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  • 11
    Unknown
    Paris : IEA Publications
    Description / Table of Contents: In 90 minutes, enough sunlight strikes the earth to provide the entire planet's energy needs for one year. While solar energy is abundant, it represents a tiny fraction of the world’s current energy mix. But this is changing rapidly and is being driven by global action to improve energy access and supply security, and to mitigate climate change. Around the world, countries and companies are investing in solar generation capacity on an unprecedented scale, and, as a consequence, costs continue to fall and technologies improve. This publication gives an authoritative view of these technologies and market trends, in both advanced and developing economies, while providing examples of the best and most advanced practices. It also provides a unique guide for policy makers, industry representatives and concerned stakeholders on how best to use, combine and successfully promote the major categories of solar energy: solar heating and cooling, photovoltaic and solar thermal electricity, as well as solar fuels. Finally, in analysing the likely evolution of electricity and energy-consuming sectors – buildings, industry and transport – it explores the leading role solar energy could play in the long-term future of our energy system.
    Pages: Online-Ressource (234 Seiten)
    Language: English
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  • 12
    Unknown
    Paris : IEA Publications
    Description / Table of Contents: The global energy system faces urgent challenges. Concerns about energy security are growing, as highlighted by the recent political turmoil in Northern Africa and the nuclear incident in Fukushima. At the same time, the need to respond to climate change is more critical than ever. Against this background, many governments have increased efforts to promote deployment of renewable energy – low-carbon sources that can strengthen energy security. This has stimulated unprecedented rise in deployment, and renewables are now the fastest growing sector of the energy mix. This “coming of age” of renewable energy also brings challenges. Growth is focused on a few of the available technologies, and rapid deployment is confined to a relatively small number of countries. In more advanced markets, managing support costs and system integration of large shares of renewable energy in a time of economic weakness and budget austerity has sparked vigorous political debate. The IEA’s new report, Deploying Renewables 2011: Best and Future Policy Practice: - Provides a comprehensive review and analysis of renewable energy policy and market trends; - Analyses in detail the dynamics of deployment and provides best-practice policy principles for different stages of market maturity; - Assesses the impact and cost-effectiveness of support policies using new methodological tools and indicators; - Investigates the strategic reasons underpinning the pursuit of RE deployment by different countries and the prospects for globalisation of RE. This new book builds on and extends a 2008 IEA publication, drawing on recent policy and deployment experience world-wide. It provides guidance for policy makers and other stakeholders to avoid past mistakes, overcome new challenges and reap the benefits of deploying renewables – today and tomorrow.
    Pages: Online-Ressource (186 Seiten)
    Language: English
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  • 13
    Description / Table of Contents: This report examines inaccuracies in some commonly held views of China’s National Oil Companies (NOCs). Until now, there has been little analysis to test the widely held presumption that these companies act under the instructions and in close co-ordination with the Chinese government. Nor have critics been challenged on the validity of their concerns about investments made by these NOCs, and how they could be blocking supplies of oil for other importing countries. The IEA analysis, however, finds that contrary to these views, the NOCs actually operate with a high degree of independence from the Chinese government, and their investments have in fact largely boosted global supplies of oil and gas, which other importers rely on.
    Pages: Online-Ressource (52 Seiten)
    Language: English
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  • 14
    Unknown
    Paris : IEA Publications
    Description / Table of Contents: This report focuses mainly on developments to improve the performance of coal-based power generation technologies, which should be a priority – particularly if carbon capture and storage takes longer to become established than currently projected. A close look is taken of the major ongoing developments in process technology, plant equipment, instrumentation and control. Coal is an important source of energy for the world, particularly for power generation. To meet the growth in demand for energy over the past decade, the contribution from coal has exceeded that of any other energy source. Additionally, coal has contributed almost half of total growth in electricity over the past decade. As a result, CO2 emissions from coal-fired power generation have increased markedly and continue to rise. More than 70% of CO2 emissions that arise from power generation are attributed to coal. To play its role in a sustainable energy future, its environmental footprint must be reduced; using coal more efficiently is an important first step. Beyond efficiency improvement, carbon capture and storage (CCS) must be deployed to make deep cuts in CO2 emissions. This report focuses mainly on developments to improve the performance of coal-based power generation technologies, which should be a priority – particularly if carbon capture and storage takes longer to become established than currently projected. A close look is taken of the major ongoing developments in process technology, plant equipment, instrumentation and control. The need for energy and the economics of producing and supplying it to the end-user are central considerations in power plant construction and operation. Economic and regulatory conditions must be made consistent with the ambition to achieve higher efficiencies and lower emissions. In essence, clean coal technologies must be more widely deployed.
    Pages: Online-Ressource (56 Seiten)
    Language: English
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  • 15
    Description / Table of Contents: This paper is the first global analysis of energy consumption and energy efficiency potential of EMDS (electric motor- driven system). The electric motors and systems they drive are the largest single electricity end use accounting for more than 40% of global electricity consumption. Huge energy efficiency potential was found untapped in EMDS - around 25 % of EMDS electricity use could be saved cost-effectively, reducing total global electricity demand by about 10%. However, the energy efficiency of EMDS has been relatively neglected in comparison with other sustainable energy opportunities. It is crucial to scale up the operations and resources committed to realizing the vast savings potential of optimized EMDS. This paper proposes a comprehensive package of policy recommendations to help governments realize the potential for energy savings in EMDS.
