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The Future of Hydrogen Chapter 2: Producing hydrogen and hydrogen-based products References Agora Verkehrswende, Agora Energiewende and Frontier Economics (2018), The Future Cost of Electricity- Based Synthetic Fuels, Study, www.agora- energiewende.de/fileadmin2/Projekte/2017/SynKost_2050/Agora_SynKost_Study_EN_WEB.pdf. Albrecht, F. G. et al. (2017), “A standardized methodology for the techno-economic evaluation of alternative fuels – A case study”, Fuel, Vol. 194, pp. 511–26. Ammonia Industry (2018), “ThyssenKrupp’s ‘green hydrogen and renewable ammonia value chain’”, 26 July 2018, https://ammoniaindustry.com/thyssenkrupps-green-hydrogen-and-renewable- ammonia-value-chain/. Asian Renewable Energy Hub (2019), “About the Asian Renewable Energy Hub”, https://asianrehub.com/about/. Bazzanella, A. M. and F. Ausfelder (2017), “Low carbon energy and feedstock for the European chemical industry”, DECHEMA Technology Study, https://dechema.de/dechema_media/Downloads/Positionspapiere/Technology_study_Low_carbo n_energy_and_feedstock_for_the_European_chemical_industry-p-20002750.pdf Bennett, S.J., Schroeder, D.J. and S. T. McCoy (2014), “Towards a framework for discussing and assessing CO2 utilisation in a climate context”, Energy Procedia, Vol. 63, pp. 7976–7992. Buttler, A. and H. Spliethoff (2018), “Current status of water electrolysis for energy storage, grid balancing and sector coupling via power-to-gas and power-to-liquids: a review”, Renewable and Sustainable Energy Reviews, Vol. 82, pp. 2440–54. Caldera, U. et al. (2018), “Role of seawater desalination in the management of an integrated water and 100% renewable energy based power sector in Saudi Arabia”, Water, Vol. 10, DOI: 10.3390/w10010003. Chehade, Z. et al. (2019), “Review and analysis of demonstration projects on Power-to-X pathways in the world”, International Journal of Hydrogen Energy, in press. Dagle, R. et al. (2017), “An overview of natural gas conversion technologies for co-production of hydrogen and value-added solid carbon products”, ANL-17/11; PNNL-26726, US Department of Energy. Ericsson, K. (2017), “Biogenic carbon dioxide as feedstock for production of chemicals and fuels: A techno- economic assessment with a European perspective”, Environmental and Energy System Studies, Lund University. Element Energy (2018), “Hydrogen supply chain evidence base”, prepared for the UK Department for Business, Energy & Industrial Strategy, https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/fil e/760479/H2_supply_chain_evidence_-_publication_version.pdf. Fasihi, M. and C. Breyer (2017), “Synthetic methanol and dimethyl ether production based on hybrid PV- wind power plants”, paper presented at 11th International Renewable Energy Storage Conference, Düsseldorf, 14–16 March. Fasihi, M., O. Efimova and C. Breyer (2019), “Techno-economic assessment of CO2 direct air capture plants”, Journal of Cleaner Production, doi: https://doi.org/10.1016/j.jclepro.2019.03.086. FCH JU (Fuel Cells and Hydrogen Joint Undertaking) (2014), Development of Water Electrolysis in the European Union: Final Report, www.fch.europa.eu/sites/default/files/study%20electrolyser_0- Logos_0_0.pdf. PAGE | 64 IEA. All rights reserved.PDF Image | The Future of Hydrogen 2019
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