Lott, M., Kim, S.-I., Tam, C., Elzinga, D., Heinen, S., Munuera, L., Remme, U., Technology roadmap: energy storage. Int Energy Agency, 2014, 64.
Evans, A., Strezov, V., Evans, T.J., Assessment of utility energy storage options for increased renewable energy penetration. Renew Sustain Energy Rev 16 (2012), 4141–4147.
Wang, G., Mitsos, A., Marquardt, W., Conceptual design of ammonia-based energy storage system: system design and time-invariant performance. AIChE J 63 (2017), 1620–1637.
Díaz-González, F., Sumper, A., Gomis-Bellmunt, O., Villafáfila-Robles, R., A review of energy storage technologies for wind power applications. Renew Sustain Energy Rev 16 (2012), 2154–2171.
Wulf, C., Linßen, J., Zapp, P., Review of power-to-gas projects in Europe. Energy Proc 155 (2018), 367–378.
Kopp, M., Coleman, D., Stiller, C., Scheffer, K., Aichinger, J., Scheppat, B., Energiepark Mainz: technical and economic analysis of the worldwide largest Power-to-Gas plant with PEM electrolysis. Int J Hydrogen Energy 42 (2017), 13311–13320.
Guandalini, G., Robinius, M., Grube, T., Campanari, S., Stolten, D., Long-term power-to-gas potential from wind and solar power: a country analysis for Italy. Int J Hydrogen Energy 42 (2017), 13389–13406.
WaterstofNet to lead European hydrogen truck project H2-Share, Fuel Cells Bulletin 2017; 2017, 3.
Institute for Sustainable Process Technology, Power to Ammonia, Technical Report, ISPT; 2017.
Bossel, U., Eliasson, B., Energy and the Hydrogen Economy. 2009, ABB Switzerland Ltd 1–35.
Fuhrmann, J., Hülsebrock, M., Krewer, U., Energy storage based on electrochemical conversion of ammonia. Transition to Renewable Energy Systems, 2013, Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, Germany, 691–706.
Cheema, I.I., Krewer, U., Operating envelope of Haber-Bosch process design for power-to-ammonia. RSC Adv 8 (2018), 34926–34936.
Morgan, E., Manwell, J., McGowan, J., Wind-powered ammonia fuel production for remote islands: a case study. Renewable Energy 72 (2014), 51–61.
Bañares-Alcántara, R., Dericks, G. III, Fiaschetti, M., Grünewald, P., Masa Lopez, J., Tsang, E., Yang, A., Ye, L., Zhao, S., Analysis of islanded ammonia-based energy storage systems. 2015, University of Oxford, Oxford Technical Report.
Frattini, D., Cinti, G., Bidini, G., Desideri, U., Cioffi, R., Jannelli, E., A system approach in energy evaluation of different renewable energies sources integration in ammonia production plants. Renewable Energy 99 (2016), 472–482.
Valera-Medina, A., Xiao, H., Owen-Jones, M., David, W.I., Bowen, P.J., Ammonia for power. Prog Energy Combust Sci 69 (2018), 63–102.
Reese, M., Marquart, C., Malmali, M., Wagner, K., Buchanan, E., McCormick, A., Cussler, E.L., Performance of a small-scale haber process. Ind Eng Chem Res 55 (2016), 3742–3750.
Wilkinson, I., Siemens green Ammonia, 1st NH3 European event. 2017, Rotterdam, Netherlands.
Aziz, M., Oda, T., Morihara, A., Kashiwagi, T., Combined nitrogen production, ammonia synthesis, and power generation for efficient hydrogen storage. Energy Proc 143 (2017), 674–679.
Lamb, K.E., Dolan, M.D., Kennedy, D.F., Ammonia for hydrogen storage. A review of catalytic ammonia decomposition and hydrogen separation and purification. Int J Hydrogen Energy 44 (2019), 3580–3593.
Sánchez, A., Martín, M., Optimal renewable production of ammonia from water and air. J Cleaner Prod 178 (2018), 325–342.
Sánchez, A., Martín, M., Scale up and scale down issues of renewable ammonia plants: Towards modular design. Sustain Prod Consump 16 (2018), 176–192.
Allman, A., Daoutidis, P., Optimal scheduling for wind-powered ammonia generation: Effects of key design parameters. Chem Eng Res Des 131 (2018), 5–15.
Schulte Beerbühl, S., Fröhling, M., Schultmann, F., Combined scheduling and capacity planning of electricity-based ammonia production to integrate renewable energies. Eur J Oper Res 241 (2015), 851–862.
