TNO Den Haag, Energie- en materialentransitie
TNO Den Haag, Energie- en materialentransitie
8 Projects, page 1 of 2
assignment_turned_in ProjectFrom 2025Partners:Rijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen, TNO Den Haag, Energie- en materialentransitie, Rijksuniversiteit Groningen, Universiteit van Amsterdam, HAS green academy +10 partnersRijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen,TNO Den Haag, Energie- en materialentransitie,Rijksuniversiteit Groningen,Universiteit van Amsterdam,HAS green academy,Universiteit van Amsterdam, Faculteit der Maatschappij- en Gedragswetenschappen,Technische Universiteit Eindhoven - Eindhoven University of Technology,Rijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen, Centrum voor Omgevings- en Verkeerspsychologie,Universiteit van Amsterdam, Faculteit der Maatschappij- en Gedragswetenschappen, Amsterdam School of Communication Research (ASCoR),THUAS,AUAS,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit - Department of Industrial Engineering & Innovation Sciences,Universiteit van Amsterdam, Faculteit Economie en Bedrijfskunde, Amsterdam Business School,Rijksuniversiteit Groningen, Faculty of Science and Engineering (FSE), ENgineering and TEchnology institute Groningen (ENTEG),Rijksuniversiteit Groningen, Faculty of Science and Engineering (FSE), ENgineering and TEchnology institute Groningen (ENTEG), Discrete Technology & Production Automation (DTPA)Funder: Netherlands Organisation for Scientific Research (NWO) Project Code: NWA.1650.22.001How can climate policy lead to behavioural change? ChangeAble develops new knowledge aimed at accelerating behavioural change, provides insight into which individual, social and contextual factors stimulate sustainable behaviour, and how and when policy can effectively leverage them. ChangeAble also provides insight into how tipping points can be reached by improved policy timing for more widespread and faster sustainable behavioural change. ChangeAble identifies, develops and tests interventions to promote changes in social conventions in five policy areas. In this way, ChangeAble contributes to more effective, efficient, acceptable and just climate policy by making better use of behavioural knowledge in policy.
more_vert assignment_turned_in Project2025 - 2030Partners:Radboud Universiteit Nijmegen, Faculteit der Natuurwetenschappen, Wiskunde en Informatica, Dierecologie en Ecofysiologie, Milieukunde, Rijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen, Sociologie, Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit - Department of Industrial Engineering & Innovation Sciences, Technology, Innovation & Society (TIS), Universiteit Leiden, Faculteit der Wiskunde en Natuurwetenschappen, Citizen Science Lab, Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Werktuigbouwkunde - Department of Mechanical Engineering +21 partnersRadboud Universiteit Nijmegen, Faculteit der Natuurwetenschappen, Wiskunde en Informatica, Dierecologie en Ecofysiologie, Milieukunde,Rijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen, Sociologie,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit - Department of Industrial Engineering & Innovation Sciences, Technology, Innovation & Society (TIS),Universiteit Leiden, Faculteit der Wiskunde en Natuurwetenschappen, Citizen Science Lab,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Werktuigbouwkunde - Department of Mechanical Engineering,Leiden University,Avans University of Applied Sciences,TNO Den Haag, Energie- en materialentransitie,Leiden University, Leiden Institute of Advanced Computer Science,Hanze UAS,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Bouwkunde - Department of the Built Environment, Architectural Urban Design and Engineering (AUDE),Technische Universiteit Eindhoven - Eindhoven University of Technology,TNO Den Haag,Copernicus Institute for Sustainable Development,NWO-institutenorganisatie, CWI - Centrum Wiskunde & Informatica, Intelligent and Autonomous Systems,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Electrical Engineering - Department of Electrical Engineering, Electrical Energy Systems (EES),Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Werktuigbouwkunde - Department of Mechanical Engineering, Energietechnologie (ET),Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Bouwkunde - Department of the Built Environment, Building Physics and Services (BPS),Radboud Universiteit Nijmegen, Faculteit der Managementwetenschappen,HAN,Universiteit Utrecht, Faculteit Geowetenschappen, Department of Sustainable Development, Copernicus Institute of Sustainable Development, Energy and Resources,HU,Universiteit Utrecht, Faculteit Recht, Economie, Bestuur en Organisatie, Utrecht University School of Economics (U.S.E.), Entrepreneurship,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Bouwkunde - Department of the Built Environment, Building and Planning University of Technology,Radboud Universiteit Nijmegen, Faculteit der Managementwetenschappen, Planologie,TNO Den Haag, Strategie, Technologie en BeleidFunder: Netherlands Organisation for Scientific Research (NWO) Project Code: NWA.1630.23.002EmPowerED aims to deliver a theoretically informed and empirically validated scalable and integrated systems co-creation approach for carbon-neutral heating that can be tailored to the specific local PED context. It addresses key knowledge gaps in citizen engagement, governance and technology. Our consortium of 11 knowledge institutes and 38 societal partners includes diverse citizen groups, civil society organizations, municipalities, grid operators, housing associations and technology & service providers, united in a community of practice. EmPowerED’s novel systems-design toolbox to co-create local heat solutions for PEDs will be tested in real-life use cases and experiments to ensure usability and capacity building.
