady state theories. Here we briefly review and compare them. [Pg.348]

Bubble columns Loop reactors Stirred tanks Hydrocyclones Reasonable Reasonable Reasonable Reasonable Modeling of chum-turbulent flow regime Modeling of chum-turbulent flow regime Improved geometrical representation of impeller and baffles Improved geometrical representation of system... [Pg.281]

Gas-liquid reactors Stirred reactors, bubble column reactors, packed columns, loop reactors. [Pg.15]

Gas-liquid-solids reactors Stirred slurry reactors, three-phase fluidized bed reactors (bubble column slurry reactors), packed bubble column reactors, trickle bed reactors, loop reactors. [Pg.15]

Continuous Continuous stirred tank reactor loop reactor, stirred tank reactors, fluidized reactors, tubular reactors Polyvinyl acetate, styrene-butadiene, PVC (E), polystyrene (S), low-density polyethylene (B)... [Pg.1068]

Brief discussion of a total of over 25 reactors of all categories, such as fixed-, fluidized- and moving-bed reactors, bubble columns, sectionalized bubble columns, loop reactors, stirred-tank reactors, film reactors, rotating disk reactors, jet reactors, plunging jet reactors, spray columns, surface aerators... [Pg.740]

Reactor Stirred tank Bubble column Jet-loop 3-Phase fluid bed Trickle-bed 3-Phase Monolith... [Pg.51]

Reactors.- Stirred-type reactors are not common in experiments correlating selectivity to deactivation high flow rates are used to ensure the absence of external mass transfer resistance. Of the bed-type reactors, a number of flow patterns are used. [Pg.236]

Structured or micro-structured reactors Fixed-bed reactors Stirred-tank reactors (2-phase) Conventional fluidized-bed reactors Stirred-tank reactors (3-phase)... [Pg.9]


See other pages where Stirred reactor is mentioned: [Pg.166]    [Pg.261]    [Pg.228]    [Pg.448]    [Pg.500]    [Pg.249]    [Pg.273]    [Pg.1518]    [Pg.79]    [Pg.31]    [Pg.62]    [Pg.205]    [Pg.22]    [Pg.293]    [Pg.4]    [Pg.17]    [Pg.30]    [Pg.269]    [Pg.369]    [Pg.30]    [Pg.403]    [Pg.2094]    [Pg.2107]    [Pg.800]    [Pg.270]   
See also in sourсe #XX -- [ Pg.7 , Pg.118 ]

See also in sourсe #XX -- [ Pg.447 ]




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Adiabatic continuous flow stirred tank reactors

Adiabatic stirred flow reactor

Anaerobic reactor, continuous flow stirred

Aspects of Stirred Tank Batch Reactor

Batch Isothermal Perfectly Stirred Reactor

Batch and Continuous Stirred Tank Reactors

Batch-wise operated stirred tank reactor

Batch-wise operated stirred tank reactor BSTR)

Biochemical reactors Continuous stirred-tank reactor

Bioreactor stirred-tank reactor

Bioreactors continuous stirred-tank reactor

C Constant-Volume Continuous Stirred-Tank Reactor

CSTR dynamics Continuous stirred tank reactors

CSTR—See Continuous-stirred tank reactor

Cascade of stirred tank reactors,

Cascading, continuous stirred tank reactors

Case A Continuous Stirred-Tank Reactor (CSTR)

Case A. Continuous Stirred-Tank Reactor

Catalytic continuous flow stirred tank reactors

Catalytic reactor, continuously-stirred

Cell immobilization stirred-tank reactor

Chaotic dynamics continuous stirred tank reactor

Comparison of Stirred-tank and Tubular-flow Reactors

Comparison of batch, tubular and stirred-tank reactors for a single reaction Reactor output

Comparison of batch, tubular and stirred-tank reactors for multiple reactions. Reactor yield

Completely stirred tank reactor

Constant stirred tank reactor

Constant-volume continuous stirred tank reactor

Continuos stirred tank reactor

Continuous Stirred Tank Reactor The Adiabatic Case

Continuous Stirred Tank Reactor The Nonadiabatic Case

Continuous Stirred Tank and the Plug Flow Reactors

Continuous Stirred-Tank Reactors (General Treatment)

Continuous flow reactors continuously stirred tank

Continuous flow stirred tank reactor

Continuous flow stirred tank reactor CFSTR)

Continuous flow stirred tank reactors CSTR)

Continuous flow stirred tank reactors defined

Continuous flow, well stirred tank reactor

Continuous ideally stirred tank reactor

Continuous ideally stirred tank reactor CISTR)

