SlideShare une entreprise Scribd logo
1  sur  14
CURRENT ADVANCEMENT IN DIFFERENT
GAS-LIQUID OPERATIONS
CONTENT
• Introduction
• Gas Liquid operation equipment
• Extractive distillation
• Advances in Gas Absorption
• High efficiency venturi scrubber
• Advances in Diffusion
• Advances in Stirred Tanks
• Advances in Distillation
• Advances in Venturi Scrubber
INTRODUCTION
• Gas-liquid operations are one of the mass
transfer operation in which two immiscible
phases (gas & liquid) are in direct contact.
• Different Gas-Liquid operations :
1. Distillation (fractional distillation)
2. Gas absorption
3. Stripping
4. Humidification
5. Dehumidification
GAS-LIQUID OPERATION EQUIPMENT
• Sparged Vessel
• Mechanically Agitated Vessel
• Tray Tower
• Venturi Scrubber
• Wetted Wall Tower
• Spray Tower
• Packed Tower
• Distillation Column
EXTRACTIVE DISTILLATION
• In most separation systems, the predominant non ideality
occurs in the liquid phase because of molecular
interactions.
• Azeotropic and low-relative-volatility mixtures are often
present in the separating industry, and their separation
cannot be realized by conventional distillation.
• Extractive distillation is then a suitable widely used
technique for separating azeotropic and low-relative-
volatility mixtures in the pharmaceutical and chemical
industries.
• Given an azeotropic mixture A-B (with A having a lower
boiling temperature than B does), an entrainer E is added
to interact selectively with the original components and
alter their relative volatility, thus enhancing the original
separation.
EXTRACTIVE DISTILLATION
• Extractive distillation differs from azeotropic distillation by
the fact that the third-body solvent E is fed continuously in
another column position than the feed mixture.
• Extractive distillation has been studied for many decades,
with a rich body of literature. Some main subjects studied
include column with all possible configurations; process
operation polices and strategy; process design, synthesis,
and optimization; determination of separation sequencing;
entrainer design and selection; feasibility studies; and so
on.
• Feasibility studies also contribute to a better understanding
of complex unit operations such as batch extractive
distillation (BED).
ADVANCES IN GAS ABSORPTION
• Micro porous hollow fiber modules offer a larger area per
volume between gas and liquid than that commonly
encountered in packed towers.
• This larger area can be sustained at very low flows, where
packed towers will not be loaded, and at very high flows,
where packed towers will flood.
• As a result, the modules offer the potential of faster mass
transfer. This potential can be compromised by the
resistance to mass transfer of the membrane itself, a
resistance which is increased if the liquid wets the
membrane.
• The results presented in this two-part series show when
the advantage of the increased area is greater than the
disadvantage of the membrane resistance.
HIGH EFFICIENCY VENTURI SCRUBBER
• A high efficiency, compact, and
cost effective scrubber is well
suited for a broad range of
applications. Particulates
removal, fumes removal, and
removal of sulphur oxides and
obnoxious gases are
accomplished with less energy
consumption than other type
of scrubbers. Scrubbers are
available in stainless steel, c.
S., FRP and other plastics.
HIGH EFFICIENCY VENTURI SCRUBBER
• High Efficiency Venturi Scrubber is a most energy
efficient and compact scrubber design developed
through extensive research and testing. Using a
horizontal flow Venturi and an intensive water
distribution system to scrub the contaminated gases
followed by separation of the scrubbing water in a
cyclonic separator, this model has been shown in field
