IEA PVPS Implementing Agreement. Klaus Prume (Alternate Executive Committee)

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1 IEA PVPS Implementing Agreement Klaus Prume (Alternate Executive Committee)

2 PVPS Photovoltaic Power Systems Internationale Kooperation für eine nachhaltige Entwicklung von Photovoltaik (PV) Anlagen Erstellung und Verfügbarmachung von zuverlässigen und unabhängigen Informationen und Daten

3 Jährlicher Zubau von PV Installationen

4 Installierte PV-Kapazität weltweit

5 Prognose: Stärkerer PV Zubau als erwartet

6 IEA PVPS Fakten 28 Teilnehmer: 23 Länder, EC, EPIA, SEPA, SEIA, Copper Alliance Gemeinschaftliche Erforschung und Entwicklung zur Nutzung von Photovoltaik als nachhaltige erneuerbare Energiequelle Zur Zeit 6 (7) aktive Tasks

7 Zielsetzungen des IA PVPS PV Technologie Entwicklung Wettbewerbsfähigkeit des PV Marktes Eine nachhaltige und wirtschaftliche PV Industrie Empfehlungen und Strategien für die Politik Unabhängige und zuverlässige Informationen

8 Active PVPS Tasks Task 1 Strategic PV Analysis and Outreach Task 8 Very large scale PV power generation systems Task 9 Deployment of PV technologies: co-operation with developing countries Task 12 PV environmental, health & safety activities Task 13 PV performance, quality and reliability Task 14 High-penetration of PV systems in electricity grids Task 15 Accelerating BIPV (started in 2014)

9 Task 1: Strategic PV Analysis and Outreach Trends in photovoltaic applications in selected IEA countries, 19 th ed PVPS website Dedicated workshops

10 Task 8: Very large scale PV power generation systems Examines and evaluates the feasibility of Very Large Scale Photovoltaic Power Generation (VLS-PV) Systems, which have a capacity ranging from over multi-mw to GW Aims to accelerate and implement real VLS-PV projects by Performing active dissemination and communication with stakeholders Developing recommendations of how to overcome hurdles/ barriers, from viewpoints of technical and non-technical

11 Task 9: Deployment of PV technologies co-operation with developing countries Continues research and publications as specific to rural electrification and in particular as related to the Millenium Development goals; Deploys to emerging regions the technical work undertaken by other subtasks and formulates specific research and adaptation as required Reaches out to focussed emerging markets, working with selected megaphones.

12 Task 12: PV environmental, health & safety activities Quantifies the EH&S profiles of PV in comparison to other energy technologies Defines and addresses EH&S and sustainability issues that are important for market growth Disseminates the results of the EH&S analyses to stakeholders, policy makers and the general public

13 Task 13: Performance and Reliability Subtask 1 Economics of PV System Performance and Reliability Subtask 2 System Performance and Analysis Subtask 3 Module Characterization and Reliability Subtask 4 Dissemination

14 Task 14: High-Penetration PV in Electricity Grids Cross Cutting Subtask Market implications with High PV Penetration Subtask 1 Energy management with high PV penetration Subtask 2 High penetration in local distribution grids Subtask 3 High penetration solutions for central PV generation scenarios Subtask 4 Smart power converters for high penetration PV and Smart Grids Subtask 5 Communication and Control for high penetration of PV

15 Task 15: Accelerating BIPV Subtask A: BIPV project database Subtask B: Transition towards sound BIPV business models Subtask C: International framework of BIPV specifications Subtask D: Environmental benefits of BIPV Subtask E: Demonstration Subtask F: Dissemination

16 Thank you for your Vielen Dank für die attention! Aufmerksamkeit!

17 fnr.de DAS UMSETZUNGSABKOMMEN BIOENERGIE DER INTERNATIONALEN ENERGIEAGENTUR (IEA BIOENERGY) Bonn, BMWi Birger Kerckow

18 Fachagentur Nachwachsende Rohstoffe e.v. (FNR) Funktion: Zentrale Koordinierungsstelle für Nachwachsende Rohstoffe in Deutschland Gründung: Oktober 1993 Standort: Gülzow bei Güstrow Förderung: Bundesministerium für Ernährung und Landwirtschaft (BMEL) Mitglieder: 82 Mitarbeiter: 82 Fachagentur Nachwachsende Rohstoffe e.v Seite: 2

19 Gliederung Bedeutung Bioenergie Strategische Ausrichtung Schwerpunkte Deutsche Beteiligung Ergebnisse 3

20 Facilitating commercialisation and market deployment of environmentally sound, socially acceptable and cost-competitive bioenergy systems and technologies 4

21 Einführung Bioenergy s significant potential to contribute to future global energy demand Bioenergy s role in the transition to a low carbon economy Bioenergy s role in the emerging biobased economy Bioenergy s intrinsic interlinkage with the growing demand for food, feed and fibre 5

22 Einführung Bioenergie deckt ca. 10 % des globalen Primärenergiebedarfs 5.1% 2.3% 10.0% 1.0% 28.8% Coal/peat Oil 21.3% Nat. gas Nuclear Hydro Biomass Other 31.5% WORLD TOTAL PRIMARY ENERGY SUPPLY 2011 IEA Key World Energy Statistics

23 Einführung Bioenergie nach Weltregionen (EJ) und ihr Anteil an der gesamten Energiebereitstellung (%) 7

24 Einführung Bioenergie hat die Chance eines größeren Beitrags zu einer sicheren und nachhaltigen Energiebereitstellung EJ Coal Nuclear Oil Natural gas Other renewables Hydro 0 6DS 4DS 2DS Biomass and waste Global modelling results - Total primary energy supply IEA Energy Technology Perspectives

25 Aufgabe von IEA Bioenergy Unabhängiges Gremium für klare und fundierte Informationen zu Bioenergie Policy IEA BIOENERGY R&D/ Technology Market/Capital Investments 9

26 Strategische Ausrichtung Drivers of Strategic Plan Security of energy supply GHG emissions reduction Sustainability of biomass New / improved bioenergy technologies 10

27 Neuer Strategischer Plan Additional drivers Transition to a low carbon economy Growing demand for food / feed / fibre with increasing world population Emerging bio-based economy Integration with natural gas Focus on optimisation of the economic / environmental / social value of sustainable bioenergy 11

28 Neuer Strategischer Plan Objectives of New Strategic Plan Objective 1 - to promote the market deployment of technologies and systems for sustainable energy production from biomass Objective 2 - to raise public awareness through communication with key stakeholders for the use of biomass as an energy source and to provide clear and verified information on bioenergy Objective 3 - to strengthen the outreach efforts of the Implementing Agreement to involve interested new member countries, industry and multilateral organisations Objective 4 - to increase the dissemination of information 12

