Daneshvar / Anvari-Moghaddam / Sadabadi | Deep Decarbonization of Modern Energy Networks for Climate-Energy-Sustainability Nexus | Buch | 978-1-394-39476-0 | www.sack.de

Buch, Englisch, 469 Seiten

Reihe: IEEE Press Series on Power and Energy Systems

Daneshvar / Anvari-Moghaddam / Sadabadi

Deep Decarbonization of Modern Energy Networks for Climate-Energy-Sustainability Nexus


1. Auflage 2026
ISBN: 978-1-394-39476-0
Verlag: John Wiley & Sons Inc

Buch, Englisch, 469 Seiten

Reihe: IEEE Press Series on Power and Energy Systems

ISBN: 978-1-394-39476-0
Verlag: John Wiley & Sons Inc


Transform energy infrastructure through innovative strategies for achieving carbon-free systems

Deep Decarbonization of Modern Energy Networks for Climate-Energy-Sustainability Nexus offers effective strategies for transitioning energy infrastructure from fossil fuel dependence to sustainable, carbon-free systems. Edited by experts from the University of Tabriz, Aalborg University, and the University of Manchester, this comprehensive resource provides engineers, policymakers, and researchers with practical frameworks for reducing emissions while maintaining robust energy security.

Expert contributions explore cutting-edge decarbonization strategies, from advanced energy storage and carbon removal to AI applications and cyber-physical systems. Readers gain valuable insights into net-zero emission technologies, energy security frameworks, and innovative methods for addressing energy poverty. Real-world case studies demonstrate successful climate-energy-sustainability approaches, while policymaking analysis helps overcome implementation barriers and accelerates the transition to clean energy networks.

The book also offers: - Comprehensive frameworks integrating climate change mitigation, energy systems planning, and sustainable development goals for modern infrastructure
- State-of-the-art technologies including renewable energy integration, hybrid storage systems, and carbon capture solutions for grid modernization
- Artificial intelligence techniques and intelligent cyber-physical systems for optimizing carbon removal and enhancing network efficiency
- Consideration for ensuring equitable transitions while maintaining reliable, cost-effective multi-energy delivery systems

Ideal for electrical power engineers, mechanical engineers, environmental engineers, policymakers, and energy researchers, this pioneering resource delivers actionable solutions for transforming energy networks. By combining technical depth with practical implementation strategies, it equips professionals with essential knowledge for advancing carbon-free energy infrastructure.

Daneshvar / Anvari-Moghaddam / Sadabadi Deep Decarbonization of Modern Energy Networks for Climate-Energy-Sustainability Nexus jetzt bestellen!

Weitere Infos & Material


Chapter 1: Transition Requirements in the Need for Deep Decarbonization of Modern Energy Networks (MENs)

Chapter 2: The important role of demand response in the tight nexus of climate change, energy, and sustainable development

Chapter 3: Impact of deep decarbonization on digitalization and industrialization of modern energy societies

Chapter 4: Emerging trends, paradigms, and technologies for developing CESN in net-zero emission MENs

Chapter 5: Energy security and justice in CESN frameworks for realizing energy poverty and low-carbon societies

Chapter 6: Exploring energy storage pathways for CESN in deep decarbonization of MENs

Chapter 7: Carbon dioxide removal strategies in deep decarbonization of MENs

Chapter 8: Evaluating Technological Innovations for Resilience of Decarbonized Communities with Energy Diversification

Chapter 9: Artificial intelligence techniques for carbon removal of MENs

Chapter 10: Intelligent Cyber-Physical Systems for the CESN in Deep Decarbonization of MENs

Chapter 11: Cybersecure Digital Twin Architectures and Quantum-Enhanced Analytics for Intelligent Cyber-Physical Energy Systems in Deep Decarbonization

Chapter 12: Innovative Carbon Capture Cycles in Zero-Emission Resilient Power Generation for Sustainable Deep Decarbonization of MENs

Chapter 13: Policymaking models for carbon removal of MENs under the CESN framework

Chapter 14: Real-world case studies for CESN in deep decarbonization of MENs


Mohammadreza Daneshvar, PhD, is an Assistant Professor and Head of the Laboratory of Multi-Carrier Energy Networks Modernization in the Faculty of Electrical and Computer Engineering at the University of Tabriz, Iran.

Amjad Anvari-Moghaddam, PhD, is a Full Professor and Research Programme Leader for Intelligent Energy Systems and Flexible Markets in the Department of Energy (AAU Energy) at Aalborg University, Denmark.

Mahdieh S. Sadabadi, PhD, is an Assistant Professor with the Department of Electrical and Electronic Engineering at the University of Manchester, United Kingdom.



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