    Pages: Online-Ressource (132 Seiten)
    Language: English
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  • 16
    Description / Table of Contents: Buildings account for almost a third of final energy consumption globally and are an equally important source of CO2 emissions. Currently, both space heating and cooling, as well as hot water are estimated to account for roughly half of global energy consumption in buildings. Energy-efficient and low/zero-carbon heating and cooling technologies for buildings have the potential to reduce CO2 emissions by up to 2 gigatonnes (Gt) and save 710 million tonnes oil equivalent (Mtoe) of energy by 2050. Most of these technologies – which include solar thermal, combined heat and power (CHP), heat pumps and thermal energy storage – are commercially available today. The Energy-Efficient Buildings: Heating and Cooling Equipment Roadmap sets out a detailed pathway for the evolution and deployment of the key underlying technologies. It finds that urgent action is required if the building stock of the future is to consume less energy and result in lower CO2 emissions. The roadmap concludes with a set of near-term actions that stakeholders will need to take to achieve the roadmap’s vision. Buildings account for almost a third of final energy consumption globally and are an equally important source of CO2 emissions. Currently, both space heating and cooling as well as hot water are estimated to account for roughly half of global energy consumption in buildings. Energy-efficient and low/zero-carbon heating and cooling technologies for buildings have the potential to reduce CO2 emissions by up to 2 gigatonnes (Gt) and save 710 million tonnes oil equivalent (Mtoe) of energy by 2050. Most of these technologies – which include solar thermal, combined heat and power (CHP), heat pumps and thermal energy storage – are commercially available today.
    Pages: Online-Ressource (56 Seiten)
    Language: English
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  • 17
    Unknown
    Paris : IEA Publications
    Description / Table of Contents: On the occasion of its 35th Anniversary in 2009, the International Energy Agency published the first edition of the IEA Scoreboard focusing on 35 Key Energy Trends over 35 Years. In parallel, the IEA published Implementing Energy Efficiency Policies: Are IEA Member Countries on Track? Both publications found that although IEA member countries were making progress in implementing energy efficiency, more work is needed. In the 2011 edition of the Scoreboard, the IEA has decided to focus on energy efficiency. The publication combines analysis of energy efficiency policy implementation and recent indicator development. The resulting IEA Scoreboard 2011 provides a fuller picture of the progress as well as the challenges with implementing energy efficiency policy in IEA member countries.
    Pages: Online-Ressource (78 Seiten)
    Language: English
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  • 18
    Description / Table of Contents: • The transition to a low carbon economy clearly requires accelerating energy innovation and technology adoption. Governments have an important role in this context. They can help by establishing the enabling environment in which innovation can thrive, and within which effective and efficient policies can be identified, with the specific goal of advancing research, development, demonstration and, ultimately, deployment (RDD&D) of clean energy technologies. • At the front end of the innovation process, significant increases in, and restructuring of, global RD&D efforts will be required, combined with well-targeted government RD&D policies. The development of a clear policy framework for energy technology RD&D, based on good practices, should include six elements: • Coherent energy RD&D strategy and priorities • Adequate government RD&D funding and policy support • Co-ordinated energy RD&D governance • Strong collaborative approach, engaging industry through public private partnerships (PPPs) • Effective RD&D monitoring and evaluation • Strategic international collaboration • While countries have been favouring certain technologies over others, based on decisions on which areas are to receive funding, clear priorities are not always determined through structured analysis and documented processes. A review of stated energy RD&D priorities, based on announced technology programmes and strategies, and recent spending trends reveals some important deviations from stated priorities and actual RD&D funding.
    Pages: Online-Ressource (68 Seiten)
    Language: English
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  • 19
    Keywords: renewable energy
    Description / Table of Contents: This information paper accompanies the IEA publication Deploying Renewables 2011: Best and Future Policy Practice (IEA, 2011a). It provides more detailed data and analysis on policies for Deploying Renewables and is intended to complement the main publication. It provides an in-depth account of the regional markets and policy trends in all six focus regions; 56 countries in total. Each region is discussed with regards to: recent market developments in the electricity, heat and transport sector policy developments IEA projections an analysis of the mid-term (2030) potential of renewable energy technologies in these regions, and an analysis of the strategic drivers underpinning the deployment of RE in each region
    Pages: Online-Ressource (122 Seiten)
    Language: English
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  • 20
    Unknown
    Paris : IEA Publications
    Description / Table of Contents: The production of transport fuels from biomass, in either liquid or gaseous form, holds the promise of a low net fossil-energy requirement and low life-cycle greenhouse gas (GHG) emissions. However, there are many hurdles to the expansion of biofuels production, including competition for agricultural commodities and land, and impacts on water resources and biodiversity. The successful development of advanced biofuels technologies, using non-food biomass feedstocks, could help overcome most barriers and achieve sustainable, very low CO2, cost-effective biofuels. The IEA “Biofuels for Transport” roadmap describes the steps necessary to achieve the ambitious biofuel projections presented in the Energy Technology Perspectives 2010 Blue Map scenario. Under this scenario, biofuel demand increases rapidly, reaching approximately 760 Mtoe (32 EJ) in 2050, a share of 27% of total transport fuel. This roadmap identifies major barriers, opportunities, and policy measures for policy makers, industry and financial partners to accelerate RDD&D efforts for sustainable biofuel technologies and ensure sustainable feedstock provision on both a national and international scale.
    Pages: Online-Ressource (56 Seiten)
    Language: English
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