29 Scope Bioenergy involves a range of feedstocks and technology options that can produce heat, power and liquid fuels 13

30 Scope Task Structure Sources Process Process Product Task 36 MSW MSW Task 36 Task 43 Biomass Feedstocks / Socioeconomi cs Task 37 LFG/AD Biogas TaskTask 3232 Task 33 Task 34 Task 33 Pyrolysis Combustion Gasification Combustion and 39 Task 34 Task Cofiring Task 39 and Gasification Pyrolysis Liquid Liquid Cofiring fuels Fuels Task 42 Biorefineries Task 38 GHG Effects Overview Task 40 Sustainable Trade Task 40 Sustainable Trade Task 41 System Analysis 14

31 Scope 23 Contracting Parties Australia Austria Belgium Brazil Canada Croatia Denmark European Commission Finland France Germany Ireland Italy Japan Korea Netherlands New Zealand Norway South Africa Sweden Switzerland United Kingdom United States 15

32 IEA Bioenergy und deutsche Beteiligung Gründung 1978 Eintritt Deutschlands 2005 (BMEL für Bundesregierung) ExCo Mitglied: FNR; Vertreter: BMEL Mitwirkung in den 10 laufenden Tasks Tasks jeweils mit drei Jahren Laufzeit Arbeitsschwerpunkte derzeit in Abstimmung 16

33 Deutsche Beteiligung T 32 Biomass Combustion and Co-firing: Dr. Hartmann, TFZ Straubing T 33 Thermal Gasification of Biomass: Prof. Dr. Thomas Kolb, KIT T 34 Pyrolysis of Biomass: Dr. Dietrich Meier, Thünen Institut Hamburg T 36 Integrating Energy Recovery into Solid Waste Management: Prof. Helmut Seifert, KIT T 37 Energy from Biogas: Prof. Bernd Linke, ATB Potsdam (Dr. Liebetrau, DBFZ) T 38 Climate Change Effects of Biomass and Bioenergy Systems: Sebastian Rüter, Thünen Institut Hamburg 17

34 Deutsche Beteiligung T 39 Commercialising Conventional and Advanced Liquid Biofuels from Biomass: Dr. Franziska MüllerLanger, DBFZ Leipzig T 40 Sustainable International Bioenergy Trade: Securing Supply and Demand: Uwe Fritsche, IINAS Darmstadt T 42 Biorefining Sustainable Processing of Biomass into a Spectrum of Marketable Biobased Products and Bioenergy: Dr. Heinz Stichnothe, Thünen Institut Braunschweig T 43 Biomass Feedstocks for Energy Markets: Dr. Jörg Schweinle, Thünen Institut Hamburg 18

35 Contractual & management Executive Committee Bi-annual ExCo meetings/management of the IA ExCo themed workshops Annual report, newsletters, website Strategic Position Papers Bi-annual status reports to REWP Secretariat 19

36 Contractual & management Annual Budget: 2014 The currency for the Implementing Agreement is US dollars * the Strategic Fund is a component of the Task Funds. 20

37 UMSETZUNGSSTRATEGIE Technology development and deployment through Tasks programmes and ExCo engagement Strategic projects to address and resolve cross-tasks issues and broader topics Expanded and more effective collaboration with other international bodies 21

38 UMSETZUNGSSTRATEGIE Zusammenarbeit mit anderen IEA Abkommen 22

39 IMPLEMENTATION OF THE NEW STRATEGIC PLAN WILL promote the optimisation of the economic, environmental and social value of bioenergy through research and development collaboration identification of best practices in bioenergy policy pro-active communication with main stakeholders increase participation in our Agreement, particularly by leading players in IEA non-member countries facilitate accelerated deployment of bioenergy globally 23

40 Contribution to technology evolution Outputs from Tasks including Source separation of MSW Fuel and technology alternatives for buses Biorefinery classification system 24

41 Contribution to technology evolution Outputs from ExCo including Thermal pre-treatment of biomass for large-scale applications Future biomass-based transport fuels Environmental sustainability of biomass 25

42 Contribution to technology deployment Outputs from Tasks including Health and safety aspects of solid biomass storage, transportation and feeding International bioenergy trade History, status & outlook on securing sustainable bioenergy supply, demand and markets The biogas handbook Science, production and applications 26

43 Contribution to technology deployment Outputs from ExCo including Developing sustainable trade in bioenergy The science-policy interface on the environmental sustainability of forest bioenergy Waste to energy 27

44 Policy relevance Workshops with policy makers Studies informing policy options Input to IEA Roadmaps 28

45 Contribution to environmental protection Small scale particle removal technologies Monitoring sustainability certification of bioenergy Short summary Report on bioenergy and water 29

46 Contribution to information dissemination Website updated in 2013 Annual Reports ExCo workshop publications IEA Bioenergy End of Triennium Conference (mit Links zu den Internetauftritten der einzelnen Tasks) 30

47 Outreach to IEA non-members Collaboration with international bodies, e.g. FAO, GBEP Observers invited to ExCo meetings Task meetings in IEA nonmember countries Task 39 members at conference in Nanjing, China Input to IEA How2Guide 31

48 Vielen Dank! 32

49 Fachagentur Nachwachsende Rohstoffe e.v. (FNR) Hofplatz Gülzow-Prüzen b.kerckow@fnr.de Fachagentur Nachwachsende Rohstoffe e.v Seite: 33

50 Task 32: Biomass Combustion and Co-firing Focus on: Combustion and co-firing of biomass for the production of usable energy. Aims to: Stimulate further expansion of biomass combustion. Generate and disseminate information on technical and nontechnical barriers and solutions for dedicated biomass combustion systems and biomass co-firing in existing coal-fired power stations. 34

51 Task 32: Key Activities and Achievements Health & Safety Aspects of Solid Biomass Storage, Transportation and Feeding The Pellet Handbook: the production and thermal utilisation of pellets. Authoritative reports and workshops Ash utilisation from biomass combustion and co-firing Review of small scale particle removal technologies Evaluation of suitability of torrefied fuels Small-scale CHP Challenging fuels Technical databases and tools 35

52 Task 33: Thermal Gasification of Biomass Focus on: Thermal conversion of biomass to produce substitute fuel gases for utilisation in energy conversion systems. Aims to: Exchange information and promote co-ordinated RD&D among the participants to eliminate technological impediments to the commercialisation of thermal gasification of biomass. Harboore CHP-2006: hours operation on Engine TUV - FICFB Güssing CHP Demo 36

53 Task 33: Key Activities and Achievements Research needs identification, reports and publications. A programme of international workshops viz.: State-of-the-art technologies for small biomass co-generation Gasification and alternative fuels development Biomass gasification opportunities in the forest industry Bed materials in fluid bed gasifiers Database of gasification plants. 37

