Fornybar energi og Trondheims posisjon – status og potensiale. P resentasjon på Trøndelagsrådet 2010 Prof. Johan E. Hustad,   Prorektor nyskaping og eksterne relasjoner
Hva har vi? Sterke forsknings- og utdanningsmiljøer Industrielle kunnskapsmiljøer Energiselskapene Industriselskaper  Leverandørindustri Energiressurser For å realisere energianlegg God samhandling lokalt Partnere for nyskaping ++ Noen svært engasjerte politikere Nok handlekraft?
ENERGI OG PETROLEUM Ressurser og Miljø   Organisasjon SENTERE Strategiske initiativer Hydrogen CO2-handtering Grønn Innovasjon Assossierte aktiviteter Studieprogrammer Industriell økologi PETROLEUMS- SENTER FOR BEDRE RESSURS- UTNYTTELSE NTNU-SINTEF GASSTEKNISK SENTER NTNU- SINTEF SENTER FOR BÆRE- KRAFTIGE BYGNINGER NTNU- SINTEF LEDELSE STRATEGISK RÅD SENTER FOR ENERGI OG SAMFUNN SENTER FOR FORNYBAR ENERGI NTNU- SINTEF- IFE SENTER FOR ELEKTRISK ENERGI OG ENERGI- SYSTEMER NTNU- SINTEF
 
Centres for Environment-friendly Energy Research From 2009 – 8 new centres: NOWITECH - Research Centre for Offshore Wind Technology  - SINTEF CEDREN - Centre for Environmental Design of Renewable Energy  - SINTEF  ZEB - The research Centre on Zero Emission Buildings  - NTNU  BIGCCS Centre - International CCS Research Centre  - SINTEF The Norwegian Research Centre for Solar Cell Technology - IFE  CenBio - Bioenergy Innovation Centre - UMB  Norwegian Centre for Offshore Wind Energy - CMR  SUbsurface CO2 storage - Critical Elements and Superior Strategy - CMR
Strong motivation for offshore wind R&D Huge potential: 150 GW expected by 2030 in EU Offshore wind is vital for battling climate change, development of industry and contributing to security of supply Development at an early stage  – only 3 full scale tests on +30 m water depth realized by 2009 Technology needs to be developed to reduce costs per kWh CAPEX distribution offshore wind farm (DTI study) Turbine  w jacket HyWind Offshore 2030: 150 GW* Offshore 2020:  40 GW* Offshore 2008:  ~1 GW  *EWEA estimate for EU HyWind (floating, 200m) (jacket, 46m) (jacket & tripods, 30m) Wind turbine Electric  grid Substructure
” Solar United” Research partners:   IFE, NTNU, SINTEF and UiO Industry partners : Elkem Solar, Fesil Sunergy, Hydro, Innotech Solar, Norsun,  Prediktor, REC, Scatec and Umoe Solar Associated partners:   NORUT and UiA Narvik Glomfjord Trondheim Oslo/Kjeller/Fredrikstad Herøya Kristiansand Årdal Solbygg (Trondheim) MiNaLab (Oslo) Solbygg (Kjeller)
Wafer-based technology Feedstock Si (98%) SoG-Si Metallurgic ElectroChem  Chem  Wafer Cell/ Module Panel REC Silicon  REC Wafer  REC Solar Fesil Norsun Metall- kraft Orkla Ex. CruSiN Elkem Solar Hycore Umoe? System
Solar - Our Competence areas Feedstock  Characterisation Si-production and refining Crystallisation (Multi og Mono) Modeling Wafer sawing, recovery Cell processing Characterisation 3rd generation and ”added value” technologies Module / System
CenBio
Tverrfaglig forsking Integrerer innsikt fra energiøkonomi, energisystemanalyse, statsvitenskap, sosiologi, innovasjonsstudier, teknologi- og vitenskapsstudier samt industriell økologi.  Hovedmålet er å bedre beslutningsunderlaget for framtidens energistrategi, både på brukernivå, systemnivå, for industri og for offentlige beslutningstakere.
SEEIT activities, programs and outcomes Program Program Program Executive Elite Master Industrial Ph.D Discovery Incubation Acceleration Program Program Program KIC Platform KIC Innovation activities New approaches, processes and products KIC Education activities Highly qualified people with Entrepreneurial and technical skills  plus international networks
Potensiale er STORT – men  Hva må vi ha? Økt utdanningskapasitet for å fornye industrien Styrket forskningsfond og utbygging ytterligere Forskningsinfrastruktur, ECCSEL, Solbygg Styrket verdikjede innovasjon Verifisering, pre-seed, Innovation Village Bedre støtteordninger for industrielle teknologipiloter i Norge. Politisk handlekraftige myndigheter Fra ord til handling

