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Techno-Economic Challenges of Green Ammonia as an Energy Vector presents the fundamentals, techno-economic challenges, applications, and state-of-the-art research in using green ammonia as a route toward the hydrogen economy. This book presents practical implications and case studies of a great variety of methods to recover stored energy from ammonia and use it for power, along with transport and heating applications, including its production, storage, transportation, regulations, public perception, and safety aspects. As a unique reference in this field, this book can be used both as a…mehr

Produktbeschreibung
Techno-Economic Challenges of Green Ammonia as an Energy Vector presents the fundamentals, techno-economic challenges, applications, and state-of-the-art research in using green ammonia as a route toward the hydrogen economy. This book presents practical implications and case studies of a great variety of methods to recover stored energy from ammonia and use it for power, along with transport and heating applications, including its production, storage, transportation, regulations, public perception, and safety aspects. As a unique reference in this field, this book can be used both as a handbook by researchers and a source of background knowledge by graduate students developing technologies in the fields of hydrogen economy, hydrogen energy, and energy storage.
Autorenporträt
Agustin Valera-Medina is a Reader/Associate Professor at Cardiff School of Engineering. He has a bachelor's degree in Mechanical Engineering from UNAM, Mexico, and an MSc and a PhD in the field of Energy from Cardiff University, UK. He has participated as PI/Co-I on 23 industrial projects with multinationals including PEMEX, Rolls-Royce, Siemens, Ricardo, Airbus, and EON, attracting approximately £8.5M. He has published 145 papers (h-index 19), 26 of these specifically concerning ammonia power. He has supervised 22 PhD students, 5 on ammonia-related topics. Dr. Valera-Medina led Cardiff's contribution to the Innovate-UK "Decoupled Green Energy? Project (2015-2018) led by Siemens and in partnership with STFC and the University of Oxford, which aimed to demonstrate the use of green ammonia produced from wind energy. He is currently PI of the project SAFE-AGT (EP/T009314/1, £1.9M) to demonstrate the use of ammonia as an efficient gas turbine fuel. He leads the combustion work package

of the H2020 project FLEXnCONFU (884157), a ?12.7M project conceived to demonstrate ammonia power in large turbine engines. He is also PI and co-I of projects related to ammonia for transportation, propulsion, and heat/cooling. He has been part of various scientific boards, chairing sessions in international conferences and moderating large industrial panels on the topic of "Ammonia for Direct Use.? He supported the preparation of the Royal Society Policy Briefings "Green Ammonia? on the use of ammonia as energy vector.