54 Task 34: Pyrolysis of Biomass Focus on: The controlled thermal degradation of biomass in any form to derive energy and chemical products. Aims to Study biomass pyrolysis and its role in an integrated bioenergy scheme. Provide a forum for all aspects of biomass fast pyrolysis including preparation of feedstock, the fast pyrolysis process and utilisation of the liquid product for energy, electricity and chemicals production. 38

55 Task 34: Key Activities and Achievements Major role in standards development Pyrolysis Handbook Bio-oil round robin testing Bio-oil toxicity assessment Biorefinery case studies International Workshops 39

56 Task 36: Integrating Energy Recovery into Solid Waste Management Focus on: Conversion of Municipal Solid Waste (MSW) by thermal processes for the production of usable energy, including heat and electricity. Aims to: Collate research and policy information and case study material to produce best practice guidelines for policy makers 40

57 Task 36: Key Activities and Achievements Review/exchange information on EfW Appropriate application of EfW, integrated with recycling Understanding of EfW options at small scale Evaluation of methodologies for measuring the biogenic content of waste Reports on key topics for EfW 41

58 Task 37: Energy from Biogas Focus on: Energy from anaerobic digestion of MSW, organic industrial waste, sewage sludge, energy crops or agricultural residues using engineered reactors. Aims to: Exchange and disseminate information on biogas production and energy utilisation and promote deployment of AD plants 42

59 Task 37: Key Activities and Achievements Stimulate R&D on gas upgrading Information for decision makers Reports on biogas upgrading and biomethane pipeline injection Report on digestate utilisation and input to national standards development Biogas Handbook 43

60 Task 38: Climate Change Effects of Biomass and Bioenergy Systems Focus on: Investigation of all processes involved in bioenergy systems on a full life-cycle basis to establish overall GHG balances. Aims to: Promote sustainable use of bioenergy through increased understanding of climate effects. Refine, demonstrate and promote standard methods to document climate effects. 44

61 Task 38: Key Activities and Achievements Development of methodologies for optimisation of GHG reduction strategies, e.g. carbon sequestration; and to mainstream GHG benefits of biomass and bioenergy systems with other externalities Provide standards for GHG performance in bioenergy policies Series of case studies / scientific papers to inform decision makers Statement on the Timing of GHG mitigation benefits of forestbased bioenergy Contributions to the work of IPCC/OECD/IEA. 45

62 Task 39: Commercialising Conventional and Advanced Liquid Biofuels from Biomass Focus on: Commercialisation of conventional and advanced liquid biofuels for the auto/haulage sector and, increasingly focusing on aviation/maritime applications. Aims to: Identify and address the technical, environmental, institutional and other nontechnical barriers to liquid biofuels development / deployment. 46

63 Task 39: Key Activities and Achievements Review of international policy developments. Provision of information and analyses on policy, markets and implementation issues. Evaluation of the status of algal biofuels and drop-in biofuels. Comparison of technological platforms. 47

64 Task 40: Sustainable International Bioenergy Trade Securing Supply and Demand Focus on: Supporting development of a sustainable international bioenergy trading system while recognising the diversity of resources and applications. Aims to: Review the development of biomass markets in various parts of the world and existing trade experiences. Analyse the future market demand for biomass from the broader bio-based economy perspective. Review the barriers hampering development of a global commodity market and identify strategies to overcome them. Identify sustainability criteria and their local influence on the biomass market. 48

65 Task 40: Key Activities and Achievements Analysis of trade, markets and market experience, e.g., ethanol. Case studies of biomass production and supply chains. Report on the Global Wood Pellet Industry Market and Trade Study. Studies of sustainability quality and certification/ standardisation. Development of best practice guidelines. Trade in Ethanol in Brazil

66 Task 41: Bioenergy Systems Analysis Focus on: A special Task with a strong project emphasis. Does not have a networking role or repeating components such as bi-annual meetings like other Tasks. Aims to: Undertake key projects of direct interest to strategic decision makers in the area of bioenergy. 50

67 Task 41: Key Activities and Achievements Four projects have been identified. Project 1: Bioenergy: competition and synergies - completed Project 2: Analysis and identification of gaps in fundamental research for the production of second generation liquid transportation biofuels completed Project 3: Fuel and Technology Alternatives for buses - completed. A joint project with the AMF IA. Project 4: Enhanced Emission Performance and Fuel Efficiency for Heavy Duty Methane Engines ongoing. A joint project with the AMF IA 51

68 Task 42: Biorefining Sustainable Processing of Biomass into a Spectrum of Marketable Bio-based Products and Bioenergy Focus on: Biorefinery as a facility that optimises the integrated production of materials, fuels, energy and chemicals and so maximises the value derived from the biomass feedstock. Aims to: Assess the worldwide position and potential of biorefineries. Gather new insights of the possibilities for the simultaneous manufacture of transportation fuels, added value chemicals, heat, power and materials. 52

69 Task 42: Key Activities and Achievements Developed Biorefinery Classification System, adopted by several countries and the EC. Country reports on current processing potential and mapping of existing plants. Bron: Mosmuller, BFF 2013 Identification of biorefinery related RD&D programmes in participant countries. Annual biorefinery seminar for stakeholders. Linking of ongoing international activities through joint events and new initiatives 53

70 Task 43: Biomass Feedstocks for Energy Objectives: To promote sound bioenergy development that is driven by well-informed decisions through timely analyses of all matters relating to biomass feedstock, including biomass markets and the socio-economic and environmental consequences of feedstock production. The work programme has a global scope and includes production systems in both agriculture and forestry. The primary focus is on land use and bioenergy feedstock systems. 54

71 Task 43: Focus Topics The following topics have been selected as a basis for Task activities: Land use and sustainable feedstock supply systems Assessment and certification of sustainability Socio-economic drivers in implementing sustainable bioenergy production and supply 55

72 Nationaler IEA Implementing Agreement Tag zu den Förderschwerpunkten Erneuerbare Energien und konventionelle Energiebereitstellung Geothermal Implementing Agreement IEA-GEOTHERMAL Dr. Lothar Wissing, PtJ-EEN Bonn,

73 Project Management Jülich. Your Partner for Research and Innovation Funding History The IEA-GIA, or IEA-Geothermal, officially began operations on 7 March Since then, the GIA s operations have been extended for three further terms: (2nd Term) (3rd Term) (4th Term) being approved by IEA-CERT on February Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

