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Technology Collaboration Programme by IEA

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Discover the latest advances carbon capture and storage research

Technical Report

Post Combustion Carbon Capture from Coal Fired Plants – Solvent Scrubbing

  • 1 July 2007
  • Capture

The potential use of solvents for carbon dioxide capture from the flue gas from coal fired power plants is reviewed. After an introduction to solvent absorption of CO₂, the use of alkanolamine solvents, particularly monoethanaloamine (MEA) is considered. The degradation of solvents in the flue gas environment and the consequent corrosion problems associated with the degradation products is then examined. The energy consumption for regeneration of the solvents is a key feature in determining the overall costs of solvent scrubbing. There is considerable research on alternative solvents to MEA which have higher capacity for CO₂ capture and lower energy consumption among other attributes. The design of the absorption contactors which facilitate the contact and interaction of the gas and liquid phases can also contribute to lowering the energy consumption of the overall process. Techno-economic studies, process modelling and simulation are also reviewed. Some details of existing demonstration and pilot plants and current national and international R&D programmes are given. Finally, the potential environmental aspects of the solvent scrubbing processes are briefly examined.

Technical Report

CO₂ Capture Ready Power Plants

  • 1 May 2007
  • Capture

The purpose of this study is to review the technical options that may be available to retrofit a capture technology to the various configurations of power plants that may be built in coming years and to identify (a) necessary and (b) potentially economically attractive options for pre-investment in those plants to make retrofit economically feasible.

Technical Report

Environmental Assessment for CO₂ Capture and Storage

  • 1 March 2007
  • Capture
  • Storage

This report examines the frameworks for Environmental Impact assessment in use around the world and how adequate they will be for application to CCS projects. It also reviews the gaps in the knowledge which will be required to carry out effective assessments and projects future trends in the scope and application of EIA. Requirements for an internationally applicable framework for CCS projects are outlined.

Technical Report

Near Zero Emissions Technology for CO₂ Capture from Power Plant

  • 1 October 2006
  • Capture

The IEA Greenhouse Gas R&D Programme has issued reports assessing the cost of CO₂ capture technologies for power generation using all of the three main types of process, i.e. pre-combustion, post-combustion and oxy-combustion capture. A report has also been issued on the implications if other impurities are co-captured along with the CO₂. In most of the variants of these processes there is an economic or practical limit to the percentage of the CO₂ which can be captured. There has been increasing interest in recent years in the concept of “zero emission power generation” which would in essence be the complete 100% capture of all CO₂ and other emissions of gaseous components, principally the sulphur and nitrogen oxides. A study has thus been proposed, building on the previous work, to explore this concept in more depth. In formulating this study it is considered more appropriate to consider the concept as providing “near zero” emissions to the atmosphere since thermodynamic limitations make complete capture inappropriate for some of the contending processes.

Technical Report

Environmental Impact of Solvent Scrubbing of CO₂

  • 1 October 2006
  • Capture

Environmental impacts due to the capture of CO₂ at power plants occur directly and indirectly. Direct impacts results from the avoidance of CO₂ emission to air and can also occur due to changed emissions of NO2 and SOx as a consequence of CO₂ capture and the emissions of solvent and its degradation products. Indirectly, an increase of environmental impact is caused by the decreased thermal efficiency, which leads to a higher fuel use, the production and transport of solvents and additives and the disposal of solvent and degradation products. The scope of the present study covers both the direct and indirect environmental impact of CO₂ capture but transport and storage of CO₂ are excluded.

Technical Report

International Oxy-Combustion Network for CO₂ Capture: Report on Inaugural Workshop

  • 1 July 2006
  • Capture
  • Event Proceedings

The aim of this Network for Oxy-Fuel Combustion is to provide an international forum for organisations with interest in the development of Oxy-Fuel Combustion Technology.Due to the broadness of this topic, it was decided to focus the theme of the first workshop on the “Oxy-Fuel Combustion for Coal Fired Power Plant”. Nevertheless, the future workshop will also attend to the development in Oxy-Fuel Combustion for Gas Fired Power Plants and other novel oxy-combustion processes.