tests to out performance other competitive scrubbers
by a margin of 2:1 ratio in term of outlet loading when
operating on same conditions. Removal of SO2, HCl,
and other acidic gases are accomplished with the use
of alkalinic solution for scrubbing.
ADVANCES IN DIFFUSION
• There are some limitations of the Fick's law for
describing diffusion .
• It is argued that the Maxwell-Stefan formulation
provides the most general, and convenient,
approach for describing mass transport which
takes proper account of thermodynamic non-
idealities and influence of external force fields.
• Furthermore, the Maxwell-Stefan approach can
be extended to handle diffusion in macro- and
micro porous catalysts, adsorbents and
membranes.
ADVANCES IN STIRRED TANKS
• Effects of mechanical and hydrodynamic forces on cells
of the microalga Porphyridium cruentum are reported
for aerated cultures in stirred vessels.
• The specific rate of cell death varied linearly with the
specific interfacial area, suggesting the importance of
bubble-cell contacting in the damaging process.
• At low rates of mechanical agitation, bubble break-up
at the culture surface was the predominant cause of
damage.
• In contrast, at higher agitation intensities, cell damage
was caused predominantly by hydrodynamic stress in
bulk turbulent flow.
ADVANCES IN DISTILLATION
• The industrial production of anhydrous bioethanol requires
energy demanding distillation steps to overcome the
azeotropic behavior of the ethanol–water mixture. In spite
of the recent developments in pervaporation and
adsorption with molecular sieves, the large scale
production is still dominated by extractive and azeotropic
distillation as the separation technology of choice.
• This study proposes novel distillation technologies for
enhanced bioethanol dehydration, by extending the use of
dividing-wall columns (DWC) to energy efficient extractive
distillation (ED) and azeotropic distillation (AD). Notably,
DWC is one of the best examples of proven process
intensification technology in distillation, as it allows
significantly lower investment and operating costs while
also reducing the equipment and carbon footprint.
ADVANCES IN DISTILLATION
• For both ED and AD cases a classic sequence of two
distillation columns and the alternative based on DWC
are optimized using the state of the art sequential
quadratic programming (SQP) method. A mixture of
85 mol.% ethanol is dehydrated using ethylene glycol
and n-pentane as mass separating agents in an
extractive and azeotropic distillation setup,
respectively. The results of the rigorous simulations
performed in Aspen Plus show that energy savings of
10–20% are possible for the novel process
intensification alternatives based on DWC, while using
less equipment units as compared to the conventional
ED and AD configurations.
ADVANCES IN VENTURI SCRUBBER
• Accurately predicting and rationally using pressure drop are very
important in optimizing the design of a Venturi scrubbers and
reducing energy consumption.
• Experimental results show that diverging section will recover a
considerable part of energy, so it′s incorrect to consider that
pressure recovery in diverging section can compensate for frictional
pressure drop.
• In this model, through theoretical analysis, considering gas frictional
pressure drop and pressure regain in diverging section due to
droplet′s deceleration, a simple and accurate model for the
prediction of overall pressure drop in Venturi scrubbers is deduced.
• Calculation data are found in good (agreement) with that of
experiment.
• Comparison is made experimentally with predictions of pressure
drop for Venturi scrubber between presented model, modified
Calvert model and Yung model.