74 Project Management Jülich. Your Partner for Research and Innovation Funding Members and Structure countries : Australia, France, Germany, Iceland, Italy, Japan, Mexico, New Zealand, Norway, Republic of Korea, Spain, Switzerland, the United Kingdom and the United States 3 Sponsors: Canadian Geothermal Energy Association (CanGEA), Geodynamics Limited, Geothermal Group - Spanish Renewable Energy Association (GG-APPA), Green Rock Energy Limited and ORMAT Technologies, Inc. Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

75 Project Management Jülich. Your Partner for Research and Innovation Funding Members and Structure Executive Committee: 1 Chairman (NZ) 4 Vice-Chairman (AUS, D, N, R.Korea) 5 active Annexes with subordinated Tasks 1 Secretary permanent The cost per Common Fund share is currently US$ 3,500/year Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

76 Project Management Jülich. Your Partner for Research and Innovation Funding Annex Structure until ) Environmental Impacts of Geothermal Development OA: GNS, New Zealand 3) Enhanced Geothermal Systems (EGS) OA: US Department of Energy (DOE), United States 7) Advanced Geothermal Drilling and Logging Technologies OA: Sandia National Laboratories, for US DOE, United States 8) Direct Use of Geothermal Energy OA: Swiss Geothermal Association (SVG-SSG), Switzerland 10) Geothermal Data and Information OA: Leibniz Institute for Applied Geophysics, Germany 11) Induced Seismicity OA: Lawrence Berkeley Laboratory, for US DOE, USA 12) Deep Roots of Volcanic Geothermal Systems OA: Orkustofnun (The National Energy Authority of Iceland) OA: Operating Agent / Annex Leader Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

77 Project Management Jülich. Your Partner for Research and Innovation Funding Annex Structure since Spring ) Environmental Impacts of Geothermal Development OA: GNS, New Zealand 8) Direct Use of Geothermal Energy OA: Swiss Geothermal Association, Switzerland 10) Geothermal Data and Information OA: Leibniz Institute for Applied Geophysics, Germany 12) Deep Roots of Volcanic Geothermal Systems OA: Orkustofnun (The National Energy Authority of Iceland) 13) Emerging Technologies (ex Annexes 3,7,11) OA: Leibniz Institute for Applied Geophysics, Germany OA: ETH Zürich, Switzerland Kickoff-Meeting in Hannover Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

78 Project Management Jülich. Your Partner for Research and Innovation Funding Objectives IEA Geothermal Actively promote effective cooperation on geothermal RD&D, including with industry partnership, through collaborative work programmes, workshops and seminars Provide policy makers with information about the newest developments in geothermal energy and highlight its advantages for sustainable development, the environment and economy Inform and educate international financial institutions about the value and hurdles specific to geothermal deployment Identify and deal with geothermal energy RD&D issues and opportunities, and encourage collaboration to improve/develop cost-effective methods and technologies Increase membership in the GIA with particular emphasis on encouraging non-iea Member countries with significant potential geothermal resources Encourage collaboration with other international organizations and appropriate implementing agreements Be an unbiased source of reliable, current worldwide information about geothermal energy and increase its dissemination to the IEA family and global decision makers, financiers, researchers and the general public Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

79 Project Management Jülich. Your Partner for Research and Innovation Funding IEA-Geothermal Offers Website Annual Report Country reports Trend Report Workshops Presentations Publications WGC Melbourne, April 2015 Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

80 Project Management Jülich. Your Partner for Research and Innovation Funding IEA-Geothermal Offers Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

81 Project Management Jülich. Your Partner for Research and Innovation Funding Challenges and Hurdles Unterschiedliches Engagement der einzelnen Länder und Personen Unterschiedliche Unterstützung durch die Länderinstitutionen Werbung neuer Mitglieder langwierig und schwierig, z.b. non-oecd wenig attraktive Produkte und Benefits Konkurrierende Institutionen z.b. IRENA, IGA, GRC, EGEC Zusammenarbeit IA - IEA Headquarter Paris, z.b. Statistik Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

82 Project Management Jülich. Your Partner for Research and Innovation Funding Chances and Benefits Internationale Trends und Daten aus Wirtschaft und Forschung für die Ausrichtung nationaler Wirtschaftsund Forschungspolitik Informelle Hintergrundinformationen Networking hinsichtlich internationaler Kontakte/ Kooperationen / Projekte / Aufträge Internationale Plattform zur Darstellung deutscher Forschungs- und Wirtschaftsleistungfähigkeit Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

83 Project Management Jülich. Your Partner for Research and Innovation Funding Perspectives Chancen nutzen und ausbauen durch vermehrtes Engagement deutscher Firmen, Institute und Verbände, ggf. mit finanzieller Unterstützung Unterstützung für die Werbung neuer internationaler Mitglieder durch Ministerium, CERT, REWP, IEA Koordination / Gemeinsame Aktionen mit anderen Institutionen z.b. DENA, KfW, Verbänden Klares Commitment - Zeit Attraktivität des IEA-Geothermal ausbauen Stärkerer Einsatz des Common Fund Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

84 Project Management Jülich. Your Partner for Research and Innovation Funding Next Activities IEA-GEOTHERMAL Hannover: Annex 13: Kickoff-meeting & nationale Präsentationen, Exkursion Genf: th ExCo-Meeting Mexico: April th ExCo-Meeting & Mittel- und Südamerika Symposium München: th ExCo-Meeting & nationale Präsentationen EGC Strasbourg Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

85 Project Management Jülich. Your Partner for Research and Innovation Funding Dr. Lothar Wissing, Nationaler IEA-Tag, BMWi Bonn,

86 Mitglied der Helmholtz-Gemeinschaft Hydrogen Implementing Agreement Technology Implementing Agreement der IEA Struktur, Arbeitsschwerpunkte und deutsche Beteiligung Jochen Linssen, Jürgen-Friedrich Hake Institut für Energie- und Klimaforschung Systemforschung und Technologische Entwicklung

87 IEA - Technology Implementing Agreements The IAs are the worldwide platforms to share research results and knowledge, fill existing research gaps, disseminate results, carry out deployment or demonstration programs by business, industry, research, governments and NGOs. The IAs give important contributions to IEA Secretariat analyses (WEO and ETP publication). Working Party on Energy End- Use Technologies Working Party on Fossil Fuels Working Party on Renewable Energy Technologies Fusion Power Co-ordination Committee Adv. Fuel Cells Adv. Transport Materials Adv. Motor Fuels Hybrid and Electric Vehicles Buildings and Community Systems District Heating and Cooling Energy Efficient Electrical Equip. Energy Storage Heat Pumping Technologies Demand-Side Management Smart Grids High-Temperature Superconductivity Emissions Reduction in Combust. Industrial Energy and Technology Enhanced Oil Recovery Fluidized Bed Conversion IEA Clean Coal Centre IEA GHG R&D Programme Gas and Oil Technologies Bioenergy Geothermal Hydrogen Hydropower Ocean Energy Systems Photovoltaic Power Systems Renewable Technology Deployment Solar Heating and Cooling SolarPACES Wind Energy Systems Environmental, Safety, Economy Fusion Materials Tokamaks Nuclear Technology Fusion Reactors Plasma Wall Interaction Reversed Field Pinches Spherical Tori Stellarator Concept Cross-cutting IAs: Climate Technology Initiative; Energy Technology Data Exchange; Energy Technology Systems Analysis Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 2

