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  • 1
    Keywords: energy ; energy economics
    Description / Table of Contents: This paper discusses coal mine methane emissions (CMM) in the Russian Federation and the potential for their productive utilisation. It highlights specific opportunities for cost-effective reductions of CMM from oil and natural gas facilities, coal mines and landfills, with the aim of improving knowledge about effective policy approaches.
    Pages: Online-Ressource (70 Seiten)
    Language: English
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  • 2
    Keywords: energy ; energy economics
    Description / Table of Contents: This joint report by the International Energy Agency (IEA) and the OECD Nuclear Energy Agency (NEA) is the seventh in a series of studies on electricity generating costs. It presents the latest data available for a wide variety of fuels and technologies, including coal and gas (with and without carbon capture), nuclear, hydro, onshore and offshore wind, biomass, solar, wave and tidal as well as combined heat and power (CHP). It provides levelised costs of electricity (LCOE) per MWh for almost 200 plants, based on data covering 21 countries (including four major non-OECD countries), and several industrial companies and organisations. For the first time, the report contains an extensive sensitivity analysis of the impact of variations in key parameters such as discount rates, fuel prices and carbon costs on LCOE. Additional issues affecting power generation choices are also examined. The study shows that the cost competitiveness of electricity generating technologies depends on a number of factors which may vary nationally and regionally. Readers will find full details and analyses, supported by over 130 figures and tables, in this report which is expected to constitute a valuable tool for decision makers and researchers concerned with energy policies and climate change.
    Pages: Online-Ressource (218 Seiten)
    Language: English
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  • 3
    Keywords: energy ; energy economics
    Description / Table of Contents: The goal of sustainable development is to ensure economic growth today without jeopardising economic development, the social well-being and natural environment of future generations. Energy consumption is closely tied to this goal and plays a key role in determining whether is attainable. As oil, gas and coal still heavily dominate world energy supply, fossil fuels – because of their environmental impact – have been challenged to contribute to a cleaner and sustainable energy future. In 2002, the International Energy Agency Coal Industry Advisory Board issued a position paper at the United Nations World Summit on Sustainable Development that recognised the paramount importance of sustainable development and committed to rally its members to provide evidence of progress towards sustainable development. In this compendium of over fifty case studies, the coal industry demonstrates that practical progress is being made in many areas: communities and people; resource stewardship and environmental impacts; management processes and systems; and along the value chain, in co-operation with customers and suppliers. This publication illustrates that many of the commercial objectives of the coal industry – cost effective achievement of environmental standards, technology research and development, technology transfer and collaboration along the value chain – are also issues that governments can approach positively, in consultation with industry, so that coal is able to have a long-term role in sustainable development.
    Pages: Online-Ressource (97 Seiten)
    Language: English
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  • 4
    Keywords: energy ; energy economics
    Description / Table of Contents: This working paper evaluates cost and performance trends related to carbon dioxide (CO2) capture from power generation, based on extensive analysis of data from major engineering studies published between 2006 and 2010. Since individual studies use different methodologies and boundary conditions, study estimates for over 50 CO2 capture installations are re-evaluated on a consistent basis and updated to current cost levels. The paper discusses the need for further standardisation of evaluation methodologies and additional data for specific CO2 capture routes. Further analysis for non-OECD countries is considered crucial for global energy scenario models, and for improving the skills and knowledge developing countries need to evaluate the role of CCS in their national energy contexts.
    Pages: Online-Ressource (51 Seiten)
    Language: English
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  • 5
    Keywords: energy ; energy economics
    Description / Table of Contents: The report, released at the COGEN Europe meeting in Brussels on 21 April 2009, provides “best practice” policy approaches used by different countries to expand CHP and district energy use. The report follows the 2008 IEA CHP study as part of the IEA International CHP Collaborative effort.