Contenu connexe

Tendances

Mass transfer operations
Mass transfer operationsMass transfer operations
Mass transfer operations
Jagdeesh Shukla
 
AZEOTROPIC DISTILLATION
AZEOTROPIC DISTILLATIONAZEOTROPIC DISTILLATION
AZEOTROPIC DISTILLATION
Claire Canoy
 

Tendances (20)

Azeotropic and steam distillation
Azeotropic and steam distillationAzeotropic and steam distillation
Azeotropic and steam distillation
 
DESIGN OF CATALYST REACTOR WITH DEACTIVATION
DESIGN OF CATALYST REACTOR WITH DEACTIVATIONDESIGN OF CATALYST REACTOR WITH DEACTIVATION
DESIGN OF CATALYST REACTOR WITH DEACTIVATION
 
Chemical Design of Extraction Column
Chemical Design of Extraction ColumnChemical Design of Extraction Column
Chemical Design of Extraction Column
 
conversion and reactor sizing
conversion and reactor sizingconversion and reactor sizing
conversion and reactor sizing
 
Chemical Engineering Apparatus Design, ChEg4191-1.pptx
Chemical Engineering Apparatus Design, ChEg4191-1.pptxChemical Engineering Apparatus Design, ChEg4191-1.pptx
Chemical Engineering Apparatus Design, ChEg4191-1.pptx
 
Rate and equilibrium in mass transfer processes
Rate and equilibrium in mass transfer processesRate and equilibrium in mass transfer processes
Rate and equilibrium in mass transfer processes
 
Batch Distillation
Batch DistillationBatch Distillation
Batch Distillation
 
Design of Distillation Column.pptx
Design of Distillation Column.pptxDesign of Distillation Column.pptx
Design of Distillation Column.pptx
 
0.2 Introduction to Distillation
0.2 Introduction to Distillation0.2 Introduction to Distillation
0.2 Introduction to Distillation
 
Mass transfer operations
Mass transfer operationsMass transfer operations
Mass transfer operations
 
Absorption stripping
Absorption strippingAbsorption stripping
Absorption stripping
 
Flash distallation by khalid
Flash distallation by khalidFlash distallation by khalid
Flash distallation by khalid
 
Mass transfer equipment
Mass transfer equipmentMass transfer equipment
Mass transfer equipment
 
2.4 Plate efficiencies
2.4 Plate efficiencies2.4 Plate efficiencies
2.4 Plate efficiencies
 
Tank in series model
Tank in series modelTank in series model
Tank in series model
 
AZEOTROPIC DISTILLATION
AZEOTROPIC DISTILLATIONAZEOTROPIC DISTILLATION
AZEOTROPIC DISTILLATION
 
2.2 McCabe-Thiele method
2.2 McCabe-Thiele method2.2 McCabe-Thiele method
2.2 McCabe-Thiele method
 
Activity coefficient models
Activity coefficient modelsActivity coefficient models
Activity coefficient models
 
Interpretation of batch rate equations
 Interpretation of batch  rate equations  Interpretation of batch  rate equations
Interpretation of batch rate equations
 
1.1 Vapor Liquid Equilibrium
1.1 Vapor Liquid Equilibrium1.1 Vapor Liquid Equilibrium
1.1 Vapor Liquid Equilibrium
 

En vedette (11)

study of liquid diffusion
study of liquid diffusion study of liquid diffusion
study of liquid diffusion
 
Gas absorbtion
Gas absorbtionGas absorbtion
Gas absorbtion
 
Absorption and Stripping - mass transfer
Absorption and Stripping - mass transferAbsorption and Stripping - mass transfer
Absorption and Stripping - mass transfer
 
Gas absorption ppt
Gas absorption pptGas absorption ppt
Gas absorption ppt
 
gas absorption
gas absorptiongas absorption
gas absorption
 
Leaching
LeachingLeaching
Leaching
 
Chap 1(a) molecular-diffusion_in_gas(2)
Chap 1(a) molecular-diffusion_in_gas(2)Chap 1(a) molecular-diffusion_in_gas(2)
Chap 1(a) molecular-diffusion_in_gas(2)
 
Transport phenomena-Mass Transfer 31-Jul-2016
Transport phenomena-Mass Transfer 31-Jul-2016Transport phenomena-Mass Transfer 31-Jul-2016
Transport phenomena-Mass Transfer 31-Jul-2016
 
Heat and Mass Transfer Basics
Heat and Mass Transfer BasicsHeat and Mass Transfer Basics
Heat and Mass Transfer Basics
 
Full report gas absorption
Full report gas  absorptionFull report gas  absorption
Full report gas absorption
 
Gas transfer
Gas transferGas transfer
Gas transfer
 

Similaire à Current advancement in different gas liquid operations

Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10
Pomcert
 
Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10
Pomcert
 
UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE
UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE
UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE
Akhil Prabhakar
 
