European solar initiative



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NEW EUROPEAN STRATEGIES FOR ENERGY THE EUROPEAN INDUSTRIAL INITIATIVES, THE NEW PUBLIC-PRIVATE PARTNERSHIPS IN ENERGY TECHNOLOGIES European solar initiative Anna De Lillo ENEA Verona, 21 ottobre 2009

PV SOLAR EUROPEAN INDUSTRIAL INITIATIVE (PVSEII) The Industry Vision is to establish PV as a mainstream clean, sustainable and competitive energy technology providing up to 12% of the European electricity demand by 2020 and up to 20% in 2030. PVSEII main obijectives : SEII will bring the PV Industry gradually to full cost competitiveness in all market segments by 2020. SEII will establish the conditions allowing integration of high penetration of distributed PV electricity within the global European electrical system. SEII will allow the implementation of large scale demonstration and deployment projects. European Solar Industrial Initiative

PVSEII- Cost reduction ob. 1 New material development Active layers deposition Reliability, efficiency and cost From LAB to FAB Concentration Budget 4.000 M until2020 50% public;50% private European Solar Industrial Initiative

PVSEII- Integration ob.2 Components development Advanced Grid Integration of PV Systems Large-Scale PV Systems Integration Analysis System Level Test and Demonstrations Codes, Standards, and Regulatory Implementation Budget 2.000 M until2020 50% public;50% private European Solar Industrial Initiative

PVSEII- obiettivo 3 (dimostrazione e sfruttamento)) Solar cities Grid-parity Integration of PV in urban environments Sustainability Awareness-raising on the potential of PV Education E-mobility Budget 2.000 M until2020 50% public;50% private -deployment 65 % public;35% private - educational European Solar Industrial Initiative

Costi connessi (M ) Short term (2010-2013) Med.term (2014-2016) Long term (2016-2020) TOTAL Cost reduction System integration 2000 1000 1000 4000 500 1000 500 2000 D&D 1000 500 500 2000 Total PVSEII 3500 2500 2000 8000 European Solar Industrial Initiative

Jul 06 Sep 06 Nov 06 Jan 07 Mar 07 May 07 Jul 07 Sep 07 Nov 07 Jan 08 Mar 08 May 08 Jul 08 Sep 08 Nov 08 Jan 09 Mar 09 May 09 Jul 09 Sep 09 cumulative power (MW) Potenza installata in Italia 700 600 500 400 300 200 100 0

Power (MW) MODULE PRODUCTION IN ITALY Main national producer in 2008 Modules: 12 Cells: 4 Polysilicon : 3 initiatives announced Total production 2008 cells modules Solon (S.E. Project) 50 Helios technology 16 27 Solarday 20 Enipower 1,9 14 Xgroup 9,5 9,5 Sorgenia Solar 5 Renergies Italia 5 Elettrosun 3 Azimut 1,2 DG Energy 1 Solsonica n.a. 8 Omniasolar 1 Total 28,4 144 350 300 250 200 150 100 50 0 modules cells

1995 1998 2000 2002 2004 2006 2008 Celle prodotte (MW) LA PRODUZIONE INDUSTRIALE 8.000 7.000 6.000 5.000 4.000 3.000 2.000 1.000 0 +70% +68% +40% +40% cell production IEA Production capacity IEA cell production total

Power (MW) INVERTER MANUFACTURERS IN ITALY 1200 2007 2008 2009 exp. Elettronica Santerno 80 190 250 Power One Italy 203 390 Siac / Siel 160 250 Italcoel 2 Aros n.a. 83 80 Total 82 636 970 1000 800 600 400 200 0 inverter 2006 2007 2008 2009 exp.

BUSINES VALUE IN 2008 Power (MW) Value (M ) Total (M ) centralized 120 540 installed plants 1800 distributed 210 1260 export of PV products import of pv products value of PV business modules 90 270 inverter 490 200 wafer 30 25 cells 110 200 modules 280 840 inverter 190 75 470 1140 1130

Value (M ) BUSINES VALUE 2000 1500 1000 500 installed plants export of PV products 0-500 -1000 2006 2007 2008 import of PV products net value of PV business -1500

R&D IN ITALIA Organizzazione ENEA CESI Ricerca Ferrara University Milan University Parma University Bologna University Roma-1 University Roma-2 University CNR Bologna CNR Bari CNR Lecce Enipower ST Microelectronics Pirelli Labs Area di ricerca esviluppo c-si, a-si, a-si/c-si, Cu 2 O, concentrazione GaAs singole/multigiunzione c-si, concentrazione, celle dye sensitized c-si CdTe/CdS, CuGaInSe2/CdS Celle polimeriche a-si, a-si/c-si eterostrutture celle dye sensitized c-si, a-si/c-si a-si Termo PV c-si c-si, celle organiche Celle organiche