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Johan Hustad

  • 1. Fornybar energi og Trondheims posisjon – status og potensiale. P resentasjon på Trøndelagsrådet 2010 Prof. Johan E. Hustad, Prorektor nyskaping og eksterne relasjoner
  • 2. Hva har vi? Sterke forsknings- og utdanningsmiljøer Industrielle kunnskapsmiljøer Energiselskapene Industriselskaper Leverandørindustri Energiressurser For å realisere energianlegg God samhandling lokalt Partnere for nyskaping ++ Noen svært engasjerte politikere Nok handlekraft?
  • 3. ENERGI OG PETROLEUM Ressurser og Miljø Organisasjon SENTERE Strategiske initiativer Hydrogen CO2-handtering Grønn Innovasjon Assossierte aktiviteter Studieprogrammer Industriell økologi PETROLEUMS- SENTER FOR BEDRE RESSURS- UTNYTTELSE NTNU-SINTEF GASSTEKNISK SENTER NTNU- SINTEF SENTER FOR BÆRE- KRAFTIGE BYGNINGER NTNU- SINTEF LEDELSE STRATEGISK RÅD SENTER FOR ENERGI OG SAMFUNN SENTER FOR FORNYBAR ENERGI NTNU- SINTEF- IFE SENTER FOR ELEKTRISK ENERGI OG ENERGI- SYSTEMER NTNU- SINTEF
  • 4.  
  • 5. Centres for Environment-friendly Energy Research From 2009 – 8 new centres: NOWITECH - Research Centre for Offshore Wind Technology - SINTEF CEDREN - Centre for Environmental Design of Renewable Energy - SINTEF ZEB - The research Centre on Zero Emission Buildings - NTNU BIGCCS Centre - International CCS Research Centre - SINTEF The Norwegian Research Centre for Solar Cell Technology - IFE CenBio - Bioenergy Innovation Centre - UMB Norwegian Centre for Offshore Wind Energy - CMR SUbsurface CO2 storage - Critical Elements and Superior Strategy - CMR
  • 6. Strong motivation for offshore wind R&D Huge potential: 150 GW expected by 2030 in EU Offshore wind is vital for battling climate change, development of industry and contributing to security of supply Development at an early stage – only 3 full scale tests on +30 m water depth realized by 2009 Technology needs to be developed to reduce costs per kWh CAPEX distribution offshore wind farm (DTI study) Turbine w jacket HyWind Offshore 2030: 150 GW* Offshore 2020: 40 GW* Offshore 2008: ~1 GW *EWEA estimate for EU HyWind (floating, 200m) (jacket, 46m) (jacket & tripods, 30m) Wind turbine Electric grid Substructure
  • 7. ” Solar United” Research partners: IFE, NTNU, SINTEF and UiO Industry partners : Elkem Solar, Fesil Sunergy, Hydro, Innotech Solar, Norsun, Prediktor, REC, Scatec and Umoe Solar Associated partners: NORUT and UiA Narvik Glomfjord Trondheim Oslo/Kjeller/Fredrikstad Herøya Kristiansand Årdal Solbygg (Trondheim) MiNaLab (Oslo) Solbygg (Kjeller)
  • 8. Wafer-based technology Feedstock Si (98%) SoG-Si Metallurgic ElectroChem Chem Wafer Cell/ Module Panel REC Silicon REC Wafer REC Solar Fesil Norsun Metall- kraft Orkla Ex. CruSiN Elkem Solar Hycore Umoe? System
  • 9. Solar - Our Competence areas Feedstock Characterisation Si-production and refining Crystallisation (Multi og Mono) Modeling Wafer sawing, recovery Cell processing Characterisation 3rd generation and ”added value” technologies Module / System
  • 11. Tverrfaglig forsking Integrerer innsikt fra energiøkonomi, energisystemanalyse, statsvitenskap, sosiologi, innovasjonsstudier, teknologi- og vitenskapsstudier samt industriell økologi. Hovedmålet er å bedre beslutningsunderlaget for framtidens energistrategi, både på brukernivå, systemnivå, for industri og for offentlige beslutningstakere.
  • 12. SEEIT activities, programs and outcomes Program Program Program Executive Elite Master Industrial Ph.D Discovery Incubation Acceleration Program Program Program KIC Platform KIC Innovation activities New approaches, processes and products KIC Education activities Highly qualified people with Entrepreneurial and technical skills plus international networks
  • 13. Potensiale er STORT – men Hva må vi ha? Økt utdanningskapasitet for å fornye industrien Styrket forskningsfond og utbygging ytterligere Forskningsinfrastruktur, ECCSEL, Solbygg Styrket verdikjede innovasjon Verifisering, pre-seed, Innovation Village Bedre støtteordninger for industrielle teknologipiloter i Norge. Politisk handlekraftige myndigheter Fra ord til handling