SlideShare a Scribd company logo
Presented By:-
Nitin Kumar Singh
MT17CML009
VNIT, Nagpur
Contents
Introduction
Theory
1. Construction
2.Types of Slurry Reactors
Design Equation
Advantages and Disadvantages
Applications
References
Introduction
• A slurry is a thin sloppy mud or cement or, in extended use, any fluid
mixture of a pulverized solid with a liquid (usually water), often used
as a convenient way of handling solids in bulk.
• Slurries behave in some ways like thick fluids, flowing under gravity
but are also capable of being pumped if not too thick.
Theory
• A Slurry reactor is a multiphase reactor system in which all the three
phases i.e. Solids , Liquids and Gases can be reacted.
• In the Slurry Reactors the two-phase or the three-phase catalytic reactions
can be carried out.
• In three –phase reactor, gas and liquid reactants are brought into contact
with solid catalyst particles.
• In two–phase reactor, fluid phase is usually liquid reactant in contact with
the solid catalyst.
• The reaction of gaseous reactant with catalyst is usually carried out in fixed
bed reactor.
• In three –phase slurry reactor the gaseous reactant and solid catalysts are
dispersed in continuous liquid phase by mechanical agitation using stirrer.
The efficient stirring ensures nearly uniform composition throughout the
reactor
Reaction Steps in a Slurry Reactor :
1. Mass Transfer of Gas through Gas film.
2. Mass Transfer of Gas Through Liquid.
3. Dissolving bubble gas.
4. Mass transfer of dissolved gas through liquid film.
5. Reaction on the surface of the catalyst.
1. Construction
 Reaction Tank
 Spargers
 Cooling Coils
 Probes
Stirrer
2. Types of Slurry Reactors
• Bubble Column Reactor
• Fischer Tropsch Reactor
• Slurry Batch Reactor
Bubble Column Reactor
F-T Tubular Slurry Reactor
Slurry Batch Reactor for
Hydrogenation
Design Equation for a Slurry Reactor
 Rate can be expressed as:-
rab= kgag(Cg- Cgi)
= klag(Cli-Cl)
= kcac(Cl-Cs)
= ηkaccs
and we know, cgi= Hcli
𝑟 =
𝑎 𝑐 𝐶𝑔
𝑎 𝑐
𝑎 𝑔
∗
1
𝑘 𝑔
+
𝑎 𝑐
𝑎 𝑔
⋅
𝐻
𝑘 𝐿
+
𝐻
𝑘 𝑐 𝑎 𝑐
+
𝐻
𝜂𝑘𝑎 𝑐
Where,
rab = Rate of absorbtion
kg= Mass transfer coefficient of gas
kl= Mass transfer coefficient of liquid
k = Mass transfer coefficient of solid
ag= Bubble surface area
ac= Surface area of the catalyst(solid)
η= Effectiveness factor
H= Henry’s law constant
Cg= Concentration of the gas in bulk
Cgi= Concentration of the gas at the interface
Cl= Concentration of the liquid in bulk
Cli= Concentration of the liquid at the interface
Cs= Concentration of the solid catalyst
Advantages
• High heat capacity to provide good temperature
control.
• Potentially high reaction rate per unit volume of
reactor if the catalyst is highly active.
• Easy heat recovery.
• Adaptability to either batch or flow processing.
• The catalyst may readily be removed and replaced
if its working life is relatively short.
• Because of high intraparticle diffusion rate, small
particles can be used.
Disadvantages
• Generation of fine particles by abrasion of the catalyst.
• Catalyst removal by filtration may provoke problems with
possible plugging difficulties on filters, further time of
operation, and the costs of filtering systems may be a
substantial portion of the capital investment.
• Higher catalyst consumption than that of fixed - bed
reactors.
• Back mixed flow and the volume of the reactor are not
fully utilized.
Applications
• Hydrogenation of the Vegetable oil.
• Polymerization of ethylene.
• Waste water treatment.
• Oxidation of toluene to benzoic acid.
• Stack gas scrubbing with lime or magnesia.
• Olefin polymerization using catalyst suspension.
Reference
• Chaudhari, R. V., and P. A. Ramachandran. "Three phase slurry reactors." AIChE
Journal 26.2 (1980): 177-201.
• Buwa, Vivek V., Shantanu Roy, and Vivek V. Ranade. "Three‐phase slurry
reactors." Multiphase Catalytic Reactors: Theory, Design, Manufacturing, and
Applications (2016): 132-155.
• Zhang, Xinyu, and Goodarz Ahmadi. "Eulerian–Lagrangian simulations of liquid–gas–
solid flows in three-phase slurry reactors." Chemical Engineering Science 60.18
(2005): 5089-5104.
• Li, Hanning, and A. Prakash. "Heat transfer and hydrodynamics in a three-phase slurry
bubble column." Industrial & engineering chemistry research36.11 (1997): 4688-4694.
• Beenackers, A. A. C. M., and Willibrordus Petrus Maria Van Swaaij. "Mass transfer in
gas—liquid slurry reactors." Chemical Engineering Science 48.18 (1993): 3109-3139.
Thank You………………..!!!!!!!!!!!!!