88 IEA HIA Strategic Framework New Period: Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 3

89 Hydrogen Implementing Agreement Topics for the period Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 4

90 IEA HIA Members Status quo end of Countries + 1 International organization + 3 sponsors New 2015: Belgium, China Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 5

91 HIA Structure and organization Election of a chair and vice chair (ExCo, team is possible) for five year period Secretariat for support of actions, meetings, management items, financial status etc. (financed by membership fees) Two meetings per year of the Executive Committee combined with reports of current task work (every 8 months, face-to-face or webinar) Organization of scientific work via task sharing with responsible operating agents (experts sponsored by countries) Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 6

92 HIA Strategic partnerships and collaborations International Panel of Hydrogen Energy (IPHE, existing MoU) Other Implementing Agreements: e.g. Advanced Fuel Cells IA (joint meeting every second year), joint R&D work with IA SolarPACES Information exchange with ETP and WEO analysts (invitation to task and ExCo meetings) International Atomic Energy Agency Hydrogen Economic Evaluation Program (HEEP) International Association for Hydrogen Energy (IAHE) joining the WHEC conference with special session International Association for Hydrogen Safety (HySafe) sponsorship of the ICHS conference Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 7

93 Information Dissemination Joint conferences: World Hydrogen Energy Conference (WHEC) International conference on Hydrogen Safety (ICHS) Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 8

94 Work programme status quo Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 9

95 Current and future Tasks in HIA Task 28 Large Scale Hydrogen Delivery Infrastructure Task 29 Distributed and Community Hydrogen Task 30 Global Hydrogen Systems Analysis Task 31 Hydrogen Safety Task 32 Hydrogen Based Energy Storage Task 33 Local H2 Supply for Energy Applications Task 34 Biological Hydrogen for Energy and Environment Task 35 Renewable Hydrogen Production Task 36 Life Cycle Sustainability Assessment Task # Task # Task # FUTURE Power to Hydrogen and Applications: Systems Analysis of technoeconomic and political conditions Successor to Task 31 - Safety Marine Task Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 10

96 Task 28 Large scale hydrogen delivery infrastructure Operating Agent: Marcel Weeda; ECN, The Netherlands Term: Objectives: International cooperation and exchange of knowledge including cost benefit analysis Improve understanding of infrastructure and hydrogen demands by sharing latest information, experiences/ insights and lessons learned Develop a common state-of-the-art knowledge base Improve understanding of available tools for modeling and analysis of hydrogen delivery infrastructure (rollout) using case studies; approach, assumptions... Identify knowledge gaps regarding components/concepts Work packages : Scenarios for FCEV fleets and hydrogen demand in 2030 and 2050 Assessing Hydrogen refueling station concepts Analysis of H 2 delivery pathways Participants: Netherlands: ECN, Shell USA: ANL and Proton OnSite (GM) Japan: Tokyo Gas and Nissan Denmark: Danish Gas Technology Centre and H2Logic Australia: GreenCollar Climate Solutions / AAHE France: GdF-SUEZ, TOTAL and Air Liquide Germany: NOW Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 11

97 Task 29 Distributed and community Hydrogen (DISCO-H 2 ) Operating Agent: Federico Villatico, UNIDO ICHET before 2013; Hiroshi Ito, Japan after 2013 Term: , Phase 2: Objective: Balancing and optimization of green hydrogen production in distributed/ community energy systems Identifying situations where the use of hydrogen is appropriate and assessing the technical, environmental, economic and social benefits Frame conditions of the analysis: Communities up to 1000 people; installed power capacity of the energy technologies below 500 kw; Island, rural and urban communities; Off-grid or communities connected and interacting with smart grids; Industrial distributed H 2 applications Work packages: Cost benefit analysis Business case and market research Identification of technical benefits and gaps Materials for education and awareness raising Material for planners and regulatory authorities to help them facilitate incorporating hydrogen systems Participants: Japan: AIST New Zealand: H2Logic Denmark: Danish Gas Technology Centre UNIDO ICHET Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 12

98 Task 30 Global hydrogen systems analysis Co-Operating Agents: Susan Schoenung, US and Jochen Linssen, Germany Term: Objectives: Develop a consistent data basis and perform systems analysis of hydrogen resources, generation and demand scenarios considering sustainable low-carbon solutions Build up of systems analysis expertise within the Hydrogen Implementing Agreement Collaborate with the IEA HQ to support the IEA (WEO and ETP) with technical and economical data Work packages : Detailed analyses of global hydrogen resources Updating and harmonizing of the hydrogen production technology database Collaboration with IEA analysts of the ETP/ WEO group Hydrogen for Smart Grid Participants: France, CEA&EDF Germany, FZJ Italy, ENEA Japan, AIST Norway, IFE Spain, imdea Sweden, Gronmij US, Sandia National Laboratory Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 13

99 Task 31 Hydrogen safety Operating Agent: William Hoagland, sponsored by USA and Canada (before 2013) Term: ; new Phase 2: Objective: Develop testing methodologies and collaborative testing programs that can be conducted Collect information on the effects of component or system failures of hydrogen systems Use the results obtained to develop targeted information packages for selected hydrogen energy stakeholder groups Prepare international guidelines for hydrogen safety Work packages : Physical effects and knowledge gaps Hydrogen and storage systems and materials Early markets: risk identification and hazard analysis Knowledge analysis, dissemination and use Participants: France, Air Liquide Germany, KIT The Netherlands, JRC and TNO Japan, Toho University Norway, IFE UK, Ulster University USA, SNL IA HySafe Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 14

100 Task 32 Hydrogen-based energy storage Operating Agent: Michael Hirscher, MPI Stuttgart Term: Objectives: Hydrogen-based energy storage by developing reversible/ regenerative hydrogen storage materials Develop hydrogen storage materials that fulfilling technical targets for mobile/ stationary applications Develop the fundamental and engineering understanding of hydrogen storage materials and systems Develop materials and systems for hydrogen-based energy storage Workplan: Porous materials (coordination polymer framework compounds, MOFs, ZIFs, COFs, and carbon-based compounds) Magnesium-based hydrogen and energy storage materials Complex and liquid hydrides (borohydrides, alanates, amides/imides-systems, magnesium-based compounds, reactive hydride composites and rechargeable liquid hydrogen carriers) Electrochemical storage of energy (metal hydride batteries, ion-conduction) Participants: Australia, Belgium, China, Denmark, France, Germany, Greece, Israel, Italy, Japan, Lithuania, Netherlands, New Zealand Norway, Korea, Sweden, Switzerland, UK, USA Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 15