Continuous operated stirred tank reactor

Continuous stirred reactor

Continuous stirred reactor oscillations

Continuous stirred reactor parallel reactions

Continuous stirred reactor periodic states

Continuous stirred tank reactor

Continuous stirred tank reactor (CSTR batch recycle

Continuous stirred tank reactor (CSTR cascade

Continuous stirred tank reactor CSTR) polymerization

Continuous stirred tank reactor CSTR) tests

Continuous stirred tank reactor Contribution

Continuous stirred tank reactor See

Continuous stirred tank reactor adiabatic

Continuous stirred tank reactor autothermal operation

Continuous stirred tank reactor cascaded

Continuous stirred tank reactor component balance

Continuous stirred tank reactor consecutive reactions

Continuous stirred tank reactor endothermic

Continuous stirred tank reactor energy balance

Continuous stirred tank reactor equilibrium reactions

Continuous stirred tank reactor feed temperature

Continuous stirred tank reactor hysteresis

Continuous stirred tank reactor isothermal reactions

Continuous stirred tank reactor linearization

Continuous stirred tank reactor mass balance

Continuous stirred tank reactor material balance

Continuous stirred tank reactor mathematics

Continuous stirred tank reactor model

Continuous stirred tank reactor nonlinear equations

Continuous stirred tank reactor operating points

Continuous stirred tank reactor ordinary differential equations

Continuous stirred tank reactor population balance

Continuous stirred tank reactor process

Continuous stirred tank reactor recycle

Continuous stirred tank reactor residence time

Continuous stirred tank reactor simulation

Continuous stirred tank reactor space time

Continuous stirred tank reactor space velocity

Continuous stirred tank reactor stability

Continuous stirred tank reactor steady-state multiplicity

Continuous stirred tank reactor temperature

Continuous stirred tank reactor terms

Continuous stirred tank reactor tubular

Continuous stirred tank reactor with heat transfer

Continuous stirred tank reactor with recycle

Continuous stirred tank reactors agitators/impellers

Continuous stirred tank reactors control system

Continuous stirred tank reactors in series

Continuous stirred tank reactors performance

Continuous stirred tank reactors, kinetic data

Continuous stirred-tank reactor CSTR)

Continuous stirred-tank reactor latex from

Continuous stirred-tank reactor mathematical model

Continuous stirred-tank reactor nonisothermal

Continuous stirred-tank reactor system

Continuous stirred-tank reactor weight distribution

Continuous stirred-tank reactors (CSTRs

Continuous stirred-tank reactors multiple steady states

Continuous stirred-tank-reactor cascades

Continuous stirring tank reactor

Continuous-flow stirred tank electrochemical reactor

Continuous-stirred lank reactors

Continuous-stirred tank reactors adiabatic operation

Continuous-stirred tank reactors design equation

Continuous-stirred tank reactors residence-time distribution

Continuous-stirred tank reactors space

Continuous-stirred-tank reactor, mass

Continuous-stirred-tank reactor, mass transfer model

Continuously Stirred Tank Reactor...See CSTR

Continuously fed stirred-tank reactor

Continuously operated stirred tank reactor

Continuously operated stirred tank reactor CSTR)

Continuously stirred reactor membrane bioreactor

Continuously stirred tank reactor

Continuously stirred tank reactor CSTR)

Continuously stirred tank reactor cascades

Continuously stirred tank reactor describing equations

Continuously stirred tank reactor model

Continuously stirred tank reactor operation

Continuously stirred tank reactor semi-batch reactors

Continuously stirred tank reactor unsteady state operations

Controlled stirred tank reactor

Conversion rate, continuous stirred tank reactor

Copolymerization, continuous stirred tank reactor

Correlations stirred-tank reactor

Design equations for continuous stirred-tank reactors

Design of Continuous Stirred Tank Reactors (CSTRs

Design of Stirred Tank Reactors with Internal Cooling Coils

Discontinuous stirred-tank reactor

Dynamic model chemical stirred tank reactor

Dynamic stirred tank reactor

Dynamics of Chemical Stirred Tank Reactors

Dynamics of a Continuous Stirred Tank Reactor

E- and F-Curves for a Series of Stirred Tank Reactors

Energy balance, stirred tank reactor

Engineering of stirred reactor

Environments within stirred tank reactor

Enzyme reactors continuous-stirred

Enzymes continuous stirred tank reactor

Enzymes stirred tank reactor

Example Continuous Stirred Tank Reactor

Exercise 11.1 Mixing in a continuous stirred tank reactor

Exercise 3.1 Time of residence and chemical reaction in a stirred reactor

Experimental continuous flow stirred tank reactor

First continuous stirred-tank reactor

Flow Isothermal Perfectly Stirred Tank Reactor

Flow Stirred Tank Reactor (CFSTR)

