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itself, but serves as an energy carrier. Energy produced from gas and/or renewable energy sources can be saved and stored in a form of hydrogen and used when needed. The development and implementation
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greenhouse gas emissions. Hydrogen is not an energy source in itself, but serves as an energy carrier. Energy produced from gas and/or renewable energy sources can be saved and stored in a form of hydrogen and
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a key role in fundamental research for the energy transition. We use a multidisciplinary approach applicable on two key areas, solar fuels for the conversion and storage of renewable energy and
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types of PEIS (e.g. incl. electrical/non-electrical energy conversion & storage, renewable generation, FACTS, MMC-HVDC systems, and responsive demand). The research activities will be based on real-time
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using renewable energy implies a transition towards the increased demand of different raw materials as well. How can the supply of sufficient materials for solar panels, batteries, etc. be met to scale
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Do you want to make photovoltaics circular? The current transition towards using renewable energy implies a transition towards the increased demand of different raw materials as well. How can the
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imbalances. The context is integrated energy systems with interconnected networks, each one involving different types of PEIS (e.g. incl. electrical/non-electrical energy conversion & storage, renewable
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grid across Europe. Consequently, new projects face challenges in connecting to the grid, preventing growth of renewable energy production. Additionally, when power demand exceeds transport capacity
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they must resist. Maintaining the cultural heritage and at the same time preparing them for the future is a huge challenge. Renewal and/or replacement measurements while in parallel adopt sustainable and
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imbalances. The context is integrated energy systems with interconnected networks, each one involving different types of PEIS (e.g. incl. electrical/non-electrical energy conversion & storage, renewable