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The last decade has witnessed major crises in both food and energy security across the world. One response to the challenges of climate change and energy supply has been the development of crops to be used for biofuels. But, as this book shows, this can divert agricultural land from food production to energy crops, thus affecting food security, particularly in less developed countries. The author analyses the extent to which biofuels feedstocks fit within the national food security strategy, agro-export orientation, and rural development plans and policies of developing economies. Two case studies, from Tanzania in East Africa and Borneo in Malaysia, are considered in detail, using the non-edible crop of jatropha as an example of how compromises can be reached to balance food and energy goals as well as export markets. The author develops a novel integrated approach, the Institutional Feasibility Study, as the basis of her analysis. She addresses key issues such as: how do global initiatives for green growth, energy security and sustainable development incorporate biofuels industry development? Does global biofuels trade present meaningful foreign and local investment opportunities for developing countries? To what extent does biofuels feedstock production help with poverty reduction and agricultural sector modernization? What role do the EU and the US commitments to biofuels blending targets play in the rapid industry development in developing countries? How does the biofuels industry fit within existing formal and informal institutional frameworks? Who are the winners and losers in the biofuels global value chain?
As East and Southeast Asia continue to modernize and urbanize, their demand for energy will soar. Besides seeking to import fossil fuels from the Middle East, Africa, the Caspian Region, Russia, Latin America, Australia, etc., it is imperative for these Asian countries to cooperate in substantially raising the efficiency with which energy is consumed. This book offers a comprehensive examination of East and Southeast Asia's energy conservation policies. It begins with a summary of the current and projected energy supply and demand patterns in the region, and a discussion about the need and basis for cooperation in energy conservation. This is followed by an examination of the energy conservation policies and progress to date in seven ASEAN countries and in China, Japan and Korea.
This book examines energy security as one of nontraditional issues that are strategic for Indonesia’s foreign policy. It argues that energy has not been considered as a strategic commodity in the foreign policy to support the effectiveness of Indonesia’s diplomacy at the regional and international levels. International and outward looking perspectives have not been much visible both in the policy and political realities. Since foreign policy is a reflection of domestic politics under the influence of international developments, this study focuses its analysis on the domestic and international aspects of the energy security issues.
Papers originally presented at the second IMEMO-ISEAS ASEAN-Russia Relations Conference held in Moscow, Russia from 3 to 4 October 2006.
Written in clear, concise language and designed for an introductory applied energy course, Applied Energy: An Introduction discusses energy applications in small-medium enterprises, solar energy, hydro and wind energy, nuclear energy, hybrid energy, and energy sustainability issues. Focusing on renewable energy technologies, energy conversion, and conservation and the energy industry, the author lists the key aspects of applied energy and related studies, taking a question-based approach to the material that is useful for both undergraduate students and postgraduates who want a broad overview of energy conversion. The author carefully designed the text to motivate students and give them the foundation they need to place the concepts presented into a real-world context. He begins with an introduction to the basics and the definitions used throughout the book. From there, he covers the energy industry and energy applications; energy sources, supply, and demand; and energy management, policy, plans, and analysis. Building on this, the author elucidates various energy saving technologies and energy storage methods, explores the pros and cons of fossil fuels and alternative energy sources, and examines the various types of applications of alternative energies. The book concludes with chapters on hybrid energy technology, hybrid energy schemes, other energy conversion methods, and applied energy issues. The book takes advantage of practical and application-based learning, presenting the information in various forms such as essential notes followed by practical projects, assignments, and objective and practical questions. In each chapter, a small section introduces some elements of applied energy design and innovation, linking knowledge with applied energy design and practice. The comprehensive coverage gives students the skills not only to master the concepts in the course, but also apply them to future work in this area.
The precipitous fall in oil prices, continued geopolitical instability and the ongoing global climate negotiations are witness to the dynamic nature of energy markets. In a time of so much uncertainty, understanding the implications of the shifting energy landscape for economic and environmental goals and for energy security is vital. The World Energy Outlook 2015 (WEO-2015) will present updated projections for the evolution of the global energy system to 2040, based on the latest data and market developments, as well as detailed insights on the prospects for fossil fuels, renewables, the power sector and energy efficiency and analysis on trends in CO2 emissions and fossil-fuel and renewable energy subsidies.
DOE/EIA-0484(2013). Presents an assessment by the Energy Information Administration of the outlook for internationalenergy markets through 2040. The International Energy Outlook 2013 (IEO2013) projects that world energy consumption will grow by 56 percent between 2010 and 2040. Total world energy use rises from 524 quadrillion British thermal units (Btu) in 2010 to 630 quadrillion Btu in 2020 and to 820 quadrillion Btu in 2040 (Figure 1). Much of the growth in energy consumption occurs in countries outside the Organization for Economic Cooperation and Development (OECD),2 known as non-OECD, where demand is driven by strong, long-term economic growth. Energy use in non-OECD countries increases by 90 percent; in OECD countries, the increase is 17 percent. The IEO2013 Reference case does not incorporate prospective legislation or policies that might affect energy markets.
The global energy scene is in a state of flux. Large-scale shifts include: the rapid deployment and steep declines in the costs of major renewable energy technologies; the growing importance of electricity in energy use across the globe; profound changes in China's economy and energy policy, moving consumption away from coal; and the continued surge in shale gas and tight oil production in the United States. These changes provide the backdrop for the World Energy Outlook-2017, which includes a full update of energy demand and supply projections to 2040 based on different scenarios. The projections are accompanied by detailed analyses of their impact on energy industries and investment, as well as implications for energy security and the environment. The report this year includes a focus on China, which examines how China's choices could reshape the global outlook for all fuels and technologies. A second focus, on natural gas, explores how the rise of shale gas and LNG are changing the global gas market as well as the opportunities and risks for gas in the transition to a cleaner energy system. Finally, the WEO-2017 introduces a major new scenario - the Sustainable Development Scenario - that outlines an integrated approach to achieving internationally agreed objectives on climate change, air quality and universal access to modern energy.