Technical Report

International Network for CO₂ Capture: Report on 9th Workshop

  • 1 June 2006
  • Capture
  • Event Proceedings

Carbon dioxide capture and storage is now established in OECD countries’ energy policies and R&D programmes as a potential contributor to climate mitigation strategies. Post combustion capture allied to improved efficiency power plant looks likely to be a major element for new plant as markets develop – particularly so in developing countries where there is a clear preference for using the best established technologies for power generation. Retrofit to established plant is also technically feasible although less economically attractive for ageing, less efficient assets. Since the previous workshop a number of generators in Europe and Canada have expressed interest in the possibilities of demonstrating the technology at full scale and a major pilot plant operation under the EU CASTOR programme has commenced at a power station near Esbjerg in Denmark. About a quarter of the workshop participants used the opportunity to visit this new facility on the day previous to the workshop – thanks from all participants to Elsam for hosting this visit.

Technical Report

CO₂ Capture as a Factor in Power Station Investment Decisions

  • 1 May 2006
  • Capture

There is increasing interest in capture and storage of CO₂ from fossil fuel fired power stations, to mitigate climate change. The IEA Greenhouse Gas R&D Programme (IEA GHG) has recently carried out studies to assess the performance and costs of various types of power station incorporating CO₂ capture. IEA GHG has commissioned Mott MacDonald to pull together the results from these studies on a consistent basis and review features of the technologies which may be important for plant investors. The opinions of a range of potential investors were surveyed and the results of the survey were combined with the technology evaluations using a multi-criteria analysis, to show how far each technology matches the surveyed investor preferences.

Technical Report

Estimating the Future Trends in the Cost of CO₂ Capture Technologies

  • 1 February 2006
  • Capture
  • Costs of CCUS

The IEA Greenhouse Gas R&D Programme (IEA GHG) has carried out studies to assess the performance and costs of various plants with CO₂ capture and storage (CCS). These assessments have mostly been based on current technology and component cost data. This approach has the advantage of avoiding subjective judgements of what may or may not happen in the future. The disadvantage is that it does not take into account the potential for future improvements which could affect the long-term competitiveness of a technology.Reductions in the costs of technologies resulting from learning-by-doing and other factors have been systematically observed over many decades. Major factors contributing to cost reductions include, but are not limited to, improvements in technology design, materials, product standardisation, system integration or optimisation, economies of scale and reductions in input prices. This study analyses cost reductions that have been achieved for a range of process technologies and uses that information to predict possible future trends in the costs of power plants with CO₂ capture.

Technical Report

Permitting Issues for CO₂ Capture and Geological Storage

  • 1 December 2005
  • Capture
  • Storage

The capture and storage of CO₂ in geological formations is a promising technology for reducing greenhouse gas emissions. Such projects will involve very large investments in plant, pipelines, wells and reservoir development. As with most large undertakings it will be essential to obtain permits for a whole range of activities which have to be carried out in order to implement such projects. Obtaining permits has been a major constraint on the rapid deployment of many new technologies and can cause considerable delay and effort even when implementing proven systems. To ensure that CO₂ capture and storage can be deployed successfully in the required timescales any issues that may arise during permitting of CO₂ capture and storage projects need to be identified as early as possible and permitting procedures developed and agreed. This study was commissioned to provide an overview of permitting issues in CCS projects and provide some guidance to operators and regulators who are concerned with the technology.

Technical Report

Development of PPAP - Power Plant Assessment Program

  • 1 December 2005
  • Capture

The IEA Greenhouse gas R&D programme has conducted many studies on CO₂ capture from large power stations. Such studies are normally conducted by an experienced contractor and typically cost upwards of £40,000. In order to perform such studies leading to a capital costs estimate within +-30% it is necessary to have a reasonably detailed description of the process and all of the main equipment which is required. In addition the contractor needs to have a reliable database of cost information on the equipment. From time to time novel schemes are put forward but detailed evaluation is inhibited by the high cost of a full study. Furthermore factors other than cost may be important in determining how interesting a novel system is and it may be difficult to predict the cost of exotic equipment. IEAGHG thus developed a simple assessment program in order to be able to carry out a first screening of novel process without incurring large costs. This report summarises the work which has been done on the development of this computer program and the experience with using it on a number of novel schemes.

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