101 Task 33 Local H 2 supply for energy applications Operating Agent: Øystein Ulleberg, IFE, Norway Term: Objectives: Provide an unbiased evaluation of the various pathways for local hydrogen supply Assess local H 2 supply systems and on-site H 2 -production technologies Monitor, review, and evaluate new on-site H 2 -production technologies & system concepts Study barriers & opportunities for local H 2 energy supply in existing and future energy markets Work packages : Technology Assessment Techno-economic analysis of new concepts Identification of barriers & opportunities Participants: Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 16

102 Task 34 Biological hydrogen for energy and environment Operating Agent: Alan Guwy, University of Glamorgan Term: Objectives: Basic research on Biohydrogen production by dark fermentation and bioelectrolysis Basic research on light-driven biohydrogen production Basic research on enzymatic and bio-inspired molecular systems Development and integration of biohydrogen fermentation systems for enhanced energy production Feasibility of Biohydrogen energy systems Biohydrogen for eco/energy systems Participants (preliminary) : Denmark, Finland, France, Germany, Italy, Japan, Korea, The Netherlands, New Zealand, Norway, Turkey, Sweden, Switzerland and UK Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 17

103 Task 35 Renewable hydrogen Production Co-Operating Agents: Everett Anderson (USA), Wilson Smith (The Netherlands), Christian Sattler (Germany) Term: Objectives: Accelerating the development of high efficient and low cost materials/ systems for the large scale renewable hydrogen production technologies Push forward state-of-the-art in all of the renewable hydrogen production technologies toward practical viability by the creation of an international network of experts in all the renewable hydrogen pathways Breakthrough developments in critical technology areas (thermodynamics, catalysis, membranes, metrics and standards, techno-economic analysis, etc.) with cross-cutting importance to all pathways Work packages: Renewable electrolysis Photo-electrochemical water splitting Solar-Thermochemical water splitting Participants (preliminary) : Topic 1: USA (ANL), France (U. Paris), Germany (FZJ-IEK3, Fhg-ISE), Norway (SINTEF), Denmark (DTU), Japan (HGK) Topic 2: The Netherlands (TU Delft), Poland (U. Warsaw), USA (U. Hawaii, Stanford, Oregon, Boston), Switzerland (EMPA, EPFL), Japan (U. Tokyo) Topic 3: Germany (dlr), USA (SRNL, SNL, U. Minnesota, U. Colorado) Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 18

104 Task 36 - Life Cycle Sustainability Assessment of Hydrogen energy systems Co-Operating Agent: Javier Dufour (imdea, Spain) Term: Objectives: Review of life-cycle studies on hydrogen energy Address the issue of direct and indirect land use change in LCA of bio-hydrogen energy systems Compare costs of different hydrogen production pathways, identifying opportunities to improve economic efficiencies and optimal pathways in different national contexts. Develop Life Cycle Costing (LCC) framework for evaluating economic performance of hydrogen systems Provide a robust set of social indicators for Social Life Cycle Assessment (SLCA) of hydrogen systems Integrate sustainability indicators into a common methodological Life Cycle Sustainability Assessment (LCSA) framework for evaluating hydrogen energy systems. Apply the methodological framework to key hydrogen case studies Work packages: Addressing environmental challenges in LCA of hydrogen energy systems Economic analysis of hydrogen energy systems Social indicators for the assessment of hydrogen energy systems and integrative approaches for LCSA Participants: Spain, imdea Germany, FZJ Norway, IFE Japan, AIST Italy, ENEA Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 19

105 Task in preparation Hydrogen solutions for marine vessels Proposed task by NTNU Norway Objectives: Technology overview and evaluation Contribution to the development of new concepts Identification of technological barriers Database on existing projects Power to gas and Applications: Economic model and legal framework analysis Proposed task by CEA France Objectives: Provide a comprehensive understanding of the various techno-economic pathways for Power to Hydrogen and applications according to the local situation Comprehensive assessment of the existing legal framework for selected countries Business model evaluation and analyses the benefits in terms of macro-economic impacts through a systemic approach Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 20

106 HIA statistics: Selected countries and task participation Members/ Total Sponsors # experts OA by Country US US JP/ US/ US/ NO NO SP FR US NL NL JP DE NO US DE CN Germany Japan Norway UK US Total Members/ Task Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 21

107 IEA HIA German experts in Task work Task 28 Large Scale Hydrogen Delivery Infrastructure Oliver Ehret, NOW Task 29 Distributed and Community Hydrogen Task 30 Global Hydrogen Systems Analysis Jochen Linssen, Forschungszentrum Jülich (OA) Task 31 Hydrogen Safety Thomas Jordan, Forschungszentrum Karlsruhe Task 32 H2 Based Energy Storage Michael Hirscher, Max-Planck-Institut Stuttgart (OA) Maximilian Fichtner, Forschungszentrum Karlsruhe, Task 33 Local H2 Supply for Energy Applications Ralph Stauss, Mahler AG Task 34 Biological Hydrogen for Energy and Environment Mathias Rögner, Ruh-Universität Bochum Task 35 Renewable Hydrogen Production Christian Sattler, DLR Köln (OA), invited Juergen Mergel FZJ, Thomas Smolinka, Fhg-ISE Task 36 Life Cyle Sustainability Assessment Petra Zapp, Forschungszentrum Jülich FUTURE Task # Power to Hydrogen and Applications: Systems Analysis of techno-economic and political conditions invited E.On, DBI, etogas Task # Successor to Task 31 - Safety Thomas Jordan, Forschungszentrum Karlsruhe Task # Marine Task N.N. to be updated and completed Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 22

108 ExCo Meetings in conjunction with Hydrogen focused conferences Whec, Zaragoza, planned joint meeting AFC WHTC, Sydney th Whec, Gwangju City th Whec, Toronto => joint meeting with AFC th Whec, Essen => joint meeting with AFC Advanced Fuel Cells Implementing Agreement Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 23

109 Vielen Dank für Ihre Aufmerksamkeit! IEA HIA Vertreter Deutschland Prof. Jürgen-Friedrich Hake IEK-STE, Forschungszentrum Jülich GmbH D Jülich, Germany Tel: / Fax: / Stellvertreter Jochen Linssen IEK-STE, Forschungszentrum Jülich GmbH D Jülich, Germany Tel: / Fax: / Institute of Energy and Climate Research Systems Analysis and Technology Evaluation Slide 24