more_vert assignment_turned_in ProjectFrom 2025Partners:Universiteit Twente, Tilburg University, Tilburg Law School, Department of Public Law and Governance (PLG), Technische Universiteit Delft, Universiteit Utrecht, Faculteit Geowetenschappen, Department of Sustainable Development, Copernicus Institute of Sustainable Development, Energy and Resources, Hanze UAS +19 partnersUniversiteit Twente,Tilburg University, Tilburg Law School, Department of Public Law and Governance (PLG),Technische Universiteit Delft,Universiteit Utrecht, Faculteit Geowetenschappen, Department of Sustainable Development, Copernicus Institute of Sustainable Development, Energy and Resources,Hanze UAS,Erasmus Universiteit Rotterdam, Rotterdam School of Management, Technology & Operations Management,Copernicus Institute for Sustainable Development,Erasmus Universiteit Rotterdam,Technische Universiteit Delft, Faculteit Techniek, Bestuur en Management (TBM), Values, Technology and Innovation, Economics of Technology and Innovation,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Electrical Engineering - Department of Electrical Engineering, Electrical Energy Systems (EES),TNO (former ECN),TNO Den Haag,Technische Universiteit Delft, Faculteit Techniek, Bestuur en Management (TBM), Energie en Industrie,Technische Universiteit Delft, Faculteit Elektrotechniek, Wiskunde en Informatica, Software Technology, Algorithmics,Erasmus Universiteit Rotterdam, Erasmus University College,Technische Universiteit Delft, Faculteit Techniek, Bestuur en Management (TBM), Policy, organisation, law and serious gaming (POLG),TNO Den Haag,HAN,Technische Universiteit Eindhoven - Eindhoven University of Technology,TNO (former ECN),Universiteit Utrecht,TNO Den Haag, Energie- en materialentransitie,Universiteit Twente, Faculty of Behavioural, Management and Social sciences (BMS), Bestuur en Beleid,Tilburg UniversityFunder: Netherlands Organisation for Scientific Research (NWO) Project Code: NWA.1646.22.003The organization of the energy sector needs to change in order to match the variability of solar and wind energy with energy demand and to ensure enough energy is always available. A broad consortium of Dutch knowledge institutes addresses the questions of how the Dutch energy market should be organized to support the energy transition and to function after the energy transition. The interdisciplinary team develops solutions together with a large group of stakeholders from, a.o., government, industry, consumers, network companies, energy cooperatives. The balance between market and government, citizens and energy system and between local and global is redesigned.
more_vert assignment_turned_in ProjectFrom 2025Partners:NWO-institutenorganisatie, DIFFER - Dutch Institute for Fundamental Energy Research, Universiteit Utrecht, TNO Den Haag, Energie- en materialentransitie, TNO Den Haag, Universiteit van Amsterdam +9 partnersNWO-institutenorganisatie, DIFFER - Dutch Institute for Fundamental Energy Research,Universiteit Utrecht,TNO Den Haag, Energie- en materialentransitie,TNO Den Haag,Universiteit van Amsterdam,Leiden University,Wageningen University & Research,Universiteit Twente,TNO Den Haag, Industrie en Techniek,Technische Universiteit Eindhoven - Eindhoven University of Technology,Maastricht University,Rijksuniversiteit Groningen,Technische Universiteit Delft,Biogas2H2 BVFunder: Netherlands Organisation for Scientific Research (NWO) Project Code: NGF.1695.1695.012HyPRO significantly reduces cost for green hydrogen or hydrogen made from waste stream through innovation. Unique is that HyPRO brings together the entire value chain, from advanced materials and components, developers of electrolysers, plasma reactors and complete systems. The value chain is completed with companies that will produce the hydrogen. This impressive consortium of 70 partners also includes almost 20 universities, colleges and research institutes. Advanced materials, components and systems are developed, with an emphasis on collaboration across the value chain. A unique opportunity for Dutch companies to gain a position on the global market for sustainable technology.