Exploring Tight Gas Reservoir Using Intelligent Well Technology
Exploring Tight Gas Reservoir Using Intelligent Well TechnologyExploring Tight Gas Reservoir Using Intelligent Well Technology
Exploring Tight Gas Reservoir Using Intelligent Well Technology
Abhinav Bisht
 
eProcess_Brochures
eProcess_BrochureseProcess_Brochures
eProcess_Brochures
Hank Rawlins
 
Protec zld based on ltd system 2
Protec zld based on ltd system 2Protec zld based on ltd system 2
Protec zld based on ltd system 2
mohager4a
 
Parker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to Sea
Parker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to SeaParker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to Sea
Parker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to Sea
Parker Hannifin Corporation
 

Similaire à Current advancement in different gas liquid operations (20)

Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10
 
Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10Innovative stimulation am ar_10.10
Innovative stimulation am ar_10.10
 
Plasma Pulse Technology in eor.pptx
Plasma Pulse Technology in eor.pptxPlasma Pulse Technology in eor.pptx
Plasma Pulse Technology in eor.pptx
 
UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE
UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE
UNCONVENTIONAL GAS- DRILLING FOOTPRINT REDUCTION CHALLENGE
 
Hybrid system
Hybrid systemHybrid system
Hybrid system
 
Phase separation
Phase separationPhase separation
Phase separation
 
Industrial air pollutant control devices
Industrial air pollutant control devicesIndustrial air pollutant control devices
Industrial air pollutant control devices
 
Cavitation based PI technology for Wastewater Treatment.pptx
Cavitation based PI technology for Wastewater Treatment.pptxCavitation based PI technology for Wastewater Treatment.pptx
Cavitation based PI technology for Wastewater Treatment.pptx
 
Exploring Tight Gas Reservoir Using Intelligent Well Technology
Exploring Tight Gas Reservoir Using Intelligent Well TechnologyExploring Tight Gas Reservoir Using Intelligent Well Technology
Exploring Tight Gas Reservoir Using Intelligent Well Technology
 
eProcess_Brochures
eProcess_BrochureseProcess_Brochures
eProcess_Brochures
 
M.E Thesis Presentation
M.E Thesis PresentationM.E Thesis Presentation
M.E Thesis Presentation
 
technical-packages.pdf |Goel scientific | Canada
technical-packages.pdf |Goel scientific | Canadatechnical-packages.pdf |Goel scientific | Canada
technical-packages.pdf |Goel scientific | Canada
 
Bubble column reactor
Bubble column reactorBubble column reactor
Bubble column reactor
 
Protec zld based on ltd system 2
Protec zld based on ltd system 2Protec zld based on ltd system 2
Protec zld based on ltd system 2
 
Maintenance of distillation column asmita
Maintenance of distillation column asmitaMaintenance of distillation column asmita
Maintenance of distillation column asmita
 
Parker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to Sea
Parker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to SeaParker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to Sea
Parker TwinZapp | Treating Oil in Water (OIW) Emulsions for Discharge to Sea
 
Membrane bio-reactor (2).pptx
Membrane bio-reactor (2).pptxMembrane bio-reactor (2).pptx
Membrane bio-reactor (2).pptx
 
Reactive distillation
Reactive distillationReactive distillation
Reactive distillation
 
Presentation fyp
Presentation fypPresentation fyp
Presentation fyp
 
DRILLING FLUIDS FOR THE HPHT ENVIRONMENT
DRILLING FLUIDS FOR THE HPHT ENVIRONMENTDRILLING FLUIDS FOR THE HPHT ENVIRONMENT
DRILLING FLUIDS FOR THE HPHT ENVIRONMENT
 

Plus de Sunny Chauhan

Plus de Sunny Chauhan (20)

Crude oil refineries in india
Crude oil refineries in indiaCrude oil refineries in india
Crude oil refineries in india
 
Mixing & mixing index
Mixing & mixing indexMixing & mixing index
Mixing & mixing index
 
