SlideShare a Scribd company logo
1 of 18
Download to read offline
Fluidized Deposition Reactor for Silicon Production




                      Paul Ege1, Alireza Abbasi1, Jin-Seok Seo2, Jun-Suk Lee2, Jung-Hyun Lee2
                      1- Reactech Process Development Inc, Canada
                      2- KCC Corporation, Republic of Korea
Overview




           2	
  
Background
Polysilicon Processes

•    Siemens Rod Deposition
     •    High Energy / High Quality
     •    SiHCl3(g) +H2 = HCl(g) + Si(s)
     •    SiH4 = Si(g)+Si(s)+ H2

•    Metallurgical Routes
     •    Low Energy / Low Quality

•    Fluid Bed deposition
     •    Low Energy / Medium-High Quality
     •    SiH4 = Si(g)+Si(s)+ H2
     •    SiHCl3(g) +H2 = HCl(g) + Si(s)
     •    4 SiHCl3= 2 H2+ 3 SiCl4+ Si(s)

•    Silane Freespace
     •    Low Energy / Medium quality




                                             3	
  
                                                     3	
  
Background
Fluidization Fundamentals




                            4	
  
Background
Fluidized bed design elements




                                5	
  
 
                                                                                     	
  


                          Polysilicon Fluidized Bed
                                     Process Evaluation
Advantages                                  Challenges
ª  Continuous granular production          -  Complex flow patterns
    => Reduce operation cost                     -  Gas mix in emulsion
ª  Excellent contact high surface volume        -  Gas bypass in bubbles
                                            -  Attrition and Erosion
    => compact process                           -  Quality reduction
ª  Low DP for high throughput                   -  Dust generation
    => high capacity                             -  Pipe/Internal deterioration
                                            -  Entrainment
ª  Excellent heat transfer                      -  Powder inherent, less with TCS
    => low energy consumption                    -  Dust from abrasion/attrition
                                            -  Fouling
                                                 -  Wall
ª  Near isothermal conditions and large         -  Nozzles/distributor
    thermal reservoir
                                            -  Complex reaction kinetics
                                                 -  TCS, equilibrium limited
                                                 -  Silane, competing reactions




                                                                                            6	
  
                                                                                                    6	
  
Polysilicon Fluidized Bed
                                       Literature

Ø  JPL work in 1980ʼ’s many references
Ø  Furusawa Hom/Het kinetics (1988)
Ø  Lai & Dudukovics (MEMC) 1986
    •    Describes a multi step mechanism
Ø  Caussat et. Al. study on FBR (1995-98)
    •    Bubbling reactor model and exp data
Ø  Mlezcko et. Al. Solarworld (2004)
Ø  Pina et.al REC process (2006)
    •    PF/CSTR approach
Ø  Ydstie-Balaji independent(2009)
Ø  Parker Barracuda (2010)




                                                    7	
  
Polysilicon Fluidized Bed
    Prior art (old patents)




                              8	
  
Polysilicon Fluidized Bed
Protected designs (current patents)




                                      9	
  
Polysilicon Fluidized Bed
                  Commercial Processes
MEMC – SiH4 FBR
 •    Two stage process; high production with dust, low
      production to adsorb dust and anneal
 •    Seed, quench, el.mag. heat, coating and valves
 •    Recent – multiple beds for growth, and special distributor
 •    Appears to be traditional bubbling fluid bed behavior
 •    Dimensions and capacities not revealed
REC – SiH4 FBR
 •    Submerged Spouted bed one or more spouts
 •    Nozzle design with secondary orifice, internal grinding,
      annular withdrawal, halogen injection, tapered bed
 •    Recent radiant heated bed with internal liner and cooling
      below injector


Others in development
 •    Wacker, KRICT, AEP, SILIKEN – TCS based
 •    Samsung-MEMC, KCC – Silane based
 •    Independent developers




                                                                   10	
  
Polysilicon Fluidized Bed
 Commercial design solutions




                               11	
  
FBR development
            Scope Scale and Objective of stages

①  Review stage
   ü  Review literature/patents for IP/Cost/Risk feasibility analysis

②  Lab/Bench Scale (inches diameter)
   ü  Establish reaction kinetics and flow for basic reactor models
   ü  Validate process conditions and scale up strategy for pilot/commercial

③  Pilot/Demo Scale (feet diameter)
   ü  Validate commercial challenges in long term continuous operation
   ü  Verify scale up predictions and design for commercial
   ü  Well instrumented small commercial unit with many interruptions
   ü  Risk in scale best taken here!

