SlideShare una empresa de Scribd logo
1 de 12
Bioreactor
Engineering
Presented by
Dr.J.Kanimozhi
Department of Biotechnology
Kalasalingam Academy of Research and Education
Aeration and Agitation
• To disperse the air bubbles
• To suspend the cells
• To enhance heat and mass
transfer in the medium
• Maximizing the interfacial area
between the gaseous and
aqueous phase
Effect of Agitation
• The degree of agitation has been demonstrated to a profound
effect on the oxygen-transfer efficiency agitated fermenter.
• (i) Agitation increases the area available for oxygen transfer
by dispersing the air in the culture fluid in the form of small
bubbles.
• (ij) Agitation delays the escape of air bubbles from the liquid.
• (iij) Agitation prevents coalescence of air bubbles.
• (iv) Agitation decreases the thickness of the liquid film at the
gas-liquid interface by creating turbulence in the culture fluid.
Aeration
• Diffused aeration devices have been designed and
developed to dissolve oxygen into bioreactors. These
have ranged from simple individual orifices (holes and
slots) drilled in a section of pipe to elaborate devices
made up of small diameter particles fused together.
• Although, their size, shape, and materials of
construction may vary considerably, diffused aeration
devices are usually classified as either fine or coarse
bubble referring to the relative diameter of the bubble
produced. The demarcation between fine and coarse
bubbles is not well defined.
Oxygen transfer
• Oxygen transfer, the process by which oxygen is transferred
from the gaseous to the liquid phase, is a vital part of a
number of wastewater treatment processes. The functioning
of aerobic processes, such as activated sludge, depends on the
availability of sufficient quantities of oxygen.
• Because of the low solubility of oxygen and the consequent
low rate of oxygen transfer, sufficient oxygen to meet the
requirements of aerobic waste treatment does not enter water
through normal surface air-water interface. To transfer the
large quantities of oxygen that are needed, additional
interfaces must be formed.
Gas Bubbles
• The diffused or bubble
aeration process consists of
contacting gas bubbles with
water for the purpose of
transferring gas to the water.
The most commonly used
diffuser system consists of a
matrix of perforated tubes (or
membranes) or porous plates
arranged near the bottom of
the tank to provide maximum
gas to water contact.
Effect of aeration on oxygen transfer
• For good performance the rate of supply of dissolved oxygen should be
equal to the rate of oxygen consumption exerted by the mixed liquor
under any given set of circumstances.
• In diffused air systems bubbles are distributed from diffusers at the base
of the reactor. Oxygen transfer takes place from the rising bubbles to the
mixed liquor to supply the oxygen requirements for the biological
process.
• For a given volume of water being aerated, aeration devices are
evaluated on the basis of the quantity of oxygen transferred per unit of
air introduced to the water for equivalent conditions.
• A number of equipment and operational parameters interact to influence
the efficiency and rate of transfer of oxygen such as; tank length, depth
and width and aeration size, type and location and, airflow rate.
Correlations for oxygen mass transfer
coefficients
• Predictions of the rate of absorption of a gaseous material in a
stirred tank are usually based on correlations of overall
volumetric mass transfer coefficient (KLa) with mechanical
agitation power per unit volume (P/VL) and gas sparging rate
expressed as the superficial velocity (Vg).
• The power input per unit volume (P/VL) and superficial gas
velocity Vg are major factors in these KLa correlations.
• There are a lot of proposed equations for the volumetric mass
transfer coefficient as a function of different variables in
previous studies. The following equation is frequently found
in the literature
Where:
Pg
the mechanical agitation power in gas liquid dispersion(W)
VL
liquid volume (m3)
Vg
gas superficial velocity (m/s)
α
constant
β and c
Exponents
Heat Transfer in Bioreactors
In agitated bioreactors, heat transfer may be affected by one of the following
three configurations.
• Jackets surrounding the surface of the vessel
• Internal surfaces, such as coils or vertical baffles
• Circulation through an external heat exchanger
• The rate of heat transfer to the heat exchanger (Qhxcr) is described by the
following equation…
• Q= UAΔT
• Where U is the overall heat transfer coefficient, A is the area available for
heat transfer and ΔT is the driving force (Tbroth – Thxcr)
• Providing the broth and coolant are well mixed, U can be calculated on the
basis of the prevailing resistances to heat transfer in the system
• The process side broth interface
• The process-side fouling
• The vessel or coil wall
• The service side fouling
• The service side boundary layer
• The following equation may be applied to a jacketed vessel
• 1/U= 1/hi+1/hfi+e/k+1/hfo+1/ho
• e – wall thickness (m)
• k – thermal conductivity (W m-1 K-1)
• Therefore the overall heat transfer coefficient not only depends on the
heat exchanger configuration and on the choice of coolant, it also
depends on the fermentation fluid, it fouling potential and its degree of
mixing.
Thank You