Sizing of vessels in batch plants
Sizing of vessels in batch plantsSizing of vessels in batch plants
Sizing of vessels in batch plants
 
Types of Nuclear Reactors
Types of Nuclear ReactorsTypes of Nuclear Reactors
Types of Nuclear Reactors
 
Pressure swing adsorption
Pressure swing adsorptionPressure swing adsorption
Pressure swing adsorption
 
Ultrafine grinders,Hammer Mills,Agitated mills,Fluid energy mils
Ultrafine grinders,Hammer Mills,Agitated mills,Fluid energy milsUltrafine grinders,Hammer Mills,Agitated mills,Fluid energy mils
Ultrafine grinders,Hammer Mills,Agitated mills,Fluid energy mils
 
Excess gibbs free energy models
Excess gibbs free energy modelsExcess gibbs free energy models
Excess gibbs free energy models
 
Raoult’s law , dalton’s law , concept of volatility and relative volatility a...
Raoult’s law , dalton’s law , concept of volatility and relative volatility a...Raoult’s law , dalton’s law , concept of volatility and relative volatility a...
Raoult’s law , dalton’s law , concept of volatility and relative volatility a...
 
Management,administration and some basic principle
Management,administration and some basic principleManagement,administration and some basic principle
Management,administration and some basic principle
 
Absorption & indusrial absorber
Absorption & indusrial absorberAbsorption & indusrial absorber
Absorption & indusrial absorber
 
The role of government in a disaster management
The role of government in a disaster managementThe role of government in a disaster management
The role of government in a disaster management
 
Printing inks
Printing inksPrinting inks
Printing inks
 
Thermodynamic diagram
Thermodynamic diagramThermodynamic diagram
Thermodynamic diagram
 
Air pollution & Water pollution control laws
Air pollution & Water pollution control lawsAir pollution & Water pollution control laws
Air pollution & Water pollution control laws
 
Equilibrium and types of equilibrium
Equilibrium and types of equilibriumEquilibrium and types of equilibrium
Equilibrium and types of equilibrium
 
Zeolite Process
Zeolite ProcessZeolite Process
Zeolite Process
 
Partial gibbs free energy and gibbs duhem equation
Partial gibbs free energy and gibbs duhem equationPartial gibbs free energy and gibbs duhem equation
Partial gibbs free energy and gibbs duhem equation
 
Pigments
PigmentsPigments
Pigments
 
Numerical integration
Numerical integrationNumerical integration
Numerical integration
 
THE CONTROL SYSTEM
THE CONTROL SYSTEMTHE CONTROL SYSTEM
THE CONTROL SYSTEM
 

Dernier

Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
9953056974 Low Rate Call Girls In Saket, Delhi NCR
 
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
dharasingh5698
 
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoorTop Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
dharasingh5698
 
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
 
notes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.pptnotes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.ppt
MsecMca
 
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
9953056974 Low Rate Call Girls In Saket, Delhi NCR
 

Dernier (20)

Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Ramesh Nagar Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
 
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 BookingVIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
VIP Call Girls Palanpur 7001035870 Whatsapp Number, 24/07 Booking
 
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoorTop Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
Top Rated Call Girls In chittoor 📱 {7001035870} VIP Escorts chittoor
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
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
 
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdfONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
ONLINE FOOD ORDER SYSTEM PROJECT REPORT.pdf
 
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
 
notes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.pptnotes on Evolution Of Analytic Scalability.ppt
notes on Evolution Of Analytic Scalability.ppt
 
Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01Double rodded leveling 1 pdf activity 01
Double rodded leveling 1 pdf activity 01
 
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete RecordCCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
CCS335 _ Neural Networks and Deep Learning Laboratory_Lab Complete Record
 
Intro To Electric Vehicles PDF Notes.pdf
Intro To Electric Vehicles PDF Notes.pdfIntro To Electric Vehicles PDF Notes.pdf
Intro To Electric Vehicles PDF Notes.pdf
 