④  Commercial Scale (meters diameter)
   ü  Target uninterrupted production with minimum disturbance
   ü  Start-up and stabilize, then optimize Yield/Capacity/Quality/Economics




                                                                                12	
  
FBR development
  Multi Stage Effort




                       13	
  
FBR development
 Multi Level Modeling




                        14	
  
FBR development
                                             CFD and CPFD for flow and scale up analysis




Reactech	
  Process	
  Development	
  	
                                                   15	
  
FBR development
Reactor Model for design/analysis/control




                                            16	
  
FBR development
                                                                   Experimental
                                                                   OBJECTIVE	
  
                   Experimental	
  methods	
  to	
  verify	
  a	
  wide	
  range	
  of	
  parameters	
  that	
  are	
  important	
  	
  
                             in	
  reactor	
  model	
  development	
  and	
  for	
  design	
  purposes	
  

Characteristics                                                                    Methods
Particle– External                                                               Pressure and Temperature
•     Fluidization/Entrainment/Reactivity                                        •        Global / Time average => Mb, Hb, Void fraction
•     Porosity/Density, Size/Shape, Umf, DPf, Ut                                 •        Fluctuations => frequency, regime, forces
                                                                                 •        Correlations => size, velocity
Gas                                                                              •        Delta T=> Solids mixing
•     Fluidization/Entrainment                                                   Intrusive probes
•     Density, Viscosity                                                         •        Capacitance/Fiberoptic/DP
Fluid bed                                                                        •        Local bubble and void properties
•     Void, Solid Mixing, Gas dispersion, Mass and                               Non Intrusive probes
      Heat transfer                                                              •        x-ray, γ-ray, capacitance
Entrainment                                                                      •        High speed samples => local bubble properties
•     TDH, Freeboard flow/void, Cyclone feed/                                    •        Multiple samples => Tomography
      efficiency, Dipleg operation                                               Tracer studies
                                                                                 •        Gas dispersion
                                                                                 •        Solids mixing (solid tracer, heat pulse)



                                                                                                                                           17	
  
Conclusions
Ø  Polysilicon FBR is promising technology for low cost high quality
    production

Ø  Prior art allows development of Polysilicon FBR. Challenge will be to
    avoid design details already patented

Ø  Significant development challenges require serious long-term effort
    from lab through pilot to commercial scale.

Ø  REC successfully commercialized new technology

Ø  Several new projects at different development stages

Ø  KCC progressing well with solid foundation from Bench scale efforts
    fast approaching demonstration scale pilot production



                                                                            18	
  

More Related Content

What's hot

baker hughes Annual Report 2000
baker hughes  Annual Report 2000baker hughes  Annual Report 2000
baker hughes Annual Report 2000
finance26
 
nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas Ap...
nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas  Ap...nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas  Ap...
nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas Ap...
Dr. Jeff Forsyth
 
Ee518 Epitaxial Dep.S07
Ee518 Epitaxial Dep.S07Ee518 Epitaxial Dep.S07
Ee518 Epitaxial Dep.S07
guestda8318
 
04 Hpht Gas Migration Co2(4 08 06)
04 Hpht Gas Migration Co2(4 08 06)04 Hpht Gas Migration Co2(4 08 06)
04 Hpht Gas Migration Co2(4 08 06)
JRThompson8747
 

What's hot (15)

Chemicals used in construction general studies
Chemicals used in construction general studies Chemicals used in construction general studies
Chemicals used in construction general studies
 
