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Sustainable Technologies for the Energy Transition integrates engineering, economics, policy, and environmental perspectives to provide a comprehensive view of how sustainable energy technologies can be effectively deployed across various sectors. It offers insights into energy storage solutions and decarbonisation strategies needed for transitioning both industrial clusters and smaller-scale systems.
Extending across multiple disciplines, the book encompasses mechanical- and chemical-based renewable energy technologies, energy management tools, and governance frameworks for a circular
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Produktbeschreibung
Sustainable Technologies for the Energy Transition integrates engineering, economics, policy, and environmental perspectives to provide a comprehensive view of how sustainable energy technologies can be effectively deployed across various sectors. It offers insights into energy storage solutions and decarbonisation strategies needed for transitioning both industrial clusters and smaller-scale systems.

Extending across multiple disciplines, the book encompasses mechanical- and chemical-based renewable energy technologies, energy management tools, and governance frameworks for a circular economy. It includes theoretical modelling, case studies, and multicriteria decision-making to emphasise practical solutions tailored to specific regions and industries.

The book will be of interest to energy professionals, researchers, and policymakers working towards achieving a net-zero future.


Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.

Autorenporträt
Dr. Aliyu M. Aliyu is an Associate Professor at the University of Lincoln, UK. He received a PhD from Cranfield University, UK and an MSc from the University of Manchester, UK. He previously worked as a Research Fellow in Flow Diagnostics at the University of Huddersfield, UK and contributed to a Rolls-Royce Ultrafan gas turbine transmissions project at the University of Nottingham, UK. His research focuses on sustainable energy, heat and mass transfer, and fluid mechanics related to both chemical- and mechanical-based energy technologies. Dr. Aliyu has published 90 journal and conference articles as well as completed more than 400 article peer reviews. He also serves as an Associate Editor for Frontiers in Chemical Engineering - Sustainable Process Engineering and is the Lead Author for SDG7 in UNEP's flagship GEO-7 report. Dr. Joseph Xavier Francisco Ribeiro is a distinguished academic who earned his PhD at Yangtze University, China. He is recognised for his contributions to fluid dynamics, waste management, and renewable energy policy with his research published in numerous reputable journals. At Kumasi Technical University in Ghana, his research focuses on modelling, multiphase flow dynamics, renewable energy, frequently integrating machine learning techniques. Dr. Ribeiro has research collaborations in Germany, China, and the United Kingdom working on a wide range of renewable energy topics.