Unit 2- Effective stress & Permeability.pdf
Unit 2- Effective stress & Permeability.pdfUnit 2- Effective stress & Permeability.pdf
Unit 2- Effective stress & Permeability.pdf
 
Block diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.pptBlock diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.ppt
 
Intze Overhead Water Tank Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank  Design by Working Stress - IS Method.pdfIntze Overhead Water Tank  Design by Working Stress - IS Method.pdf
Intze Overhead Water Tank Design by Working Stress - IS Method.pdf
 
Thermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptThermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.ppt
 
Work-Permit-Receiver-in-Saudi-Aramco.pptx
Work-Permit-Receiver-in-Saudi-Aramco.pptxWork-Permit-Receiver-in-Saudi-Aramco.pptx
Work-Permit-Receiver-in-Saudi-Aramco.pptx
 
Generative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPTGenerative AI or GenAI technology based PPT
Generative AI or GenAI technology based PPT
 
University management System project report..pdf
University management System project report..pdfUniversity management System project report..pdf
University management System project report..pdf
 
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort ServiceCall Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
Call Girls in Netaji Nagar, Delhi 💯 Call Us 🔝9953056974 🔝 Escort Service
 
KubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghlyKubeKraft presentation @CloudNativeHooghly
KubeKraft presentation @CloudNativeHooghly
 