More Related Content

What's hot (20)

Chemical reaction engineering
Chemical reaction engineeringChemical reaction engineering
Chemical reaction engineering
 
Fluidized bed reactor – an overview
Fluidized bed reactor – an overviewFluidized bed reactor – an overview
Fluidized bed reactor – an overview
 
Trickle bed reactor
Trickle bed reactorTrickle bed reactor
Trickle bed reactor
 
Plug Flow Reactor
Plug Flow ReactorPlug Flow Reactor
Plug Flow Reactor
 
Types of reactor
Types of reactorTypes of reactor
Types of reactor
 
Fluidised Bed Bioreactor
Fluidised Bed BioreactorFluidised Bed Bioreactor
Fluidised Bed Bioreactor
 
Slurry reactor Presentation Chemical Engineering CL311
Slurry reactor Presentation Chemical Engineering CL311Slurry reactor Presentation Chemical Engineering CL311
Slurry reactor Presentation Chemical Engineering CL311
 
Reactor types.ppt
Reactor types.pptReactor types.ppt
Reactor types.ppt
 
Batch Reactor
Batch ReactorBatch Reactor
Batch Reactor
 
Batch Reactor
Batch ReactorBatch Reactor
Batch Reactor
 
Ideal reactor
Ideal reactorIdeal reactor
Ideal reactor
 
Tank in series model
Tank in series modelTank in series model
Tank in series model
 
Types of agitators
Types of agitatorsTypes of agitators
Types of agitators
 
Chemical Reactors
Chemical ReactorsChemical Reactors
Chemical Reactors
 
gas absorption
gas absorptiongas absorption
gas absorption
 
Bubble Column Reactors
Bubble Column ReactorsBubble Column Reactors
Bubble Column Reactors
 
Bollman extractor
Bollman extractorBollman extractor
Bollman extractor
 
Non ideal flow
Non ideal flowNon ideal flow
Non ideal flow
 
Packed bed reactors
Packed bed reactorsPacked bed reactors
Packed bed reactors
 
Aqueous two phase extraction
Aqueous two phase extractionAqueous two phase extraction
Aqueous two phase extraction
 

Similar to Slurry reactors

DIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTORDIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTORUrmilapai
 
DIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTORDIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTORUrmila N Pai
 
Catalyrtic Reactors PPT.pdf
Catalyrtic Reactors PPT.pdfCatalyrtic Reactors PPT.pdf
Catalyrtic Reactors PPT.pdfDr.Kiran Patil
 
An insight into spray pulsed reactor through mathematical modeling of catalyt...
An insight into spray pulsed reactor through mathematical modeling of catalyt...An insight into spray pulsed reactor through mathematical modeling of catalyt...
An insight into spray pulsed reactor through mathematical modeling of catalyt...Siluvai Antony Praveen
 
The advantages of different types of propellants
The advantages of different types of propellantsThe advantages of different types of propellants
The advantages of different types of propellantsArya Ramaru
 
Reactor kinetics & ; different types of reactor trays
Reactor kinetics & ; different types of reactor traysReactor kinetics & ; different types of reactor trays
Reactor kinetics & ; different types of reactor traysPrem Baboo
 
D041222231
D041222231D041222231
D041222231IOSR-JEN
 
Lab cstr in series
Lab cstr in seriesLab cstr in series
Lab cstr in seriesAzlan Skool
 
Introduction to Chemical Reactors and Chemical Reaction Engineering
Introduction to Chemical Reactors and Chemical Reaction EngineeringIntroduction to Chemical Reactors and Chemical Reaction Engineering
Introduction to Chemical Reactors and Chemical Reaction EngineeringMuhammad Sajid Liaqat
 
Continuous flow reaction/ Chemistry
Continuous flow reaction/ ChemistryContinuous flow reaction/ Chemistry
Continuous flow reaction/ ChemistryGagangowda58
 