Más contenido relacionado

La actualidad más candente

Water and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreducedWater and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreduced
Tomas Eriksson
 
Hydrodynamics and Heat Transfer through Corrugated Channels A Review
Hydrodynamics and Heat Transfer through Corrugated Channels A ReviewHydrodynamics and Heat Transfer through Corrugated Channels A Review
Hydrodynamics and Heat Transfer through Corrugated Channels A Review
ijtsrd
 
Experimental Investigation on Heat Transfer Analysis in a Cross flow Heat Ex...
Experimental Investigation on Heat Transfer Analysis in a Cross  flow Heat Ex...Experimental Investigation on Heat Transfer Analysis in a Cross  flow Heat Ex...
Experimental Investigation on Heat Transfer Analysis in a Cross flow Heat Ex...
IJMER
 
Study of heat transfer characteristics of laminar air
Study of heat transfer characteristics of laminar airStudy of heat transfer characteristics of laminar air
Study of heat transfer characteristics of laminar air
akdatika
 
Numerical Analysis of Turbulent Momentum and Heat Transfer
Numerical Analysis of Turbulent Momentum and Heat TransferNumerical Analysis of Turbulent Momentum and Heat Transfer
Numerical Analysis of Turbulent Momentum and Heat Transfer
Nate Werner
 
Direct contact or open condensers
Direct contact or open condensersDirect contact or open condensers
Direct contact or open condensers
Sam
 
A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...
A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...
A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...
Ruo-Qian (Roger) Wang
 
CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...
CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...
CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...
ijtsrd
 

La actualidad más candente (20)

MET 214 Module 4
MET 214 Module 4MET 214 Module 4
MET 214 Module 4
 
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
IRJET- Numerical Investigation on the Heat Transfer Characteristics of Alumin...
 
Experimental Investigation on the Heat Transfer Coefficient of the Thermosyph...
Experimental Investigation on the Heat Transfer Coefficient of the Thermosyph...Experimental Investigation on the Heat Transfer Coefficient of the Thermosyph...
Experimental Investigation on the Heat Transfer Coefficient of the Thermosyph...
 
Water and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreducedWater and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreduced
 
Hydrodynamics and Heat Transfer through Corrugated Channels A Review
Hydrodynamics and Heat Transfer through Corrugated Channels A ReviewHydrodynamics and Heat Transfer through Corrugated Channels A Review
Hydrodynamics and Heat Transfer through Corrugated Channels A Review
 
Experimental Investigation on Heat Transfer Analysis in a Cross flow Heat Ex...
Experimental Investigation on Heat Transfer Analysis in a Cross  flow Heat Ex...Experimental Investigation on Heat Transfer Analysis in a Cross  flow Heat Ex...
Experimental Investigation on Heat Transfer Analysis in a Cross flow Heat Ex...
 
Study of heat transfer characteristics of laminar air
Study of heat transfer characteristics of laminar airStudy of heat transfer characteristics of laminar air
Study of heat transfer characteristics of laminar air
 
Lg3420362048
Lg3420362048Lg3420362048
Lg3420362048
 
International Journal of Engineering and Science Invention (IJESI)
International Journal of Engineering and Science Invention (IJESI)International Journal of Engineering and Science Invention (IJESI)
International Journal of Engineering and Science Invention (IJESI)
 
Numerical Analysis of Turbulent Momentum and Heat Transfer
Numerical Analysis of Turbulent Momentum and Heat TransferNumerical Analysis of Turbulent Momentum and Heat Transfer
Numerical Analysis of Turbulent Momentum and Heat Transfer
 
Direct contact or open condensers
Direct contact or open condensersDirect contact or open condensers
Direct contact or open condensers
 
Steam condensors
Steam condensorsSteam condensors
Steam condensors
 
Steam condenser copy
Steam condenser    copySteam condenser    copy
Steam condenser copy
 
A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...
A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...
A Novel Bio-inspired Pressure Compensating Emitter for Low-Cost Drip Irrigati...
 