    Pages: Online-Ressource (42 Seiten)
    Language: English
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  • 6
    Keywords: energy ; energy economics
    Description / Table of Contents: This study assesses the long-term economic and environmental effects of introducing price caps and price floors in hypothetical climate change mitigation architecture, which aims to reduce global energy-related CO2 emissions by 50% by 2050. Based on abatement costs in IPCC and IEA reports, this quantitative analysis confirms what qualitative analyses have already suggested: introducing price caps could significantly reduce economic uncertainty. This uncertainty stems primarily from unpredictable economic growth and energy prices, and ultimately unabated emission trends. In addition, the development of abatement technologies is uncertain. See also Assessing the value of price caps and floors, November 2009 This study assesses the long-term economic and environmental effects of introducing price caps and price floors in hypothetical climate change mitigation architecture, which aims to reduce global energy-related CO2 emissions by 50% by 2050. Based on abatement costs in IPCC and IEA reports, this quantitative analysis confirms what qualitative analyses have already suggested: introducing price caps could significantly reduce economic uncertainty. This uncertainty stems primarily from unpredictable economic growth and energy prices, and ultimately unabated emission trends. In addition, the development of abatement technologies is uncertain. With price caps, the expected costs could be reduced by about 50% and the uncertainty on economic costs could be one order of magnitude lower. Reducing economic uncertainties may spur the adoption of more ambitious policies by helping to alleviate policy makers’ concerns of economic risks. Meanwhile, price floors would reduce the level of emissions beyond the objective if the abatement costs ended up lower than forecasted. If caps and floors are commensurate with the ambition of the policy pursued and combined with slightly tightened emission objectives, climatic results could be on average similar to those achieved with “straight” objectives (i.e. with no cost-containment mechanism).
    Pages: Online-Ressource (53 Seiten)
    Language: English
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  • 7
    Keywords: energy ; energy economics
    Description / Table of Contents: The transport sector is currently responsible for 23% of energy-related CO2 emissions, and transport associated CO2 emissions will more than double by 2050. This working paper evaluates the potential costs and benefits of using natural gas as a vehicle fuel for road transportation, as well as the policy related to its market development.
    Pages: Online-Ressource (84 Seiten)
    Language: English
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  • 8
    Keywords: energy ; energy economics
    Description / Table of Contents: What impact will the return of high energy prices have on the fragile economic recovery? Will geopolitical unrest, price volatility and policy inaction defer investment in the oil sector and amplify risks to our energy security? What will renewed uncertainty surrounding the role of nuclear power mean for future energy and environmental trends? Is the gap between our climate actions and our climate goals becoming insurmountable? World Energy Outlook 2011 tackles these and other pressing questions. The latest data, policy developments, and the experience of another turbulent year are brought together to provide robust analysis and insight into global energy markets. WEO-2011 once again gives detailed energy demand and supply projections out to 2035, broken down by region, fuel, sector and scenario.
    Pages: Online-Ressource (130 Seiten)
    Language: English
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  • 9
    Keywords: energy ; energy economics
    Description / Table of Contents: The purpose of this report is to first present each of these criticisms in what we hope is an accurate manner. We then respond to each criticism based on actual experience with energy efficiency policies, programmes and measures in OECD countries. From this review, we draw conclusions regarding the merits of each criticism. We also make suggestions as to how energy efficiency proponents, analysts and policy makers could improve the design and analysis of future energy efficiency policies and programmes, based on the issues raised by the critics.
    Pages: Online-Ressource (47 Seiten)
    Language: English
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  • 10
    Keywords: energy ; energy economics
    Description / Table of Contents: When the incandescent lamp was first commercialised the main mode of transport was the horse, trains were powered by steam, balloons were the only means of flight and the telegraph was the state of the art for long-distance communication. Much has changed in the intervening 127 years, but much has also remained the same. In 1879 the incandescent lamp set a new standard in energy-efficient lighting technology, but today good-quality compact fluorescent lamps need only onequarter of the power to provide the same amount of light. Yet most of us continue to rely on the “horse” of the incandescent lamp instead of the “internal combustion engine” of the compact fluorescent lamp. Nor is this the only way in which lighting energy is being wasted. We illuminate rooms when we’re not there, we over-light spaces, we squander available daylight and we underutilise the most efficient street lighting and non-residential building lighting technologies. This might not matter were it not for the severe challenges we face in securing a clean, sustainable and affordable energy system. Electricity generation is the main source of energy-related greenhouse gas emissions and lighting uses one-fifth of its output. Despite having many higher-efficiency and lower-cost alternatives, we continue to use less efficient and more expensive lighting technologies. Is this because we are inherently attached to these older technologies, or is it simply because we stick to what we know when unaware or unsure of the merits of the alternatives? In each of the main lighting end-use sectors (commercial buildings, households, industrial lighting, outdoor lighting and vehicle lighting), this book shows that not only do more cost-effective and higherefficiency alternative choices exist, but that they could be deployed very quickly were the current market barriers to be addressed. Doing this would allow our economies to be stronger and cleaner without sacrificing anything in our quality of life. Moreover, the policies that can bring about this change have been tested and found to work. What is needed is more comprehensive and vigorous implementation in each economy and lighting sector. This book shows us why and how we should do so.
    Pages: Online-Ressource (561 Seiten)
    Language: English
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