Flow Stirred-Tank Reactor (CSTR)

Flow regime Continuously stirred tank reactor

Flow regime stirred tank reactor

Flow stirred tank reactors

Fluidized continuous-stirred tank reactors

Gas Holdup in Stirred Tank Reactors

Gas-liquid flow, in stirred reactors

Gas-liquid stirred reactors

Gas-phase stirred-bed reactor

Heat Transfer in Stirred Tank Reactors

Heat transfer, reactors stirred tanks

Homogeneous continuous stirred tank reactor

Homogeneous continuous stirred tank reactor HCSTR)

Homogeneous reactors stirred-tank

Horizontal stirred gas phase reactor

Hydrodynamic Regimes in Three-Phase (Gas-Liquid-Solid) Stirred Tank Reactors

Hydrodynamic Regimes in Two-Phase (Gas-Liquid) Stirred Tank Reactors

Hydrodynamic regimes stirred tank reactors

I Multiplicity and Stability in an Adiabatic Stirred Tank Reactor

IEM model for a stirred reactor

Ideal Continuous Stirred Tank Reactor (CSTR)

Ideal Continuously Operated Stirred Tank Reactor (CSTR)

Ideal Stirred-tank Reactors (Flow)

Ideal continuous stirred tank reactor

Ideal reactors continuously stirred tank reactor

Ideal reactors, continuously stirred tank reactor liquid phase reaction

Ideal reactors, continuously stirred tank reactor residence time

Ideal reactors, continuously stirred tank reactor series

Ideal reactors, continuously stirred tank reactor steady state

In a stirred tank reactor

In stirred tank reactors

Indirect Heating and Cooling of Stirred Tank Reactors

Industrial stirred reactor

Interconnected stirred tank reactors

Isothermal stirred tank reactor

Jet-stirred reactor

Kinetic data from continuous stirred-tank reactors

Liquid-solid reactions in a stirred reactor

Mass balance stirred-tank reactor

Mechanically Stirred Reactors

Michaelis continuous stirred-tank reactor

Model 1 The Ideal Discontinuous Stirred Tank Reactor (DCSTR)

Model 2 The Ideal Continuous Stirred Tank Reactor (CSTR) with V Constant

Model 3 The Ideal Semicontinuous Stirred Tank Reactor (SCSTR) with V Variable

Modeling continuous stirred tank reactor,

Modeling of stirred reactors

Modelling a Continuous Stirred Tank Reactor (CSTR)