Steam condenser
Steam condenserSteam condenser
Steam condenser
 
Wang W., Makeev A. Passive methods analysis of heat transfer intensification ...
Wang W., Makeev A. Passive methods analysis of heat transfer intensification ...Wang W., Makeev A. Passive methods analysis of heat transfer intensification ...
Wang W., Makeev A. Passive methods analysis of heat transfer intensification ...
 
Eu4301883896
Eu4301883896Eu4301883896
Eu4301883896
 
IJETAE_0416_55
IJETAE_0416_55IJETAE_0416_55
IJETAE_0416_55
 
CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...
CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...
CFD Analysis for Heat Transfer Enhancement of a Corrugated Plate Heat Exchang...
 
Heat transfer & heat exchanger
Heat transfer & heat exchangerHeat transfer & heat exchanger
Heat transfer & heat exchanger
 

Similar a Jk aeration and agitation and heat transfer in bioreactors

Water and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreducedWater and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreduced
Renan Norbiate de Melo
 
2751170_NaturalgasdehydrationbyMolecularsieves.pptx
2751170_NaturalgasdehydrationbyMolecularsieves.pptx2751170_NaturalgasdehydrationbyMolecularsieves.pptx
2751170_NaturalgasdehydrationbyMolecularsieves.pptx
Ali N Jasim
 
Gas Transfer for Water Treatment - Concept and Fundamental
Gas Transfer for Water Treatment - Concept and FundamentalGas Transfer for Water Treatment - Concept and Fundamental
Gas Transfer for Water Treatment - Concept and Fundamental
AllenKurniawan2
 
An overview on_biofiltration_modeling
An overview on_biofiltration_modelingAn overview on_biofiltration_modeling
An overview on_biofiltration_modeling
Avi Kumar
 

Similar a Jk aeration and agitation and heat transfer in bioreactors (20)

Aerated Lagoons
Aerated Lagoons Aerated Lagoons
Aerated Lagoons
 
Bubble column reactor
Bubble column reactorBubble column reactor
Bubble column reactor
 
T044130133
T044130133T044130133
T044130133
 
Cpb oxygenators DR NIKUNJ R SHEKHADA (MBBS,MS GEN SURG ,DNB CTS SR)
Cpb oxygenators  DR  NIKUNJ R SHEKHADA (MBBS,MS GEN SURG ,DNB CTS SR)Cpb oxygenators  DR  NIKUNJ R SHEKHADA (MBBS,MS GEN SURG ,DNB CTS SR)
Cpb oxygenators DR NIKUNJ R SHEKHADA (MBBS,MS GEN SURG ,DNB CTS SR)
 
Bioreactors.pptx
Bioreactors.pptxBioreactors.pptx
Bioreactors.pptx
 
Arvind PPT.pptx
Arvind PPT.pptxArvind PPT.pptx
Arvind PPT.pptx
 
Water and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreducedWater and Waste Water Treatment - EN - 140716 - webreduced
Water and Waste Water Treatment - EN - 140716 - webreduced
 
ASTP.pptx
ASTP.pptxASTP.pptx
ASTP.pptx
 
The effect of hydraulic structure on aeration performance
 The effect of hydraulic structure on aeration performance  The effect of hydraulic structure on aeration performance
The effect of hydraulic structure on aeration performance
 
Effect of different impellers and baffles on aerobic stirred tank fermenter u...
Effect of different impellers and baffles on aerobic stirred tank fermenter u...Effect of different impellers and baffles on aerobic stirred tank fermenter u...
Effect of different impellers and baffles on aerobic stirred tank fermenter u...
 
Effect of different impellers and baffles on aerobic stirred tank fermenter u...
Effect of different impellers and baffles on aerobic stirred tank fermenter u...Effect of different impellers and baffles on aerobic stirred tank fermenter u...
Effect of different impellers and baffles on aerobic stirred tank fermenter u...
 
L12 -SECONDARY TREATMENT OF SEWAGE ACTIVATED SLUDGE PLANT.pptx
L12 -SECONDARY TREATMENT OF SEWAGE ACTIVATED SLUDGE PLANT.pptxL12 -SECONDARY TREATMENT OF SEWAGE ACTIVATED SLUDGE PLANT.pptx
L12 -SECONDARY TREATMENT OF SEWAGE ACTIVATED SLUDGE PLANT.pptx
 
2751170_NaturalgasdehydrationbyMolecularsieves.pptx
2751170_NaturalgasdehydrationbyMolecularsieves.pptx2751170_NaturalgasdehydrationbyMolecularsieves.pptx
2751170_NaturalgasdehydrationbyMolecularsieves.pptx
 
Single-Phase Heat Transfer and Pressure Drop In the Micro-Fin Tube with Coil...
Single-Phase Heat Transfer and Pressure Drop In the Micro-Fin  Tube with Coil...Single-Phase Heat Transfer and Pressure Drop In the Micro-Fin  Tube with Coil...
Single-Phase Heat Transfer and Pressure Drop In the Micro-Fin Tube with Coil...
 
