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Energy Policy for Peace
Explores how changing the strategic and policy architecture of energy systems can transform the efficacy of energy resources and support peace building
Daniel Kammen (Edited by), Hisashi Yoshikawa (Edited by), Kensuke Yamaguchi (Edited by)
9780128173503, Elsevier Science
Paperback, published 30 August 2023
304 pages, 31 illustrations (1 in full color)
23.5 x 19 x 2 cm, 0.511 kg
Though sustainable development goals and other international initiatives have insisted on the importance of energy access in peace building, there is still little understanding about the extent to which energy systems themselves can contribute to or mitigate structural violence. While there are ample relevant examples globally from a diverse literature and increasing body of case studies, this knowledge has not been systematically organized to show theoretical alternatives to current energy systems or deliver practical policy advice in building such alternatives.
Informed by the contributions of a multidisciplinary global author pool, Energy Policy for Peace provides both a new foundation for researchers and practitioners exploring how energy systems can be changed to build positive peace, and a toolkit for redressing structural violence. The work opens by reviewing how unequal energy access strengthens structural violence. It argues that increasing access to energy access may be an important tool in mitigating structural violence. It concludes with practical policy recommendations and institutional reforms designed to mitigate the structural violence embedded in many energy systems and develop energy strategies for peace building.
PART 1: Energy for Peace 1. History and Background 2. Basic principles and Analytical approaches 3. Specific Methods PART 2: Country Studies 4. Balkans 5. South Sudan 6. North Africa to EU 7. Bangladesh 8. Myanmar 9. Columbia 10. Comparison of Country Studies: Pros and Cons of Approaches PART 3: For Positive Peace 11. Enabling Systems: Micro-grid, Interconnectivity, and Benefit-sharing 12. Limitations and Implications
Subject Areas: Energy technology & engineering [TH], Energy industries & utilities [KNB]