Artigo materials research
Artigo materials researchArtigo materials research
Artigo materials research
 
Iptc 14285 Presentation
Iptc 14285  PresentationIptc 14285  Presentation
Iptc 14285 Presentation
 
Bakri Final Presentation 2
Bakri Final Presentation  2Bakri Final Presentation  2
Bakri Final Presentation 2
 
Hydration of cement
Hydration of cementHydration of cement
Hydration of cement
 
Araldite® HCEP systems - Brochure
Araldite® HCEP systems - BrochureAraldite® HCEP systems - Brochure
Araldite® HCEP systems - Brochure
 
Shale drilling with potassium formate brine - Chevron Encana presentation
Shale drilling with potassium formate brine - Chevron Encana presentation Shale drilling with potassium formate brine - Chevron Encana presentation
Shale drilling with potassium formate brine - Chevron Encana presentation
 
The Value in Recycled Polyamides
The Value in Recycled PolyamidesThe Value in Recycled Polyamides
The Value in Recycled Polyamides
 
baker hughes Annual Report 2000
baker hughes  Annual Report 2000baker hughes  Annual Report 2000
baker hughes Annual Report 2000
 
nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas Ap...
nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas  Ap...nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas  Ap...
nFluids Nanoparticle Technology Additives for Drilling Fluids & Oil & Gas Ap...
 
Design and Development of Municipal Solid Waste phyrolyzer for producing high...
Design and Development of Municipal Solid Waste phyrolyzer for producing high...Design and Development of Municipal Solid Waste phyrolyzer for producing high...
Design and Development of Municipal Solid Waste phyrolyzer for producing high...
 
Unlock Your Reservoir Presentation
Unlock Your Reservoir PresentationUnlock Your Reservoir Presentation
Unlock Your Reservoir Presentation
 
Ee518 Epitaxial Dep.S07
Ee518 Epitaxial Dep.S07Ee518 Epitaxial Dep.S07
Ee518 Epitaxial Dep.S07
 
Potassium formate from addcon
Potassium formate from addconPotassium formate from addcon
Potassium formate from addcon
 
04 Hpht Gas Migration Co2(4 08 06)
04 Hpht Gas Migration Co2(4 08 06)04 Hpht Gas Migration Co2(4 08 06)
04 Hpht Gas Migration Co2(4 08 06)
 

Similar to Fluidized Deposition Reactor for Silicon Production

Nader Al Otaibi - Managing SCC in Gas Pipelines
Nader Al Otaibi  - Managing SCC in Gas PipelinesNader Al Otaibi  - Managing SCC in Gas Pipelines
Nader Al Otaibi - Managing SCC in Gas Pipelines
Ramy Saboungui
 
Shell Day Unconventional Gas Footprint Reduction Challenge
Shell Day Unconventional Gas Footprint Reduction ChallengeShell Day Unconventional Gas Footprint Reduction Challenge
Shell Day Unconventional Gas Footprint Reduction Challenge
akhilp2011
 
Single Use (Disposables) Presentation
Single Use (Disposables) PresentationSingle Use (Disposables) Presentation
Single Use (Disposables) Presentation
Andy Rayner
 
Dano Drum Presentation 2012
Dano Drum Presentation 2012Dano Drum Presentation 2012
Dano Drum Presentation 2012
Rafael Salzar
 
Areva10 Technical Day
Areva10 Technical DayAreva10 Technical Day
Areva10 Technical Day
SDTools
 
Zero ODS Low GWS Eliminate HCFC with alternate By A K Singh
Zero ODS Low GWS Eliminate HCFC with alternate By A K SinghZero ODS Low GWS Eliminate HCFC with alternate By A K Singh
Zero ODS Low GWS Eliminate HCFC with alternate By A K Singh
Arun K Singh
 
Zebra - TRIAD-ES Joint Presentation
Zebra - TRIAD-ES Joint PresentationZebra - TRIAD-ES Joint Presentation
Zebra - TRIAD-ES Joint Presentation
ZEBRA Environmental
 