Selection and sizing of homogeneous and catalytic reactors
Selection and sizing of homogeneous and catalytic reactorsSelection and sizing of homogeneous and catalytic reactors
Selection and sizing of homogeneous and catalytic reactorschemnidhi
 
Surface Chemistry and its impacts on chemical and electronic industry
Surface Chemistry and its impacts on chemical and electronic industrySurface Chemistry and its impacts on chemical and electronic industry
Surface Chemistry and its impacts on chemical and electronic industryKramikauniyal
 

Similar to Slurry reactors (20)

DIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTORDIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTOR
 
DIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTORDIFFERENT CONFIGURATIONS OF BIOREACTOR
DIFFERENT CONFIGURATIONS OF BIOREACTOR
 
Catalyrtic Reactors PPT.pdf
Catalyrtic Reactors PPT.pdfCatalyrtic Reactors PPT.pdf
Catalyrtic Reactors PPT.pdf
 
An insight into spray pulsed reactor through mathematical modeling of catalyt...
An insight into spray pulsed reactor through mathematical modeling of catalyt...An insight into spray pulsed reactor through mathematical modeling of catalyt...
An insight into spray pulsed reactor through mathematical modeling of catalyt...
 
Catalytic reactors
Catalytic reactorsCatalytic reactors
Catalytic reactors
 
Catalysis and Catalytic reactors RE10
Catalysis and Catalytic reactors RE10Catalysis and Catalytic reactors RE10
Catalysis and Catalytic reactors RE10
 
The advantages of different types of propellants
The advantages of different types of propellantsThe advantages of different types of propellants
The advantages of different types of propellants
 
Reactor kinetics & ; different types of reactor trays
Reactor kinetics & ; different types of reactor traysReactor kinetics & ; different types of reactor trays
Reactor kinetics & ; different types of reactor trays
 
Chemical reactors
Chemical reactorsChemical reactors
Chemical reactors
 
5758.ppt
5758.ppt5758.ppt
5758.ppt
 
D041222231
D041222231D041222231
D041222231
 
Lab cstr in series
Lab cstr in seriesLab cstr in series
Lab cstr in series
 
Introduction to Chemical Reactors and Chemical Reaction Engineering
Introduction to Chemical Reactors and Chemical Reaction EngineeringIntroduction to Chemical Reactors and Chemical Reaction Engineering
Introduction to Chemical Reactors and Chemical Reaction Engineering
 
4 reactors
4 reactors4 reactors
4 reactors
 
Continuous flow reaction/ Chemistry
Continuous flow reaction/ ChemistryContinuous flow reaction/ Chemistry
Continuous flow reaction/ Chemistry
 
Selection and sizing of homogeneous and catalytic reactors
Selection and sizing of homogeneous and catalytic reactorsSelection and sizing of homogeneous and catalytic reactors
Selection and sizing of homogeneous and catalytic reactors
 
Reactor Design
Reactor DesignReactor Design
Reactor Design
 
Group 2
Group 2Group 2
Group 2
 
Surface Chemistry and its impacts on chemical and electronic industry
Surface Chemistry and its impacts on chemical and electronic industrySurface Chemistry and its impacts on chemical and electronic industry
Surface Chemistry and its impacts on chemical and electronic industry
 
RD Lab - Exp-13 - G-A1.pdf
RD Lab - Exp-13 - G-A1.pdfRD Lab - Exp-13 - G-A1.pdf
RD Lab - Exp-13 - G-A1.pdf
 

Recently uploaded

Seminar of U.V. Spectroscopy by SAMIR PANDA
 Seminar of U.V. Spectroscopy by SAMIR PANDA Seminar of U.V. Spectroscopy by SAMIR PANDA
Seminar of U.V. Spectroscopy by SAMIR PANDASAMIR PANDA
 
Plant Biotechnology undergraduates note.pptx
Plant Biotechnology undergraduates note.pptxPlant Biotechnology undergraduates note.pptx
Plant Biotechnology undergraduates note.pptxyusufzako14
 
Predicting property prices with machine learning algorithms.pdf
Predicting property prices with machine learning algorithms.pdfPredicting property prices with machine learning algorithms.pdf
Predicting property prices with machine learning algorithms.pdfbinhminhvu04
 
erythropoiesis-I_mechanism& clinical significance.pptx
erythropoiesis-I_mechanism& clinical significance.pptxerythropoiesis-I_mechanism& clinical significance.pptx
erythropoiesis-I_mechanism& clinical significance.pptxmuralinath2
 
GLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptx
GLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptxGLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptx
GLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptxSultanMuhammadGhauri
 
GEOLOGICAL FIELD REPORT On Kaptai Rangamati Road-Cut Section.pdf
GEOLOGICAL FIELD REPORT  On  Kaptai Rangamati Road-Cut Section.pdfGEOLOGICAL FIELD REPORT  On  Kaptai Rangamati Road-Cut Section.pdf
GEOLOGICAL FIELD REPORT On Kaptai Rangamati Road-Cut Section.pdfUniversity of Barishal
 
Viksit bharat till 2047 India@2047.pptx
Viksit bharat till 2047  India@2047.pptxViksit bharat till 2047  India@2047.pptx
Viksit bharat till 2047 India@2047.pptxrakeshsharma20142015
 
Hemoglobin metabolism_pathophysiology.pptx
Hemoglobin metabolism_pathophysiology.pptxHemoglobin metabolism_pathophysiology.pptx
Hemoglobin metabolism_pathophysiology.pptxmuralinath2
 
Lab report on liquid viscosity of glycerin
Lab report on liquid viscosity of glycerinLab report on liquid viscosity of glycerin
Lab report on liquid viscosity of glycerinossaicprecious19
 
FAIRSpectra - Towards a common data file format for SIMS images
FAIRSpectra - Towards a common data file format for SIMS imagesFAIRSpectra - Towards a common data file format for SIMS images
FAIRSpectra - Towards a common data file format for SIMS imagesAlex Henderson
 
Body fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptx
Body fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptxBody fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptx
Body fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptxmuralinath2
 
extra-chromosomal-inheritance[1].pptx.pdfpdf
extra-chromosomal-inheritance[1].pptx.pdfpdfextra-chromosomal-inheritance[1].pptx.pdfpdf
extra-chromosomal-inheritance[1].pptx.pdfpdfDiyaBiswas10
 
ESR_factors_affect-clinic significance-Pathysiology.pptx
ESR_factors_affect-clinic significance-Pathysiology.pptxESR_factors_affect-clinic significance-Pathysiology.pptx
ESR_factors_affect-clinic significance-Pathysiology.pptxmuralinath2
 
Anemia_ different types_causes_ conditions
Anemia_ different types_causes_ conditionsAnemia_ different types_causes_ conditions
Anemia_ different types_causes_ conditionsmuralinath2
 
INSIGHT Partner Profile: Tampere University
INSIGHT Partner Profile: Tampere UniversityINSIGHT Partner Profile: Tampere University
INSIGHT Partner Profile: Tampere UniversitySteffi Friedrichs
 
Richard's aventures in two entangled wonderlands
Richard's aventures in two entangled wonderlandsRichard's aventures in two entangled wonderlands
Richard's aventures in two entangled wonderlandsRichard Gill
 
SAMPLING.pptx for analystical chemistry sample techniques
SAMPLING.pptx for analystical chemistry sample techniquesSAMPLING.pptx for analystical chemistry sample techniques
SAMPLING.pptx for analystical chemistry sample techniquesrodneykiptoo8
 
EY - Supply Chain Services 2018_template.pptx
EY - Supply Chain Services 2018_template.pptxEY - Supply Chain Services 2018_template.pptx
EY - Supply Chain Services 2018_template.pptxAlguinaldoKong
 
RNA INTERFERENCE: UNRAVELING GENETIC SILENCING
RNA INTERFERENCE: UNRAVELING GENETIC SILENCINGRNA INTERFERENCE: UNRAVELING GENETIC SILENCING
RNA INTERFERENCE: UNRAVELING GENETIC SILENCINGAADYARAJPANDEY1
 
(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...
(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...
(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...Scintica Instrumentation
 

Recently uploaded (20)

Seminar of U.V. Spectroscopy by SAMIR PANDA
 Seminar of U.V. Spectroscopy by SAMIR PANDA Seminar of U.V. Spectroscopy by SAMIR PANDA
Seminar of U.V. Spectroscopy by SAMIR PANDA
 
Plant Biotechnology undergraduates note.pptx
Plant Biotechnology undergraduates note.pptxPlant Biotechnology undergraduates note.pptx
Plant Biotechnology undergraduates note.pptx
 
