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A solid oxide fuel cell operating on liquid organic hydrogen carrier-based hydrogen A kinetic model of the hydrogen release unit and system performance Peters R, Deja R, Fang QP, Nguyen VN, Preuster P, Blum L, Wasserscheid P, Stolten D International Journal of Hydrogen Energy, 44(26), 13794, 2019 |
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Will gas be gone in the United Kingdom (UK) by 2050? An impact assessment of urban heat decarbonisation and low emission vehicle uptake on future UK energy system scenarios Hobley A Renewable Energy, 142, 695, 2019 |
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Solid oxide fuel cell operating on liquid organic hydrogen carrier-based hydrogen - making full use of heat integration potentials Preuster P, Fang QP, Peters R, Deja R, Nguyen VN, Blum L, Stolten D, Wasserscheid P International Journal of Hydrogen Energy, 43(3), 1758, 2018 |
4 |
Application of multiphase reaction engineering and process intensification to the challenges of sustainable future energy and chemicals Powell JB Chemical Engineering Science, 157, 15, 2017 |
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Displacing natural gas with electric vehicles for grid stabilization Nunes P, Brito MC Energy, 141, 87, 2017 |
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Integration of hydrogen energy systems into renewable energy systems for better design of 100% renewable energy communities Uyar TS, Besikci D International Journal of Hydrogen Energy, 42(4), 2453, 2017 |
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Life cycle assessment of future electric and hybrid vehicles: A cradle-to-grave systems engineering approach Tagliaferri C, Evangelisti S, Acconcia F, Domenech T, Ekins P, Barletta D, Lettieri P Chemical Engineering Research & Design, 112, 298, 2016 |
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The impact of future scenarios on building refurbishment strategies towards plus energy buildings Passer A, Ouellet-Plamondon C, Kenneally P, John V, Habert G Energy and Buildings, 124, 153, 2016 |
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Cooling the buildings - past, present and future Santamouris M Energy and Buildings, 128, 617, 2016 |
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The Role of Biomass in a Future World without Fossil Fuels Henrich E, Dahmen N, Dinjus E, Sauer J Chemie Ingenieur Technik, 87(12), 1667, 2015 |