Similar to Fluidized Deposition Reactor for Silicon Production (20)

Polymers in Cables
Polymers in CablesPolymers in Cables
Polymers in Cables
 
Nader Al Otaibi - Managing SCC in Gas Pipelines
Nader Al Otaibi  - Managing SCC in Gas PipelinesNader Al Otaibi  - Managing SCC in Gas Pipelines
Nader Al Otaibi - Managing SCC in Gas Pipelines
 
Shell Day Unconventional Gas Footprint Reduction Challenge
Shell Day Unconventional Gas Footprint Reduction ChallengeShell Day Unconventional Gas Footprint Reduction Challenge
Shell Day Unconventional Gas Footprint Reduction Challenge
 
10 - Petrophysical applications.ppt
10 - Petrophysical applications.ppt10 - Petrophysical applications.ppt
10 - Petrophysical applications.ppt
 
2022 Spring Educational Workshop presentation on QA for CIR and CCPR
2022 Spring Educational Workshop presentation on QA for CIR and CCPR2022 Spring Educational Workshop presentation on QA for CIR and CCPR
2022 Spring Educational Workshop presentation on QA for CIR and CCPR
 
Epitaxial Crystal Growth: Methods & Analysis
Epitaxial Crystal Growth: Methods & Analysis Epitaxial Crystal Growth: Methods & Analysis
Epitaxial Crystal Growth: Methods & Analysis
 
Design dk Overview
Design dk OverviewDesign dk Overview
Design dk Overview
 
Single Use (Disposables) Presentation
Single Use (Disposables) PresentationSingle Use (Disposables) Presentation
Single Use (Disposables) Presentation
 
Dano Drum Presentation 2012
Dano Drum Presentation 2012Dano Drum Presentation 2012
Dano Drum Presentation 2012
 
HPC Applications of Materials Modeling
HPC Applications of Materials ModelingHPC Applications of Materials Modeling
HPC Applications of Materials Modeling
 
Process Intensification Korea-2012
Process Intensification Korea-2012Process Intensification Korea-2012
Process Intensification Korea-2012
 
Areva10 Technical Day
Areva10 Technical DayAreva10 Technical Day
Areva10 Technical Day
 
Preliminary Development of Mini-fluidic OFR Technology
Preliminary Development of Mini-fluidic OFR TechnologyPreliminary Development of Mini-fluidic OFR Technology
Preliminary Development of Mini-fluidic OFR Technology
 
Zero ODS Low GWS Eliminate HCFC with alternate By A K Singh
Zero ODS Low GWS Eliminate HCFC with alternate By A K SinghZero ODS Low GWS Eliminate HCFC with alternate By A K Singh
Zero ODS Low GWS Eliminate HCFC with alternate By A K Singh
 
Mg Innovation Flng Cn 2010 R1
Mg Innovation Flng Cn 2010 R1Mg Innovation Flng Cn 2010 R1
Mg Innovation Flng Cn 2010 R1
 
Corun_-_Polymers (1).ppt
Corun_-_Polymers (1).pptCorun_-_Polymers (1).ppt
Corun_-_Polymers (1).ppt
 
Circuits llc presentation 2011
Circuits llc  presentation 2011Circuits llc  presentation 2011
Circuits llc presentation 2011
 
Hydraulic Fracturing Operations: Separating Fact from Fiction
Hydraulic Fracturing Operations: Separating Fact from FictionHydraulic Fracturing Operations: Separating Fact from Fiction
Hydraulic Fracturing Operations: Separating Fact from Fiction
 
Zebra - TRIAD-ES Joint Presentation
Zebra - TRIAD-ES Joint PresentationZebra - TRIAD-ES Joint Presentation
Zebra - TRIAD-ES Joint Presentation
 
Durability for Carbon Fiber Reinforced Polymers on Timber Structures
Durability for Carbon Fiber Reinforced Polymers on Timber StructuresDurability for Carbon Fiber Reinforced Polymers on Timber Structures
Durability for Carbon Fiber Reinforced Polymers on Timber Structures
 