Predicting property prices with machine learning algorithms.pdf
Predicting property prices with machine learning algorithms.pdfPredicting property prices with machine learning algorithms.pdf
Predicting property prices with machine learning algorithms.pdf
 
erythropoiesis-I_mechanism& clinical significance.pptx
erythropoiesis-I_mechanism& clinical significance.pptxerythropoiesis-I_mechanism& clinical significance.pptx
erythropoiesis-I_mechanism& clinical significance.pptx
 
GLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptx
GLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptxGLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptx
GLOBAL AND LOCAL SCENARIO OF FOOD AND NUTRITION.pptx
 
GEOLOGICAL FIELD REPORT On Kaptai Rangamati Road-Cut Section.pdf
GEOLOGICAL FIELD REPORT  On  Kaptai Rangamati Road-Cut Section.pdfGEOLOGICAL FIELD REPORT  On  Kaptai Rangamati Road-Cut Section.pdf
GEOLOGICAL FIELD REPORT On Kaptai Rangamati Road-Cut Section.pdf
 
Viksit bharat till 2047 India@2047.pptx
Viksit bharat till 2047  India@2047.pptxViksit bharat till 2047  India@2047.pptx
Viksit bharat till 2047 India@2047.pptx
 
Hemoglobin metabolism_pathophysiology.pptx
Hemoglobin metabolism_pathophysiology.pptxHemoglobin metabolism_pathophysiology.pptx
Hemoglobin metabolism_pathophysiology.pptx
 
Lab report on liquid viscosity of glycerin
Lab report on liquid viscosity of glycerinLab report on liquid viscosity of glycerin
Lab report on liquid viscosity of glycerin
 
FAIRSpectra - Towards a common data file format for SIMS images
FAIRSpectra - Towards a common data file format for SIMS imagesFAIRSpectra - Towards a common data file format for SIMS images
FAIRSpectra - Towards a common data file format for SIMS images
 
Body fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptx
Body fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptxBody fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptx
Body fluids_tonicity_dehydration_hypovolemia_hypervolemia.pptx
 
extra-chromosomal-inheritance[1].pptx.pdfpdf
extra-chromosomal-inheritance[1].pptx.pdfpdfextra-chromosomal-inheritance[1].pptx.pdfpdf
extra-chromosomal-inheritance[1].pptx.pdfpdf
 
ESR_factors_affect-clinic significance-Pathysiology.pptx
ESR_factors_affect-clinic significance-Pathysiology.pptxESR_factors_affect-clinic significance-Pathysiology.pptx
ESR_factors_affect-clinic significance-Pathysiology.pptx
 
Anemia_ different types_causes_ conditions
Anemia_ different types_causes_ conditionsAnemia_ different types_causes_ conditions
Anemia_ different types_causes_ conditions
 
INSIGHT Partner Profile: Tampere University
INSIGHT Partner Profile: Tampere UniversityINSIGHT Partner Profile: Tampere University
INSIGHT Partner Profile: Tampere University
 
Richard's aventures in two entangled wonderlands
Richard's aventures in two entangled wonderlandsRichard's aventures in two entangled wonderlands
Richard's aventures in two entangled wonderlands
 
SAMPLING.pptx for analystical chemistry sample techniques
SAMPLING.pptx for analystical chemistry sample techniquesSAMPLING.pptx for analystical chemistry sample techniques
SAMPLING.pptx for analystical chemistry sample techniques
 
EY - Supply Chain Services 2018_template.pptx
EY - Supply Chain Services 2018_template.pptxEY - Supply Chain Services 2018_template.pptx
EY - Supply Chain Services 2018_template.pptx
 
RNA INTERFERENCE: UNRAVELING GENETIC SILENCING
RNA INTERFERENCE: UNRAVELING GENETIC SILENCINGRNA INTERFERENCE: UNRAVELING GENETIC SILENCING
RNA INTERFERENCE: UNRAVELING GENETIC SILENCING
 
(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...
(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...
(May 29th, 2024) Advancements in Intravital Microscopy- Insights for Preclini...
 