110 Die Implementing Agreements IEA CCC und IEA GHG der Working Party Fossil Fuels Nationaler IEA - Implementing Agreement Tag Erneuerbare Energien und konventionelle Energiebereitstellung Bonn Dr. H. Höwener (PtJ) / Prof. J.-F. Hake (IEK-STE)

111 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7 IEA Advisory Structure Directorate of Sustainable Energy Policy and Technology Experts' Group on R&D Priority setting and Evaluation Governing Board C E R T Working Party on Fossil Fuels Working Party on Renewable Energy Technologies Working Party on Energy End Use Technologies Fusion Power Co-ordinating Committee Implementing Agreements: 5 Implementing Agreements: 8 Implementing Agreements: 14 Implementing Agreements 3 Intersectoral Implementing Agreements: Public Sector / International Organisations / Private Sector / NGO

112 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7 WPFF Strategic Work Platforms Chair: Jarad Daniels, US / DOE Future Fuels Vice Chair: Hubert Höwener, Germany G8 Follow-up and CCS Implementation Vice Chair: Jostein Dahl Karlsen, Norway Global Outreach Vice Chair: vacancy

113 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7 Fossil Fuel Working Party, IA IEA Clean Coal Centre Greenhouse Gas R&D Programme GOT Gas and Oil Technologies Fluidized Bed Conversion Enhanced Oil Recovery Multiphase Flow Sciences Clean Coal Science

114 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7 IEA IA Clean Coal Centre Cost shared action financed by member countries and industrial sponsors: Operating Agent: IEA Environmental Projects Limited is a wholly owned subsidiary company of International Mining Consultants (Group Holdings) Limited. EPL is the Operating Agent (or administrative arm) for two non-profit making international collaborative projects concerned with fossil fuels (IEA CCC IA and IEA GHG IA). Location: Park House, 14 Northfields London SW18 1DD, United Kingdom

115 Clean Coal Centre Membership (end of 2014) Austria Australia Canada CEC Germany Beijing Research Institute of Coal Chemistry Italy Japan Poland S Africa The foremost centre of excellence for all aspects of clean coal knowledge transfer UK USA Anglo American Thermal Coal Suek Electric Power Planning & Engineering Institute of China Banpu BHEL Coal Association NZ Institute of Energy Research Systems Analysis and Technology Evaluation Slide 6

116 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7 IEA IA Clean Coal Center Provides information on the clean and efficient use of coal worldwide, particularly clean coal technologies Undertakes in depth studies of topics of special interest; Assess technical, economic and environmental performance; Identifies where further RD&D and dissemination needed; and Reports findings for technology transfer worldwide. Products include in-depth topical reports, literature reviews and online databases. Provides advice, facilitates R&D networks and organizes workshops and conferences.

117 Clean Coal Centre Objectives Analysis and information on the efficient, low emissions use of coal with focus on: Near zero emissions including carbon abatement, emissions and effects, pollution control technology, residues. Coal utilisation and analysis including coal properties, fuel handling, power generation technologies, coal conversion technologies, and industrial uses of coal. Economics and markets including supply, transport and markets development, country studies, capital and operating cost reviews of current and new build technologies, including comparisons with non-coal options Institute of Energy Research Systems Analysis and Technology Evaluation Slide 8

118 Clean Coal Centre Products Webinars Periodic Newsletter Technial Reports Conferences and Workshops Workshop on mercury emissions from coal Workshop on upgrading and improving power plant efficiency Workshop on advanced ultra-supercritical power plants development Workshop on co-firing biomass with coal Workshop on coal quality issues and mitigation possibilities International Conference on Clean Coal Technologies Institute of Energy Research Systems Analysis and Technology Evaluation Slide 9

119 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7 IEA IA Greenhouse Gas R&D Cost shared action financed by member countries and industrial sponsors: Operating Agent: IEA Environmental Projects Limited is a wholly owned subsidiary company of International Mining Consultants (Group Holdings) Limited. EPL is the Operating Agent (or administrative arm) for two non-profit making international collaborative projects concerned with fossil fuels (IEA CCC IA and IEA GHG IA). Location: Pure Offices, Cheltenham Office Park Hatherley Lane Cheltenham, GLOS GL51 6SH UK

120 IEA Greenhouse Gas R&D Programme Membership Institute of Energy Research Systems Analysis and Technology Evaluation Slide 11

121 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7

122 IEA Greenhouse Gas R&D Programme Objectives Analysis and evaluation of technologies that can reduce greenhouse gas emissions derived from the use of fossil fuels. Main activities are: Technology evaluation of CCS technologies Support the implementation of potential mitigation options. Dissemination of data and results from evaluation studies. Support international collaborative research, development and demonstration activities (R,D&D) Institute of Energy Research Systems Analysis and Technology Evaluation Slide 13

123 IEA Greenhouse Gas R&D Programme Products In depth studies on new and emerging capture technologies for coal, oil and gas in industrial and power generation applications and future energy systems Organisation of GHGT conference series, conferences and workshops on oxyfuel & post combustion capture CCS project database Review of experience gained from pilot/ demo capture plants Institute of Energy Research Systems Analysis and Technology Evaluation Slide 14

124 IEA Greenhouse Gas R&D Programme Work Analysis and evaluation of different approaches to manage, handle, condition and storage CO 2 Capture at Coal-Based Power and Hydrogen Plants Biomass and CCS CCS in industrial processes Techno-Economic analysis of CCS Storage assessment of geological storage formations Health / Safety and Environmental Issues of CCS Update of current demonstration plants Emerging Capture Technologies Soil Organic Carbon Sequestration Carbon Capture and Use Institute of Energy Research Systems Analysis and Technology Evaluation Slide 15

125 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7

126 Nationaler IEA-IA Tag, EEN + konv. Energieversorgung, Dr. Hubert Höwener, ERG7 Vielen Dank für Ihre Aufmerksamkeit

127 Verfahrensänderung zur Verlängerung von Implementing Agreements (RfE-Process) Nationaler IA-Tag zu den Förderschwerpunkten Erneuerbare Energien und Konventionelle Energiebereitstellung BMWi Bonn, Christoph Jessen, PtJ

128 Gliederung Organisation übergeordneter IEA-Gremien IEA-Umstrukturierungsprozess Auftrag des Governing Boards an das CERT Bisheriges Verfahren zur Verlängerung von IA Vorschläge zur Änderung des RfE-Prozesses Weitere Berichtspflichten Zusammenfassung Christoph Jessen, PtJ Energietechnologien 2

