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  • energy  (122)
  • Clean energy technologies  (2)
  • wind power  (1)
  • 1
    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. 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). This papers reviews current proposals in the UNFCCC negotiations for future mechanisms to report and record Parties’ GHG mitigation actions and commitments, as well as support provided for such actions. It explores the possible purposes, coverage and form of a reporting/recording mechanism post-2012 and highlights the decision points that are needed in order to establish such a mechanism. It examines what information such a mechanism could include in terms of actions, commitments and support, as well as the institutional implications of different design options.
    Pages: Online-Ressource (45 Seiten)
    Language: English
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  • 2
    Keywords: energy ; energy economics
    Description / Table of Contents: Coal Mine Methane in China
    Pages: Online-Ressource (1 Seiten)
    Language: English
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  • 3
    Keywords: energy ; energy economics
    Description / Table of Contents: This report explores the effects of the EU emissions trading scheme on the aluminium sector (i.e. competitiveness loss and carbon leakage). With its very high electricity intensity, primary aluminium stands out in the heavy industry picture: a sector whose emissions are not capped in the present EU ETS, European aluminium smelters still stand to lose profit margins and, possibly, market shares, as electricity prices increase following CO2 caps on generators’ emissions - the famous pass-through of CO2 prices into electricity prices. The analysis includes a method of quantification of this issue, based on two indicators: profit margins and trade flows. As the EU is at the forefront of such policy, the paper provides policy messages to all countries on how trade exposed energy-intensive industries can be ‘moved’ by carbon constraint. This also is a contentious topic in Australia, Japan, New Zealand, and the US, where ambitious climate policies – including cap-and-trade systems – are currently debated.
    Pages: Online-Ressource (45 Seiten)
    Language: English
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  • 4
    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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  • 5
    Keywords: energy ; energy economics
    Description / Table of Contents: Due to the growth of international attention on the problem of climate change combined with the attractiveness of methane mitigation technologies, the capture and use of methane in agriculture, coal mines, landfills, and the oil and gas sector has increasingly become popular over the past few years. Highlighting this, several countries hosted the international “Methane to Market” Partnership Conference and Exposition in October 2007 in Beijing, China.
    Pages: Online-Ressource (4 Seiten)
    Language: English
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  • 6
    Keywords: energy ; energy economics
    Description / Table of Contents: Addressing climate change requires nothing short of an energy revolution. Electricity, mostly generated from fossil fuels, is at the core of this challenge, accounting for more than 40 % of global energy-related CO2 emissions. This issue is most pressing for developing countries where growth in power demand is particularly high, fueling the risk of irreversible investment in CO2-intensive capacity, the so-called “carbon lock-in”. Addressing climate change requires nothing short of an energy revolution. Electricity, mostly generated from fossil fuels, is at the core of this challenge, accounting for more than 40 % of global energy-related CO2 emissions. This issue is most pressing for developing countries where growth in power demand is particularly high, fueling the risk of irreversible investment in CO2-intensive capacity, the so-called “carbon lock-in”. Sectoral Approaches in Electricity – Building Bridges to a Safe Climate shows how the international climate policy framework could effectively support a transition towards low-CO2 electricity systems in developing countries. Sectoral approaches are intended to address sectors that require urgent actions, without waiting for countries to take nation-wide commitments. Once built, power generation capacity lasts for decades. Investing massively in CO2-intensive technologies to meet surging electricity demand will either make it impossible or overly costly to stabilise CO2 concentrations at sustainable levels. The technology mix needed to avoid such a development is clear: higher generation efficiency, CO2 capture and storage, nuclear and renewables. Earlier IEA publications have extensively reviewed developed countries’ efforts to steer generation away from carbon-intensive production modes, from dedicated support to low-carbon technologies to, increasingly, the reliance on CO2 pricing via emissions trading. Following the same logic, there are proposals seeking to use the international carbon market to drive changes at sectoral level in developing countries. This publication illustrates the pros and cons of such an approach in a few key emerging economies. It also asks how international climate policy could support and enhance ongoing efforts on end-use energy efficiency - an essential piece of the climate change/electricity puzzle.
    Pages: Online-Ressource (186 Seiten)
    Language: English
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  • 7
    Keywords: energy ; energy economics
    Description / Table of Contents: This paper explores sectoral approaches as a new set of options to enhance the effectiveness of greenhouse gas reduction policies and to engage emerging economies on a lower emission path. It surveys existing literature and recent policy trends in international climate change discussions, and provides an overview of sectoral approaches and related issues for trade-exposed, greenhouse-gas intensive industries (cement, iron and steel and aluminium). It is also based on interviews conducted by the IEA Secretariat in Australia, China, Europe, Japan, and the United States. Sectoral approaches were also discussed during workshops on technology and energy efficiency policies in industry, following the IEA’s mandate under the Gleneagles Plan of Action.
    Pages: Online-Ressource (77 Seiten)
    Language: English
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  • 8
    Keywords: energy ; energy economics
    Description / Table of Contents: This paper examines what “sustainable development policies and measures” (SD-PAMs) could be, and how they could be implemented and could fit into a post-2012 climate regime. This paper assumes that the option to implement SD-PAMs instead of quantified GHG emission commitments post-2012 is an option that would be likely to be only open to non-Annex I countries. There are several key, but unanswered, questions related to SD-PAMs. These include policy-related issues such as which countries could take on commitments to implement SD-PAMs (rather than quantified emission commitments)? Why would particular countries decide to take on such commitments? They also include questions related to how SD-PAMs could be implemented. For many other options for possible post-2012 GHG mitigation actions, including by non-Annex I countries, have also been proposed. However, this paper focuses solely on SD-PAMs.
    Pages: Online-Ressource (36 Seiten)
    Language: English
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  • 9
    Keywords: energy ; energy economics
    Description / Table of Contents: This paper assesses the policy questions as highlighted in the relevant COP/MOP 2 decision, particularly leaks (or seepage) and permanence for geological storage, project boundaries and liability issues, and leakage, as well as a few others raised by some Parties. Since any emissions or leaks during the separation, capture and transport phases would occur during the crediting period of the project (and would therefore be accounted for as project emissions), the paper focuses its analyses for leaks and liability on storage, as it is in this part of the CCS process that long-term leaks could occur.
    Pages: Online-Ressource (31 Seiten)
    Language: English
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  • 10
    Keywords: energy ; energy economics
    Description / Table of Contents: Today’s investment decisions in key sectors such as energy, forestry or transport have significant impacts on the levels of greenhouse gas (GHG) emissions over the coming decades. Given the economic and environmental long-term implications of capital investment and retirement, a climate mitigation regime should aim to encourage capital investment in climate-friendly technologies. Many factors affect technology choice and the timing of investment, including investor expectations about future prices and policies. Recent international discussions have focused on the importance of providing more certainty about future climate policy stringency. The design of commitment periods can play a role in creating this environment. This paper assesses how the length of commitment periods influences policy uncertainty and investment decisions. In particular, the paper analyses the relationship between commitment period length and near term investment decisions in climate friendly technology.
    Pages: Online-Ressource (29 Seiten)
    Language: English
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