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. Project description Climate change mitigation, energy security concerns and cumulative technical development have led to a renewed interest in nuclear energy. However, established nuclear fission technology
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change mitigation, energy security concerns and cumulative technical development have led to a renewed interest in nuclear energy. However, established nuclear fission technology suffers from long
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storage and cost-efficient freight. The cyclic reduction/oxidation of metal oxide/metal is a promising approach for the storage of intermittent energy from renewable sources and on-demand provision of CO2
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promising approach for the storage of intermittent energy from renewable sources and on-demand provision of CO2-free heat, power and hydrogen. For the oxidation step (energy discharge), the project will
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of biology and medicine, materials science, renewable energy, to chemical engineering processing, material recycling, nuclear chemistry, as well as theory and modeling. The department is committed to teaching
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within chemistry and chemical engineering. The research activities span from fundamental chemistry, chemistry at the interface of biology and medicine, materials science, renewable energy, to chemical
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efficient and flexible utilization of renewable energy. The energy that can be extracted from renewables, however, vary both temporally and spatially. Therefore, it is critical to develop the energy storage
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activities span from fundamental chemistry, chemistry at the interface of biology and medicine, materials science, renewable energy, to chemical engineering processing, material recycling, nuclear chemistry
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Are you motivated to support the development of low-carbon technologies for the chemical industry? Imagine a future where organic chemical reactions are driven with electricity from renewables