more_vert assignment_turned_in ProjectFrom 2025Partners:TNO Den Haag, Energie- en materialentransitie, Erasmus Universiteit Rotterdam, Erasmus School of Law, Innovation of Public Law, Rijksuniversiteit Groningen, Maastricht University, NWO-institutenorganisatie +53 partnersTNO Den Haag, Energie- en materialentransitie,Erasmus Universiteit Rotterdam, Erasmus School of Law, Innovation of Public Law,Rijksuniversiteit Groningen,Maastricht University,NWO-institutenorganisatie,Universiteit van Amsterdam,NWO-institutenorganisatie, CWI - Centrum Wiskunde & Informatica, Intelligent and Autonomous Systems,Rijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen,Avans University of Applied Sciences,Rijksuniversiteit Groningen, Faculteit Rechtsgeleerdheid,Universiteit van Amsterdam, Faculteit der Geesteswetenschappen,TNO (former ECN), Fossiele Brandstoffen,Tilburg University,Erasmus Universiteit Rotterdam, Rotterdam School of Management, Technology & Operations Management,Stichting Mergellandcorporatie,Universiteit Utrecht,Tilburg University, Tilburg Sustainability Center, Koopmans Building K 405,Tilburg University,Saxion,Erasmus Universiteit Rotterdam,TNO Den Haag,Radboud Universiteit Nijmegen, Faculteit der Natuurwetenschappen, Wiskunde en Informatica, Radboud Institute for Biological and Environmental Sciences (RIBES), Department of Environmental Science,Hanze UAS,Rijksuniversiteit Groningen,Tilburg University, Universiteitsbureau, Onderwijs & Onderzoek,Erasmus Universiteit Rotterdam, Erasmus School of Law, Rotterdam Institute of Law and Economics (RILE),Universiteit van Amsterdam,Universiteit Utrecht,Technische Universiteit Eindhoven - Eindhoven University of Technology,Battolyser BV,Universiteit Twente, Faculty of Electrical Engineering, Mathematics and Computer Science (EEMCS), Applied Mathematics,Krohne New Technologies,Stichting Mergellandcorporatie,Tilburg University, Tilburg School of Economics and Management (TiSEM), Economie,Universiteit Leiden, Faculteit Governance and Global Affairs, Instituut Bestuurskunde,Wageningen University & Research, Afdeling Maatschappijwetenschappen, Business Management & Organisation Group,Radboud Universiteit Nijmegen,NHL Stenden,HAN,Leiden University,Battolyser BV,Universiteit Twente,Erasmus Universiteit Rotterdam,Krohne New Technologies,TNO (former ECN),Universiteit Leiden, Faculteit der Rechtsgeleerdheid, Instituut voor Fiscale en Economische vakken, Economie,Maastricht University, School of Business and Economics (SBE), Department of Economics (AE1 & AE2),Rijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen, Centrum voor Omgevings- en Verkeerspsychologie,Technische Universiteit Delft,Technische Universiteit Delft,Radboud Universiteit Nijmegen,Wageningen University & Research,Technische Universiteit Eindhoven - Eindhoven University of Technology, Faculteit Werktuigbouwkunde - Department of Mechanical Engineering,Koninklijke Oosterhof Holman,Rijksuniversiteit Groningen, Faculteit Gedrags- en Maatschappijwetenschappen, Interuniversity Center for Social Science Theory & Methodology,Universiteit Twente, Faculty of Behavioural, Management and Social sciences (BMS), Instituut ELAN,Technische Universiteit Delft, Faculteit Techniek, Bestuur en Management (TBM), Values, Technology and Innovation, Economics of Technology and Innovation,Koninklijke Oosterhof HolmanFunder: Netherlands Organisation for Scientific Research (NWO) Project Code: NGF.1627.1.627.013WP7 aims to comprehensively examine socio-economic factors influencing hydrogens role in a sustainable energy system. Well assess how economic, legal, policy, and sociocultural aspects may hinder or facilitate hydrogen implementation, identifying strategies to overcome barriers and enhance scalability. Additionally, well evaluate environmental impacts, proposing measures to mitigate negatives. These insights will elucidate hydrogens potential in future energy and material systems. Moreover, we commit to broad communication and dissemination, sharing findings with GroenvermogenNLs WPs, industry, governments, NGOs, and the public, ensuring widespread understanding and application of our research.
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