Recently uploaded

Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and Myths
Joaquim Jorge
 

Recently uploaded (20)

AWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of TerraformAWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of Terraform
 
Artificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and MythsArtificial Intelligence: Facts and Myths
Artificial Intelligence: Facts and Myths
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Powerful Google developer tools for immediate impact! (2023-24 C)
Powerful Google developer tools for immediate impact! (2023-24 C)Powerful Google developer tools for immediate impact! (2023-24 C)
Powerful Google developer tools for immediate impact! (2023-24 C)
 
Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organization
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
GenAI Risks & Security Meetup 01052024.pdf
GenAI Risks & Security Meetup 01052024.pdfGenAI Risks & Security Meetup 01052024.pdf
GenAI Risks & Security Meetup 01052024.pdf
 
presentation ICT roal in 21st century education
presentation ICT roal in 21st century educationpresentation ICT roal in 21st century education
presentation ICT roal in 21st century education
 
[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdf[2024]Digital Global Overview Report 2024 Meltwater.pdf
[2024]Digital Global Overview Report 2024 Meltwater.pdf
 
Automating Google Workspace (GWS) & more with Apps Script
Automating Google Workspace (GWS) & more with Apps ScriptAutomating Google Workspace (GWS) & more with Apps Script
Automating Google Workspace (GWS) & more with Apps Script
 
What Are The Drone Anti-jamming Systems Technology?
What Are The Drone Anti-jamming Systems Technology?What Are The Drone Anti-jamming Systems Technology?
What Are The Drone Anti-jamming Systems Technology?
 
GenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationGenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day Presentation
 
Data Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonData Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt Robison
 
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
Apidays Singapore 2024 - Building Digital Trust in a Digital Economy by Veron...
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdf
 
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot TakeoffStrategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
 
HTML Injection Attacks: Impact and Mitigation Strategies
HTML Injection Attacks: Impact and Mitigation StrategiesHTML Injection Attacks: Impact and Mitigation Strategies
HTML Injection Attacks: Impact and Mitigation Strategies
 