Gas Transfer for Water Treatment - Concept and Fundamental
Gas Transfer for Water Treatment - Concept and FundamentalGas Transfer for Water Treatment - Concept and Fundamental
Gas Transfer for Water Treatment - Concept and Fundamental
 
Three phase fluidization
Three phase fluidizationThree phase fluidization
Three phase fluidization
 
A REPORT ON HEAT TRANSFER OPTIMIZATION OFSHELL AND TUBE HEAT EXCHANGER USING ...
A REPORT ON HEAT TRANSFER OPTIMIZATION OFSHELL AND TUBE HEAT EXCHANGER USING ...A REPORT ON HEAT TRANSFER OPTIMIZATION OFSHELL AND TUBE HEAT EXCHANGER USING ...
A REPORT ON HEAT TRANSFER OPTIMIZATION OFSHELL AND TUBE HEAT EXCHANGER USING ...
 
Bubble and Airlift bioreactors types and applications
Bubble and Airlift bioreactors types and applicationsBubble and Airlift bioreactors types and applications
Bubble and Airlift bioreactors types and applications
 
An overview on_biofiltration_modeling
An overview on_biofiltration_modelingAn overview on_biofiltration_modeling
An overview on_biofiltration_modeling
 
Cryogenic Chilldown of Liquid Nitrigen.pptx
Cryogenic Chilldown of Liquid Nitrigen.pptxCryogenic Chilldown of Liquid Nitrigen.pptx
Cryogenic Chilldown of Liquid Nitrigen.pptx
 

Último

Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
Epec Engineered Technologies
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
MayuraD1
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Kandungan 087776558899
 
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments""Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
mphochane1998
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
Neometrix_Engineering_Pvt_Ltd
 
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills KuwaitKuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
jaanualu31
 

Último (20)

Moment Distribution Method For Btech Civil
Moment Distribution Method For Btech CivilMoment Distribution Method For Btech Civil
Moment Distribution Method For Btech Civil
 
AIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech studentsAIRCANVAS[1].pdf mini project for btech students
AIRCANVAS[1].pdf mini project for btech students
 
Standard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power PlayStandard vs Custom Battery Packs - Decoding the Power Play
Standard vs Custom Battery Packs - Decoding the Power Play
 
Wadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptxWadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptx
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 
DeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakesDeepFakes presentation : brief idea of DeepFakes
DeepFakes presentation : brief idea of DeepFakes
 
Engineering Drawing focus on projection of planes
Engineering Drawing focus on projection of planesEngineering Drawing focus on projection of planes
Engineering Drawing focus on projection of planes
 
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLEGEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
GEAR TRAIN- BASIC CONCEPTS AND WORKING PRINCIPLE
 
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptxS1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
S1S2 B.Arch MGU - HOA1&2 Module 3 -Temple Architecture of Kerala.pptx
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdf
 
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments""Lesotho Leaps Forward: A Chronicle of Transformative Developments"
"Lesotho Leaps Forward: A Chronicle of Transformative Developments"
 
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKARHAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
HAND TOOLS USED AT ELECTRONICS WORK PRESENTED BY KOUSTAV SARKAR
 
PE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and propertiesPE 459 LECTURE 2- natural gas basic concepts and properties
PE 459 LECTURE 2- natural gas basic concepts and properties
 
Integrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - NeometrixIntegrated Test Rig For HTFE-25 - Neometrix
Integrated Test Rig For HTFE-25 - Neometrix
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torque
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
 
Computer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to ComputersComputer Lecture 01.pptxIntroduction to Computers
Computer Lecture 01.pptxIntroduction to Computers
 
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills KuwaitKuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
Kuwait City MTP kit ((+919101817206)) Buy Abortion Pills Kuwait
 