Multi-stage continuous flow stirred tank reactor

Multiple Stationary States in Continuous Stirred Tank Reactors

Multiplicity, continuous stirred tank reactor

Multistationarity in kinetic models of continuous flow stirred tank reactors

NOCSTR - Non-Ideal Stirred-Tank Reactor

NOSTR - Non-Ideal Stirred-Tank Reactor

Non-ideal stirred-tank reactor

Nonisothermal CSTR Continuous stirred tank reactors

Nonisothermal Stirred Tank Reactors

Optimal sequences of stirred tank reactors

Oscillations, continuous flow stirred tank reactors

Oscillatory solution, stirred tank reactor

Paddle stirred reactor

Perfectly stirred reactor

Perfectly stirred reactor transient

Plug-flow reactor and single continuous stirred tank

Polyethylene continuous stirred-tank reactor

Polymerization reactions stirred tank reactor

Polymerization reactor continuous-stirred tank

Precipitators continuous stirred tank reactors

Propagation rate, continuous stirred tank reactor

Reaction stirred reactors

Reaction, exothermic, single stirred tank reactor

Reactor continous stirred tank

Reactor continuously stirred

Reactor design stirred-tank

Reactor models continuous well-stirred model

Reactor perfectly-stirred tank

Reactor stirred photochemical tank

Reactor stirred, with incomplete mixing

Reactor types stirred tank

Reactor well-stirred tank

Reactor, batch continuous flow stirred tank

Reactor, batch stirred tank model

Reactor, practical stirred tank

Reactor- and Stirring Vessel Loading in the Chemical Industry

Reactors batch stirred tank

Reactors continuously stirred tank batch

Reactors continuously stirred tank plug-flow

Reactors continuously stirred tank semi-batch

Reactors continuously stirred tank tubular

Reactors stirred tank reactor

Reactors stirring

Reactors stirring

Reactors, chemical stirred tanks

Reactors, chemical stirred tanks, batch and continuous

Reactors, chemical stirred tanks, typical proportions

Recirculation through a Stirred-Tank Reactor

Scale stirred-tank reactor

Scale-up of Stirred-Tank Batch Reactors-Runaway Reactions

Segregated CSTR Continuous stirred tank reactors

Segregated stirred tank reactor

Self-heating in a continuous stirred tank reactor

Semi-batch stirred tank reactor

Semicontinuous stirred tank reactor

Sequences of stirred tank reactors

Sequential stirred tank reactors

Simulation of Stirred Reactors with Highly Exothermic Reactions

Single Irreversible Reaction in a Stirred Flow Reactor

Solid-Liquid Mass Transfer Coefficient in Stirred Tank Reactor

Stable Operating Conditions in Stirred-tank Reactors

Stage Continuous Flow Stirred Tank Reactor

Standard stirred tank reactors

Stationary Conditions for a Nonisothermal Continuous Stirred Tank Reactor

Steady State of a Continuous Stirred-Tank Reactor

Steady-State First-Order Reactions in a Stirred Tank Reactor

Stirred Tank Reactor Some Practical Considerations

Stirred Tank and the Plug Flow Reactors

Stirred Tanks and Differential Reactors

Stirred Tanks and Reactor Combinations

Stirred batch reactor

Stirred batch reactor constants

Stirred bed reactor

Stirred cell laboratory reactors

Stirred cell reactor

Stirred ceramic membrane reactors

Stirred contained solids reactor

Stirred continuous reactor cascades

Stirred polymerization reactor

Stirred reactor theory

Stirred reactor, liquid phase

Stirred reactor, liquid phase oxidation

Stirred reactor, pyrolysis

Stirred reactors CSTRs

Stirred reactors overview

Stirred reactors unsteady-state operation

Stirred reactors, industrial applications

Stirred reactors, modeling

Stirred reactors, modeling approaches

Stirred reactors, multiple

Stirred reactors, multiple impellers

Stirred reactors, simulation

Stirred reactors, simulation multiphase flows

Stirred reactors, types

Stirred reactors, with Rushton

Stirred reactors, with Rushton turbine

Stirred reactors, with pitched

Stirred reactors, with pitched blade turbine

Stirred tank reactor , practical considerations

Stirred tank reactors

Stirred tank reactors Subject

Stirred tank reactors baffles

Stirred tank reactors control

Stirred tank reactors dissipation

Stirred tank reactors for cell culture technology

Stirred tank reactors for chemical reactions

Stirred tank reactors lines

Stirred tank reactors mixing

Stirred tank reactors multiphase

Stirred tank reactors turbulent kinetic energy

Stirred tank reactors with internal cooling coils

Stirred tank reactors with internal draft tube

Stirred tank solids reactor

Stirred vessel reactors

Stirred-Tank Reactor (CSTR)

Stirred-Tank Reactor Cascade

Stirred-Tank Reactors (CSTRs)

Stirred-cell reactor, selectivity

Stirred-flow reactor

Stirred-flow reactor applications

Stirred-flow reactor data analysis using

Stirred-flow reactor design

Stirred-flow reactors laboratory scale

Stirred-reactor regime

Stirred-tank reactor batch mode

Stirred-tank reactor blending

Stirred-tank reactor kinetic energy

Stirred-tank reactor linear equations

Stirred-tank reactor semibatch mode

Stirred-tank reactor solid suspension

Stirred-tank reactor steady-state design

Stirred-tank reactor, adiabatic

Stirred-tank reactor, stability

Stirred-tank reactor, stability adiabatic reactors

Stirred-tank reactors advantages

Stirred-tank reactors graphical method

Stirred-tank reactors ideal

Stirred-tank reactors in series

Stirred-tank reactors models

Stirred-tank reactors selectivity

Stirred-tank reactors single

Stirred-tank reactors temperature effects

Temperature Effects in Stirred Tank Reactors

The Continuous Flow Stirred Tank Reactor

The Continuous Stirred-Tank Reactor

The Continuous-Stirred-Tank Reactor (CSTR)

The Ideal Continuous Flow Stirred-Tank Reactor

The Ideal Well-Stirred Batch Reactor

Tracer continuous-stirred tank reactor

Transient Continuous Stirred Tank Reactors

Transient Stirred Reactors

Tubular and stirred tank reactors

Two-Phase Stirred Tank Reactors

Unsteady-State Operation of Stirred Reactors

Vertical stirred gas phase reactor

Vinyl acetate polymerization continuous stirred tank reactor

Well-stirred batch reactor

Worked Example Design of Stirred Reactor for Hydrogenation Metric Tonnes per Year)

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