Current advancement in different gas liquid operations

  • 1. CURRENT ADVANCEMENT IN DIFFERENT GAS-LIQUID OPERATIONS
  • 2. CONTENT • Introduction • Gas Liquid operation equipment • Extractive distillation • Advances in Gas Absorption • High efficiency venturi scrubber • Advances in Diffusion • Advances in Stirred Tanks • Advances in Distillation • Advances in Venturi Scrubber
  • 3. INTRODUCTION • Gas-liquid operations are one of the mass transfer operation in which two immiscible phases (gas & liquid) are in direct contact. • Different Gas-Liquid operations : 1. Distillation (fractional distillation) 2. Gas absorption 3. Stripping 4. Humidification 5. Dehumidification
  • 4. GAS-LIQUID OPERATION EQUIPMENT • Sparged Vessel • Mechanically Agitated Vessel • Tray Tower • Venturi Scrubber • Wetted Wall Tower • Spray Tower • Packed Tower • Distillation Column
  • 5. EXTRACTIVE DISTILLATION • In most separation systems, the predominant non ideality occurs in the liquid phase because of molecular interactions. • Azeotropic and low-relative-volatility mixtures are often present in the separating industry, and their separation cannot be realized by conventional distillation. • Extractive distillation is then a suitable widely used technique for separating azeotropic and low-relative- volatility mixtures in the pharmaceutical and chemical industries. • Given an azeotropic mixture A-B (with A having a lower boiling temperature than B does), an entrainer E is added to interact selectively with the original components and alter their relative volatility, thus enhancing the original separation.
  • 6. EXTRACTIVE DISTILLATION • Extractive distillation differs from azeotropic distillation by the fact that the third-body solvent E is fed continuously in another column position than the feed mixture. • Extractive distillation has been studied for many decades, with a rich body of literature. Some main subjects studied include column with all possible configurations; process operation polices and strategy; process design, synthesis, and optimization; determination of separation sequencing; entrainer design and selection; feasibility studies; and so on. • Feasibility studies also contribute to a better understanding of complex unit operations such as batch extractive distillation (BED).
  • 7. ADVANCES IN GAS ABSORPTION • Micro porous hollow fiber modules offer a larger area per volume between gas and liquid than that commonly encountered in packed towers. • This larger area can be sustained at very low flows, where packed towers will not be loaded, and at very high flows, where packed towers will flood. • As a result, the modules offer the potential of faster mass transfer. This potential can be compromised by the resistance to mass transfer of the membrane itself, a resistance which is increased if the liquid wets the membrane. • The results presented in this two-part series show when the advantage of the increased area is greater than the disadvantage of the membrane resistance.
  • 8. HIGH EFFICIENCY VENTURI SCRUBBER • A high efficiency, compact, and cost effective scrubber is well suited for a broad range of applications. Particulates removal, fumes removal, and removal of sulphur oxides and obnoxious gases are accomplished with less energy consumption than other type of scrubbers. Scrubbers are available in stainless steel, c. S., FRP and other plastics.
  • 9. HIGH EFFICIENCY VENTURI SCRUBBER • High Efficiency Venturi Scrubber is a most energy efficient and compact scrubber design developed through extensive research and testing. Using a horizontal flow Venturi and an intensive water distribution system to scrub the contaminated gases followed by separation of the scrubbing water in a cyclonic separator, this model has been shown in field tests to out performance other competitive scrubbers by a margin of 2:1 ratio in term of outlet loading when operating on same conditions. Removal of SO2, HCl, and other acidic gases are accomplished with the use of alkalinic solution for scrubbing.
  • 10. ADVANCES IN DIFFUSION • There are some limitations of the Fick's law for describing diffusion . • It is argued that the Maxwell-Stefan formulation provides the most general, and convenient, approach for describing mass transport which takes proper account of thermodynamic non- idealities and influence of external force fields. • Furthermore, the Maxwell-Stefan approach can be extended to handle diffusion in macro- and micro porous catalysts, adsorbents and membranes.
  • 11. ADVANCES IN STIRRED TANKS • Effects of mechanical and hydrodynamic forces on cells of the microalga Porphyridium cruentum are reported for aerated cultures in stirred vessels. • The specific rate of cell death varied linearly with the specific interfacial area, suggesting the importance of bubble-cell contacting in the damaging process. • At low rates of mechanical agitation, bubble break-up at the culture surface was the predominant cause of damage. • In contrast, at higher agitation intensities, cell damage was caused predominantly by hydrodynamic stress in bulk turbulent flow.
  • 12. ADVANCES IN DISTILLATION • The industrial production of anhydrous bioethanol requires energy demanding distillation steps to overcome the azeotropic behavior of the ethanol–water mixture. In spite of the recent developments in pervaporation and adsorption with molecular sieves, the large scale production is still dominated by extractive and azeotropic distillation as the separation technology of choice. • This study proposes novel distillation technologies for enhanced bioethanol dehydration, by extending the use of dividing-wall columns (DWC) to energy efficient extractive distillation (ED) and azeotropic distillation (AD). Notably, DWC is one of the best examples of proven process intensification technology in distillation, as it allows significantly lower investment and operating costs while also reducing the equipment and carbon footprint.
  • 13. ADVANCES IN DISTILLATION • For both ED and AD cases a classic sequence of two distillation columns and the alternative based on DWC are optimized using the state of the art sequential quadratic programming (SQP) method. A mixture of 85 mol.% ethanol is dehydrated using ethylene glycol and n-pentane as mass separating agents in an extractive and azeotropic distillation setup, respectively. The results of the rigorous simulations performed in Aspen Plus show that energy savings of 10–20% are possible for the novel process intensification alternatives based on DWC, while using less equipment units as compared to the conventional ED and AD configurations.
  • 14. ADVANCES IN VENTURI SCRUBBER • Accurately predicting and rationally using pressure drop are very important in optimizing the design of a Venturi scrubbers and reducing energy consumption. • Experimental results show that diverging section will recover a considerable part of energy, so it′s incorrect to consider that pressure recovery in diverging section can compensate for frictional pressure drop. • In this model, through theoretical analysis, considering gas frictional pressure drop and pressure regain in diverging section due to droplet′s deceleration, a simple and accurate model for the prediction of overall pressure drop in Venturi scrubbers is deduced. • Calculation data are found in good (agreement) with that of experiment. • Comparison is made experimentally with predictions of pressure drop for Venturi scrubber between presented model, modified Calvert model and Yung model.