Solar Thermal Electricity Industrial Initiative (STEII) Obiettivi STEII: 2000 MW al 2012 30.000 MW al 2020 4 tecnologie principali: Impianti a specchi parabolici lineari Impianti a torre Sistemi lineari a lenti di Fresnel Sistemi a disco per motori Stirling European Solar Industrial Initiative

STEII -Potenziale di generazione elettrica (TWh) European Solar Industrial Initiative

STEII -Potenziale installabile in Sud-EU (MW) European Solar Industrial Initiative

STEII- esigenze di R&DD 7 obiettivi prioritari: 1. Aumento efficienza 2. Riduzione costi di investimento 3. Aumento della dispacciabilità 4. Ibridizzazione e applicazioni multiple 5. Riduzione costi di operazione e manutenzione 6. Riduzione delle necessità di acqua di raffreddamento 7. Programmi di educazione e formazione European Solar Industrial Initiative

STEII- R&DD- Ob. 1- Incremento efficienza Obiettivi: Increase the components efficiency Increase the overall efficiency Improve efficiency (decrease the heat loss, more efficient cycles and components) Create new design concepts by developing a new generation of parabolic trough collectors Develop new technological features Budget: Investment costs: 2,148 M Innovation investment (1/3 average) 709 M Installed capacity 515 MW European Solar Industrial Initiative

STEII- R&DD- Ob. 2- Riduzione costi Obiettivi: Reduce investment (cheaper components, better use of land, economies of scale) Better use of the installations (hybridization) Increase the hours of production Make terms of credit more adequate (lower interest rates, less technical risks) Budget: Investment costs: 1,668 M Innovation investment (1/3 average) 551 M Installed capacity 282 MW European Solar Industrial Initiative

STEII- R&DD-ob.3- dispacciamento Obiettivi: Improve the thermal energy storage systems (such as filler materials, transfer fluids, changing of phase systems, ultra capacitors) Make terms of credit more adequate (lower interest rates, less technical risks) Budget: Investment costs: 1,205 M Innovation investment (1/3 average) 398 M Installed capacity 242 MW European Solar Industrial Initiative

STEII- R&DD-ob.4- Hibridisation Obiettivi: Develop hybrid plants with other renewables Desalination and purification of water Budget: Investment costs: 561 M Innovation investment (1/3 average) 185 M Installed capacity 99 MW European Solar Industrial Initiative

STEII- R&DD-ob. 5-Riduzione costi O&M Obiettivi: Optimise the information and communication technologies - Develop new technological features - Optimise operation and maintenance Budget: Investment costs: 591 M Innovation investment (1/3 average) 195 M Installed capacity: 92MW European Solar Industrial Initiative

STEII- R&DD-ob. 6- acqua raffreddamento Obiettivi: Develop new cooling systems with lower water needs (steam cycles) Develop dry cooling systems Budget: Investment cost 722M Innovation investment (1/3 average) 238 M Installed capacity 191 MW European Solar Industrial Initiative

The innovations in trough technology introduced by ENEA (ARCHIMEDE) 550 C Hot fluid Serbatoi di accumulo Cold fluid Steam generator 290 C Power block Workshop-European Solar Industrial Initiative

Progetto Archimede : la localizzazione Presso il comune di Gargallo è stata recentemente riconvertita una centrale ad olio combustibile in una a gas a ciclo combinato kwh/m 2 1750 1350

Progetto Archimede: layout dell impianto solare

Grande Progetto Solare Termodinamico

Test assembling of new collector Comes

Innovazione tecnologica: strutture di supporto e superfici riflettenti Competitori di altri paesi ENEA Brevetto ENEA Aziende coinvolte: Ronda, Reflex, Duplomatic, Biosolar, Comes, Sifa

Reflecting panel manufacturing REFLEX - RONDA

Tubo ricevitore ENEA brevetto Tubo ricevitore Alta efficienza Il tubo può raggiungere 550 C Aziende coinvolte: Angelantoni, Archimede solar energy, Polo, Steroglass, Itiv Angelantoni ha firmato un accordo Siemens per produrre 100.000 tubi a (costo un tubo 1.000 )

INDUSTRY 2015 PROGRAM The government plan (Ministry of the Economic Development) establish the future strategic lines for the development and competitiveness of the Italian productive system The plan is addressed to the energy efficiency and the renewables sources foreseen the financial support of industrial projects, starting from spring 2009 aimed at create innovative process and products that should contribute to solve the Italian energy challenge create new industrial reality, enterprises and labour places 92 selected proposals 30 financed projects 6 on solar technologies Workshop-European Solar Industrial Initiative

INDUSTRY 2015 PROGRAM for Solar technologies Admitted project Admitted cost BIPV (Solar ceramics) 11.6 Concentration PV 17.0 Organic PV cell 12.1 High Concentration PV 11.4 Thin Film (CIS) 14.0 Solar thermodynamic 12.5 Workshop-European Solar Industrial Initiative