129 Organisation übergeordneter IEA-Gremien Christoph Jessen, PtJ Energietechnologien 3

130 Umstrukturierungsprozess innerhalb der IEA Seit 2012 zuständig für das IA-Management: Int. Partnership and Initiatives Unit (IPI) unter Ltg. von Ingrid Barnsley IPI wurde vom GB mit der Entwicklung eines 4 Primärziele umfassenden IA-Arbeitsplanes beauftragt: (1) Nutzenanalyse der IA für die Mitgliedsländer und IEA SEK (2) Verbesserte Kommunikation über Arbeit u. Wert der IA (3) Die IA als Beteiligungsinstrument profilieren (4) Unterstützung der sekretariatsinternen Koordination der IA Teil des Auftrags war die Effizienzprüfung der IA Christoph Jessen, PtJ Energietechnologien 4

131 Auftrag des Governing Boards an das CERT Erhöhung der Sichtbarkeit/Wahrnehmung von IA Verbesserte Kommunikation und Dissemination der Ergebnisse im energiepolitischen Umfeld; Stärkere strategische Einbindung der IA Verbesserung des RfE-Prozesses Vereinheitlichung der WP-internen prozessualen Abläufe; Stärkerer Einbezug des CERT; Einführung quantitativer Bewertungsindikatoren; Abschaffung/Änderung des Selbstbewertungsverfahrens; Administrativen Aufwand minimieren, Transparenz erhöhen Christoph Jessen, PtJ Energietechnologien 5

132 Bisheriges Verfahren zur Verlängerung von IA (RfE) Das Exekutivkomitee (ExCo) eines IA: a. Stimmt dem Antrag zur Verlängerung des IA für einen Zeitraum von max. 5 Jahren zu (Wahlverfahren) b. Diskutiert die innerhalb der abgelaufenen Mandatsphase erreichten Meilensteine und anstehenden Zielvorgaben (als Basis für EoT und SP) c. Vollzieht den Selbstbewertungsprozess (CERT-Kriterien) d. Einstimmige Befürwortung von EoT, SP und CT Christoph Jessen, PtJ Energietechnologien 6

133 Bisheriges Verfahren zur Verlängerung von IA (RfE) Das Exekutivkomitee (ExCo) eines IA: e. Reicht 2 Monate vor der WP-Sitzung die genannten Dokumente über den ExCo-Chair an den Desk Officer ein f. Trifft Vorbereitungen für den ExCo-Chair zur persönlichen Präsentation des Verlängerungsantrags vor der WP bzw. CERT (vor EoT) Christoph Jessen, PtJ Energietechnologien 7

134 Bisheriges Verfahren zur Verlängerung von IA (RfE) Die für das jeweilige IA zuständige Working Party (WP) : a. Evaluiert und diskutiert den Verlängerungsantrag (basierend auf EoT, SP und CT) b. Trifft eine Entscheidung, ob das IA verlängert werden soll und wenn ja, für welchen Zeitraum ( 5 Jahre) c. Bereitet eine schriftliche Empfehlung als Vorlage für das CERT vor und reicht selbige beim IEA SEK ein Christoph Jessen, PtJ Energietechnologien 8

135 Bisheriges Verfahren zur Verlängerung von IA (RfE) Das Committee on Energy Research&Technology (CERT): a. Überprüft die vom IA an die WP eingereichten Dokumente (Ausnahme: ETSAP IA und CTI IA) b. Erwägt eine Verlängerung des IA über das Schriftliche Verfahren (mögliche Intervention innerhalb von 21 Tagen) Keine Kommentare/Einwände von Seiten der Delegierten: IA- Verlängerung wird gemäß WP-Empfehlung angenommen Intervention: Stimmt mind. 1 Delegierter den Empfehlungen nicht zu, wird die Entscheidung automatisch vertagt Das IEA SEK sendet Mitteilungsschreiben an WP/IA Chair Christoph Jessen, PtJ Energietechnologien 9

136 Bisheriger RfE-Prozess (seit 2010) - Dokumente Guidance (CERT-Prozess) Supporting Documents: CERT Criteria (IA-Self Evalution; 10 Kategorien 38 Fragen) EoT-Report (richtet sich nach CERT-Kriterien; beinhaltet tabellarisch aufgelistete quantitative Informationen) Strategic Plan (richtet sich nach CERT-Kriterien) Working Party Review and Recommendation Umfang insgesamt: bis zu 100 Seiten! Christoph Jessen, PtJ Energietechnologien 10

137 Vorschläge zur Änderung des RfE-Prozesses Erste Diskussionen auf den CERT Sitzungen 66 (Nov. 2013), 67 (Feb. 2014) und 68 (Juni 2014) Gründung einer Arbeitsgruppe Mitte 2014 (CERT/WP Kabinett) Präsentation der Zwischenergebnisse des Konsultationsprozesses im Dez. 2014/Feb Im Juni 2015 wurden schließlich die Änderungsvorschläge der WP (+ US-Vorschlag) zusammengefasst und diskutiert Christoph Jessen, PtJ Energietechnologien 11

138 Vorschläge zur Änderung des RfE-Prozesses Introduction and Guidance: Hintergrund und Einführung; Zuständigkeiten; Leitfaden RfE-Documentation) ca. 8 Seiten RfE-Documentation (vereint die bislang strikt getrennten Dokumente CERT-Criteria, EoT und Strategic Plan): Summary (1 Seite, s. Bsp.): IA-Basisinformationen (vom IA Chair auszufüllen); Bewertungsbogen und Empfehlung (von der zuständigen WP auszufüllen); alle für das CERT relevanten Informationen (Entscheidungsgrundlage) Christoph Jessen, PtJ Energietechnologien 12

139 Christoph Jessen, PtJ Energietechnologien 13

140 Vorschläge zur Änderung des RfE-Prozesses RfE-Documentation (vereint die bislang strikt getrennten Dokumente CERT-Criteria, EoT und Strategic Plan): RfE-Report: EoT-Report und Strategic objectives, die CERT- Kriterien wurden von 10 auf 8 reduziert: Strategy; Scope; Technology RDD&D; Environmental protection; Outcomes, successes and best practice; policy relevance; membership; synthesising and disseminating results Christoph Jessen, PtJ Energietechnologien 14

141 Christoph Jessen, PtJ Energietechnologien 15

142 Vorschläge zur Änderung des RfE-Prozesses RfE-Documentation (vereint die bislang strikt getrennten Dokumente CERT-Criteria, EoT und Strategic Plan): Supplementary Information: vom IA zusätzlich bereitgestellte nicht in den WP-Bewertungsprozess einfließende Informationen bestehend aus Quantitative information/indicators, Key findings/lessons learned und Comments Christoph Jessen, PtJ Energietechnologien 16

143 Christoph Jessen, PtJ Energietechnologien 17

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