Jk aeration and agitation and heat transfer in bioreactors

  • 1. Bioreactor Engineering Presented by Dr.J.Kanimozhi Department of Biotechnology Kalasalingam Academy of Research and Education
  • 2. Aeration and Agitation • To disperse the air bubbles • To suspend the cells • To enhance heat and mass transfer in the medium • Maximizing the interfacial area between the gaseous and aqueous phase
  • 3. Effect of Agitation • The degree of agitation has been demonstrated to a profound effect on the oxygen-transfer efficiency agitated fermenter. • (i) Agitation increases the area available for oxygen transfer by dispersing the air in the culture fluid in the form of small bubbles. • (ij) Agitation delays the escape of air bubbles from the liquid. • (iij) Agitation prevents coalescence of air bubbles. • (iv) Agitation decreases the thickness of the liquid film at the gas-liquid interface by creating turbulence in the culture fluid.
  • 4. Aeration • Diffused aeration devices have been designed and developed to dissolve oxygen into bioreactors. These have ranged from simple individual orifices (holes and slots) drilled in a section of pipe to elaborate devices made up of small diameter particles fused together. • Although, their size, shape, and materials of construction may vary considerably, diffused aeration devices are usually classified as either fine or coarse bubble referring to the relative diameter of the bubble produced. The demarcation between fine and coarse bubbles is not well defined.
  • 5. Oxygen transfer • Oxygen transfer, the process by which oxygen is transferred from the gaseous to the liquid phase, is a vital part of a number of wastewater treatment processes. The functioning of aerobic processes, such as activated sludge, depends on the availability of sufficient quantities of oxygen. • Because of the low solubility of oxygen and the consequent low rate of oxygen transfer, sufficient oxygen to meet the requirements of aerobic waste treatment does not enter water through normal surface air-water interface. To transfer the large quantities of oxygen that are needed, additional interfaces must be formed.
  • 6. Gas Bubbles • The diffused or bubble aeration process consists of contacting gas bubbles with water for the purpose of transferring gas to the water. The most commonly used diffuser system consists of a matrix of perforated tubes (or membranes) or porous plates arranged near the bottom of the tank to provide maximum gas to water contact.
  • 7. Effect of aeration on oxygen transfer • For good performance the rate of supply of dissolved oxygen should be equal to the rate of oxygen consumption exerted by the mixed liquor under any given set of circumstances. • In diffused air systems bubbles are distributed from diffusers at the base of the reactor. Oxygen transfer takes place from the rising bubbles to the mixed liquor to supply the oxygen requirements for the biological process. • For a given volume of water being aerated, aeration devices are evaluated on the basis of the quantity of oxygen transferred per unit of air introduced to the water for equivalent conditions. • A number of equipment and operational parameters interact to influence the efficiency and rate of transfer of oxygen such as; tank length, depth and width and aeration size, type and location and, airflow rate.
  • 8. Correlations for oxygen mass transfer coefficients • Predictions of the rate of absorption of a gaseous material in a stirred tank are usually based on correlations of overall volumetric mass transfer coefficient (KLa) with mechanical agitation power per unit volume (P/VL) and gas sparging rate expressed as the superficial velocity (Vg). • The power input per unit volume (P/VL) and superficial gas velocity Vg are major factors in these KLa correlations. • There are a lot of proposed equations for the volumetric mass transfer coefficient as a function of different variables in previous studies. The following equation is frequently found in the literature
  • 9. Where: Pg the mechanical agitation power in gas liquid dispersion(W) VL liquid volume (m3) Vg gas superficial velocity (m/s) α constant β and c Exponents
  • 10. Heat Transfer in Bioreactors In agitated bioreactors, heat transfer may be affected by one of the following three configurations. • Jackets surrounding the surface of the vessel • Internal surfaces, such as coils or vertical baffles • Circulation through an external heat exchanger • The rate of heat transfer to the heat exchanger (Qhxcr) is described by the following equation… • Q= UAΔT • Where U is the overall heat transfer coefficient, A is the area available for heat transfer and ΔT is the driving force (Tbroth – Thxcr) • Providing the broth and coolant are well mixed, U can be calculated on the basis of the prevailing resistances to heat transfer in the system
  • 11. • The process side broth interface • The process-side fouling • The vessel or coil wall • The service side fouling • The service side boundary layer • The following equation may be applied to a jacketed vessel • 1/U= 1/hi+1/hfi+e/k+1/hfo+1/ho • e – wall thickness (m) • k – thermal conductivity (W m-1 K-1) • Therefore the overall heat transfer coefficient not only depends on the heat exchanger configuration and on the choice of coolant, it also depends on the fermentation fluid, it fouling potential and its degree of mixing.