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Transitional Energy Policy 1980-2030: Alternative Nuclear Technologies discusses topics the tackle concerns regarding the use of nuclear technology as an energy source. The book explains issues such as the reservations regarding the use of nuclear, energy resource supply/demand problems, and controversial concepts. The text is comprised of seven chapters; each tackles a different area of concern. Chapter I discusses the trends, logistic curves, economic cycles, and predictions of energy growth, while Chapter II covers the perils of paucity of fossil fuels. Chapter III deals with nuclear energy directions, and Chapters IV and V discuss the strategies used in pursuit of nuclear technology evolution. The sixth chapter tackles institutions and commercialization of nuclear technologies from a historical perspective, while the seventh chapter covers possible patterns. The book will be of great interest to readers concerned with the development of nuclear technology as an energy source.
The United States and China are the world's top two energy consumers and, as of 2010, the two largest economies. Consequently, they have a decisive role to play in the world's clean energy future. Both countries are also motivated by related goals, namely diversified energy portfolios, job creation, energy security, and pollution reduction, making renewable energy development an important strategy with wide-ranging implications. Given the size of their energy markets, any substantial progress the two countries make in advancing use of renewable energy will provide global benefits, in terms of enhanced technological understanding, reduced costs through expanded deployment, and reduced greenhouse gas (GHG) emissions relative to conventional generation from fossil fuels. Within this context, the U.S. National Academies, in collaboration with the Chinese Academy of Sciences (CAS) and Chinese Academy of Engineering (CAE), reviewed renewable energy development and deployment in the two countries, to highlight prospects for collaboration across the research to deployment chain and to suggest strategies which would promote more rapid and economical attainment of renewable energy goals. Main findings and concerning renewable resource assessments, technology development, environmental impacts, market infrastructure, among others, are presented. Specific recommendations have been limited to those judged to be most likely to accelerate the pace of deployment, increase cost-competitiveness, or shape the future market for renewable energy. The recommendations presented here are also pragmatic and achievable.
The globe is warming and while no one knows what will happen as a result, it is clear that slowing the process is a necessary goal. Other studies have considered 'warming fates', this one brings sophisticated computer modeling to bear on ways of minimizing the risks. Fossil carbon emissions, other trace gases and releases from other sources are all taken into account, and the authors demonstrate the global need to produce a budget for cumulative releases between now and the year 2100. They also demonstrate the need to return to a rate of forest carbon storage equal to that of the mid-1980s. These budgets look at issues of international equity and the ways of moving to a binding agreement. The price of failure to control GHG emissions may be uncertain, but it will be more than anyone can afford. Political will lies at the root of successful climate stabilization and major capital and technology transfers to Third World countries will be needed if there is to be any chance of success. This book provides an agenda for advance.A book [which] throws into stark relief the mountain still to be climbed before the world community can agree on a credible programme to tackle global warming. David Thomas, Financial Times Originally published in 1991
The Social Costs of Solar Energy: A Study of Photovoltaic Energy Systems covers issues of implementing a solar energy power source. Comprised of eight chapters, this book tackles several topics that are relevant to the use of solar energy as an alternative power source. The opening chapter is an introduction, which provides a review about solar energy. The succeeding chapters then cover the implications of implementing such technology, including the methodology, occupational risks, public health risks, environmental impacts, economic, and logistics challenges. This book will be of great interest to any readers concerned with the environmental, economic, and social repercussion of using solar energy.
Europe's Nuclear Power Experiment: History of the OECD Dragon Project discusses the achievements of the Project, which is regarded as one of Europe's most successful collaborations in applied science and certainly the most important multinational technical collaboration in the field of nuclear energy. The Project is centered on the construction of a nuclear reactor that is to demonstrate the essential properties of a new system, designed to produce higher temperatures than could be achieved with the first generation of reactors. After a brief introduction to the political collaboration and technical development of the Project, this 28-chapter goes on dealing with the competitive forms of cooperation in nuclear energy and the function of the European Nuclear Energy Agency. The succeeding chapters survey various aspects of nuclear reactor and the Dragon Project Agreement, its long-term role, research and development, industrialization, and supervision by the signatories. Other chapters consider other details and contributions of various member countries in the Project. The concluding chapters discuss the Project's extension program and its achievements. This book is of value to nuclear power scientists and researchers.
This book provides an analysis of the European policy approach to combined heat and power (CHP), a highly efficient technology used by all EU Member States for the needs of generating electricity and heat. European Law on Combined Heat and Power carries out an assessment of the European legal and policy measures on CHP, evaluating how it has changed over the years through progress and decline in specific member states. Over the course of the book, Sokołowski explores all aspects of CHP, examining the types of measures used to steer the growth of cogeneration in the EU and the policies and regulatory tools that have influenced its development. He also assesses the specific role of CHP in the liberalisation of the internal energy market and EU action on climate and sustainability. Finally, by delivering his notions of "cogenatives", "cogenmunities", or "Micro-Collective-Flexible-Smart-High-Efficiency cogeneration", Sokołowski considers how the new EU energy package – "Clean energy for all Europeans" – will shape future developments. This book will be of great interest to students and scholars of energy law and regulation, combined heat and power and energy efficiency, as well as policy makers and energy experts working in the CHP sector.
The world is currently undergoing an historic energy transition, driven by increasingly stringent decarbonisation policies and rapid advances in low-carbon technologies. The large-scale shift to low-carbon energy is disrupting the global energy system, impacting whole economies, and changing the political dynamics within and between countries. This open access book, written by leading energy scholars, examines the economic and geopolitical implications of the global energy transition, from both regional and thematic perspectives. The first part of the book addresses the geopolitical implications in the world’s main energy-producing and energy-consuming regions, while the second presents in-depth case studies on selected issues, ranging from the geopolitics of renewable energy, to the mineral foundations of the global energy transformation, to governance issues in connection with the changing global energy order. Given its scope, the book will appeal to researchers in energy, climate change and international relations, as well as to professionals working in the energy industry.