Palys, M.J., Kuznetsov, A., Tallaksen, J., Reese, M., Daoutidis, P., A novel system for ammonia-based sustainable energy and agriculture: Concept and design optimization. Chem Eng Process – Process Intensif 140 (2019), 11–21.
Matsumoto H, Rahat J, Manaka Y, Ishii M, Nanba T. Analysis of Influence of Operating Pressure on Dynamic Behavior of Ammonia Production over Ruthenium Catalyst under High Pressure Condition; 2018.
Deb, K., Pratap, A., Agarwal, S., Meyarivan, T., A fast and elitist multiobjective genetic algorithm: NSGA-II. IEEE Trans Evol Comput 6 (2002), 182–197.
Abraham, S., Raisee, M., Ghorbaniasl, G., Contino, F., Lacor, C., A robust and efficient stepwise regression method for building sparse polynomial chaos expansions. J Comput Phys 332 (2017), 461–474.
sotaventfogalicia.com, Real time data; 2018. [Online]. Available: https://bit.ly/2Ezo4F6. [accessed: 2 May 2018].
Kaganov, E.I., Yaglom, A.M., Errors in wind-speed measurements by rotation anemometers. Bound -Layer Meteorol 10 (1976), 15–34.
Boccard, N., Capacity factor of wind power realized values vs. estimates. Energy Policy 37 (2009), 2679–2688.
Lackner, M.A., Rogers, A.L., Manwell, J.F., Uncertainty analysis in MCP-based wind resource assessment and energy production estimation. J Sol Energy Eng, 130, 2008, 031006.
Buttler, A., Spliethoff, H., Current status of water electrolysis for energy storage, grid balancing and sector coupling via power-to-gas and power-to-liquids: a review. Renew Sustain Energy Rev, 2017.
Proost, J., State-of-the art CAPEX data for water electrolysers, and their impact on renewable hydrogen price settings. Int J Hydrogen Energy, 2018.
Ulleberg, Ø., Stand-alone power systems for the future: optimal design, operation & control of solar-hydrogen energy systems. 1998, NTNU, Trondheim, Norvège.
Mori, M., Mržljak, T., Drobnič, B., Sekavčnik, M., Integral characteristics of hydrogen production in alkaline electrolysers. Strojniski Vestnik/J Mech Eng 59 (2013), 585–594.
Fastrup, B., Nygård Nielsen, H., On the influence of oxygen on iron catalysts during ammonia synthesis and catalyst characterization. Catal Lett 14 (1992), 233–239.
Morgan ER. Techno-Economic Feasibility Study of Ammonia Plants Powered by Offshore Wind (Ph.D. thesis); 2013.
Jinasena A, Lie B, Glemmestad B. Dynamic Model of an Ammonia Synthesis Reactor based on Open Information. In: Proceedings of The 9th EUROSIM Congress on Modelling and Simulation, EUROSIM 2016, The 57th SIMS Conference on Simulation and Modelling SIMS; 2016, vol. 142, 2018, pp. 998–1004.
Mudahar, M.S., Hignett, T.P., Energy efficiency in nitrogen fertilizer production. Energy Agricul 4 (1985), 159–177.
Tock, L., Maréchal, F., Perrenoud, M., Thermo-environomic evaluation of the ammonia production. Can J Chem Eng 93 (2015), 356–362.
Philibert C. Producing ammonia and fertilizers: new opportunities from renewables; 2017.
Stein, M., Large sample properties of simulations using latin hypercube sampling. Technometrics 29 (1987), 143–151.
Sudret B. Polynomial chaos expansions and stochastic finite-element methods, 2003; 2014.
Coppitters, D., De Paepe, W., Contino, F., Surrogate-assisted robust design optimization and global sensitivity analysis of a directly coupled photovoltaic-electrolyzer system under techno-economic uncertainty. Appl Energy 248 (2019), 310–320.
Tsirikoglou, P., Abraham, S., Contino, F., Bagˇci, Ö., Vierendeels, J., Ghorbaniasl, G., Comparison of metaheuristics algorithms on robust design optimization of a plain-fin-tube heat exchanger. 18th AIAA/ISSMO Multidisciplinary Analysis and Optimization Conference, American Institute of Aeronautics and Astronautics, Reston, Virginia, 2017.
Paepe, W.D., Coppitters, D., Abraham, S., Tsirikoglou, P., Ghorbaniasl, G., Contino, F., Robust operational optimization of a typical micro gas turbine. Energy Procedia 158 (2019), 5795–5803.