Fluidized Deposition Reactor for Silicon Production

  • 1. Fluidized Deposition Reactor for Silicon Production Paul Ege1, Alireza Abbasi1, Jin-Seok Seo2, Jun-Suk Lee2, Jung-Hyun Lee2 1- Reactech Process Development Inc, Canada 2- KCC Corporation, Republic of Korea
  • 2. Overview 2  
  • 3. Background Polysilicon Processes •  Siemens Rod Deposition •  High Energy / High Quality •  SiHCl3(g) +H2 = HCl(g) + Si(s) •  SiH4 = Si(g)+Si(s)+ H2 •  Metallurgical Routes •  Low Energy / Low Quality •  Fluid Bed deposition •  Low Energy / Medium-High Quality •  SiH4 = Si(g)+Si(s)+ H2 •  SiHCl3(g) +H2 = HCl(g) + Si(s) •  4 SiHCl3= 2 H2+ 3 SiCl4+ Si(s) •  Silane Freespace •  Low Energy / Medium quality 3   3  
  • 6.     Polysilicon Fluidized Bed Process Evaluation Advantages Challenges ª  Continuous granular production -  Complex flow patterns => Reduce operation cost -  Gas mix in emulsion ª  Excellent contact high surface volume -  Gas bypass in bubbles -  Attrition and Erosion => compact process -  Quality reduction ª  Low DP for high throughput -  Dust generation => high capacity -  Pipe/Internal deterioration -  Entrainment ª  Excellent heat transfer -  Powder inherent, less with TCS => low energy consumption -  Dust from abrasion/attrition -  Fouling -  Wall ª  Near isothermal conditions and large -  Nozzles/distributor thermal reservoir -  Complex reaction kinetics -  TCS, equilibrium limited -  Silane, competing reactions 6   6  
  • 7. Polysilicon Fluidized Bed Literature Ø  JPL work in 1980ʼ’s many references Ø  Furusawa Hom/Het kinetics (1988) Ø  Lai & Dudukovics (MEMC) 1986 •  Describes a multi step mechanism Ø  Caussat et. Al. study on FBR (1995-98) •  Bubbling reactor model and exp data Ø  Mlezcko et. Al. Solarworld (2004) Ø  Pina et.al REC process (2006) •  PF/CSTR approach Ø  Ydstie-Balaji independent(2009) Ø  Parker Barracuda (2010) 7  
  • 8. Polysilicon Fluidized Bed Prior art (old patents) 8  
  • 9. Polysilicon Fluidized Bed Protected designs (current patents) 9  
  • 10. Polysilicon Fluidized Bed Commercial Processes MEMC – SiH4 FBR •  Two stage process; high production with dust, low production to adsorb dust and anneal •  Seed, quench, el.mag. heat, coating and valves •  Recent – multiple beds for growth, and special distributor •  Appears to be traditional bubbling fluid bed behavior •  Dimensions and capacities not revealed REC – SiH4 FBR •  Submerged Spouted bed one or more spouts •  Nozzle design with secondary orifice, internal grinding, annular withdrawal, halogen injection, tapered bed •  Recent radiant heated bed with internal liner and cooling below injector Others in development •  Wacker, KRICT, AEP, SILIKEN – TCS based •  Samsung-MEMC, KCC – Silane based •  Independent developers 10  
  • 11. Polysilicon Fluidized Bed Commercial design solutions 11  
  • 12. FBR development Scope Scale and Objective of stages ①  Review stage ü  Review literature/patents for IP/Cost/Risk feasibility analysis ②  Lab/Bench Scale (inches diameter) ü  Establish reaction kinetics and flow for basic reactor models ü  Validate process conditions and scale up strategy for pilot/commercial ③  Pilot/Demo Scale (feet diameter) ü  Validate commercial challenges in long term continuous operation ü  Verify scale up predictions and design for commercial ü  Well instrumented small commercial unit with many interruptions ü  Risk in scale best taken here! ④  Commercial Scale (meters diameter) ü  Target uninterrupted production with minimum disturbance ü  Start-up and stabilize, then optimize Yield/Capacity/Quality/Economics 12  
  • 13. FBR development Multi Stage Effort 13  
  • 14. FBR development Multi Level Modeling 14  
  • 15. FBR development CFD and CPFD for flow and scale up analysis Reactech  Process  Development     15  
  • 16. FBR development Reactor Model for design/analysis/control 16  
  • 17. FBR development Experimental OBJECTIVE   Experimental  methods  to  verify  a  wide  range  of  parameters  that  are  important     in  reactor  model  development  and  for  design  purposes   Characteristics Methods Particle– External Pressure and Temperature •  Fluidization/Entrainment/Reactivity •  Global / Time average => Mb, Hb, Void fraction •  Porosity/Density, Size/Shape, Umf, DPf, Ut •  Fluctuations => frequency, regime, forces •  Correlations => size, velocity Gas •  Delta T=> Solids mixing •  Fluidization/Entrainment Intrusive probes •  Density, Viscosity •  Capacitance/Fiberoptic/DP Fluid bed •  Local bubble and void properties •  Void, Solid Mixing, Gas dispersion, Mass and Non Intrusive probes Heat transfer •  x-ray, γ-ray, capacitance Entrainment •  High speed samples => local bubble properties •  TDH, Freeboard flow/void, Cyclone feed/ •  Multiple samples => Tomography efficiency, Dipleg operation Tracer studies •  Gas dispersion •  Solids mixing (solid tracer, heat pulse) 17  
  • 18. Conclusions Ø  Polysilicon FBR is promising technology for low cost high quality production Ø  Prior art allows development of Polysilicon FBR. Challenge will be to avoid design details already patented Ø  Significant development challenges require serious long-term effort from lab through pilot to commercial scale. Ø  REC successfully commercialized new technology Ø  Several new projects at different development stages Ø  KCC progressing well with solid foundation from Bench scale efforts fast approaching demonstration scale pilot production 18