Slurry reactors

  • 1. Presented By:- Nitin Kumar Singh MT17CML009 VNIT, Nagpur
  • 2. Contents Introduction Theory 1. Construction 2.Types of Slurry Reactors Design Equation Advantages and Disadvantages Applications References
  • 3. Introduction • A slurry is a thin sloppy mud or cement or, in extended use, any fluid mixture of a pulverized solid with a liquid (usually water), often used as a convenient way of handling solids in bulk. • Slurries behave in some ways like thick fluids, flowing under gravity but are also capable of being pumped if not too thick.
  • 4. Theory • A Slurry reactor is a multiphase reactor system in which all the three phases i.e. Solids , Liquids and Gases can be reacted. • In the Slurry Reactors the two-phase or the three-phase catalytic reactions can be carried out. • In three –phase reactor, gas and liquid reactants are brought into contact with solid catalyst particles. • In two–phase reactor, fluid phase is usually liquid reactant in contact with the solid catalyst. • The reaction of gaseous reactant with catalyst is usually carried out in fixed bed reactor. • In three –phase slurry reactor the gaseous reactant and solid catalysts are dispersed in continuous liquid phase by mechanical agitation using stirrer. The efficient stirring ensures nearly uniform composition throughout the reactor
  • 5. Reaction Steps in a Slurry Reactor : 1. Mass Transfer of Gas through Gas film. 2. Mass Transfer of Gas Through Liquid. 3. Dissolving bubble gas. 4. Mass transfer of dissolved gas through liquid film. 5. Reaction on the surface of the catalyst.
  • 6. 1. Construction  Reaction Tank  Spargers  Cooling Coils  Probes Stirrer
  • 7. 2. Types of Slurry Reactors • Bubble Column Reactor • Fischer Tropsch Reactor • Slurry Batch Reactor
  • 10. Slurry Batch Reactor for Hydrogenation
  • 11. Design Equation for a Slurry Reactor  Rate can be expressed as:- rab= kgag(Cg- Cgi) = klag(Cli-Cl) = kcac(Cl-Cs) = ηkaccs and we know, cgi= Hcli 𝑟 = 𝑎 𝑐 𝐶𝑔 𝑎 𝑐 𝑎 𝑔 ∗ 1 𝑘 𝑔 + 𝑎 𝑐 𝑎 𝑔 ⋅ 𝐻 𝑘 𝐿 + 𝐻 𝑘 𝑐 𝑎 𝑐 + 𝐻 𝜂𝑘𝑎 𝑐
  • 12. Where, rab = Rate of absorbtion kg= Mass transfer coefficient of gas kl= Mass transfer coefficient of liquid k = Mass transfer coefficient of solid ag= Bubble surface area ac= Surface area of the catalyst(solid) η= Effectiveness factor H= Henry’s law constant Cg= Concentration of the gas in bulk Cgi= Concentration of the gas at the interface Cl= Concentration of the liquid in bulk Cli= Concentration of the liquid at the interface Cs= Concentration of the solid catalyst
  • 13. Advantages • High heat capacity to provide good temperature control. • Potentially high reaction rate per unit volume of reactor if the catalyst is highly active. • Easy heat recovery. • Adaptability to either batch or flow processing. • The catalyst may readily be removed and replaced if its working life is relatively short. • Because of high intraparticle diffusion rate, small particles can be used.
  • 14. Disadvantages • Generation of fine particles by abrasion of the catalyst. • Catalyst removal by filtration may provoke problems with possible plugging difficulties on filters, further time of operation, and the costs of filtering systems may be a substantial portion of the capital investment. • Higher catalyst consumption than that of fixed - bed reactors. • Back mixed flow and the volume of the reactor are not fully utilized.
  • 15. Applications • Hydrogenation of the Vegetable oil. • Polymerization of ethylene. • Waste water treatment. • Oxidation of toluene to benzoic acid. • Stack gas scrubbing with lime or magnesia. • Olefin polymerization using catalyst suspension.
  • 16. Reference • Chaudhari, R. V., and P. A. Ramachandran. "Three phase slurry reactors." AIChE Journal 26.2 (1980): 177-201. • Buwa, Vivek V., Shantanu Roy, and Vivek V. Ranade. "Three‐phase slurry reactors." Multiphase Catalytic Reactors: Theory, Design, Manufacturing, and Applications (2016): 132-155. • Zhang, Xinyu, and Goodarz Ahmadi. "Eulerian–Lagrangian simulations of liquid–gas– solid flows in three-phase slurry reactors." Chemical Engineering Science 60.18 (2005): 5089-5104. • Li, Hanning, and A. Prakash. "Heat transfer and hydrodynamics in a three-phase slurry bubble column." Industrial & engineering chemistry research36.11 (1997): 4688-4694. • Beenackers, A. A. C. M., and Willibrordus Petrus Maria Van Swaaij. "Mass transfer in gas—liquid slurry reactors." Chemical Engineering Science 48.18 (1993): 3109-3139.

Editor's Notes

  1. Catalysts are transition elements  cobalt, iron, and ruthenium,nickel. (2n + 1) H2 + n CO → CnH(2n+2) + n H2O