Advances in CO2 capture technology—The U.S. Department of Energy's Carbon Sequestration Program
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Acharya, 2005, Development of a high temperature oxygen generation process and its application to oxycombustion power plants with carbon dioxide capture
BP America, 2005. CO2 Capture Project Technical Report DE-FC26-01NT41145. National Energy Technology Laboratory.
Anderson, 2006, Measurement of SO2 solubility in ionic liquids, J. Phys. Chem. B, 110, 15059, 10.1021/jp063547u
Berchtold, 2006, Novel polymeric-metallic composite membranes for CO2 separation at elevated temperatures
Black, S., 2006. Chilled ammonia scrubber for CO2 capture. MIT Carbon Sequestration Forum VII. Cambridge, MA.
Boa, 2006, Facilitated transport of CO2 across a liquid membrane: comparing enzyme, amine, and alkaline, J. Membr. Sci., 280, 330, 10.1016/j.memsci.2006.01.036
Doctor, 2005, Economics for low, mid, and high sulfur coals in PC-boilers using oxy-fuels
Energy Information Administration (EIA), 2006a. Annual Energy Outlook 2006. http://www.eia.doe.gov/oiaf/aeo/.
Energy Information Administration (EIA), 2006b. International Energy Outlook 2006. http://www.eia.doe.gov/oiaf/ieo/index.html.
Energy Information Administration (EIA), 2006c. Emissions of Greenhouse Gases in the United States 2005. DOE/EIA-0573 (2005).
Falk Pederson, 2000, Gas treating using membrane gas/liquid contactors
Figueroa, J.D., 2006. Carbon dioxide capture and sequestration potential and issues in the United States. APPA New Generation Meeting, Washington, DC. http://www.netl.doe.gov/publications/carbon_seq/presentations/APPANewGenerationMeetingFinal.zip.
Gray, 2005, Improved immobilized carbon dioxide capture sorbents, Fuel Process. Technol., 86, 1449, 10.1016/j.fuproc.2005.01.005
Hakka, L., 2007. Cansolv Technologies Inc., private communication.
International Panel on Climate Control (IPCC), 2005. Carbon Dioxide Capture and Storage. Special Report. International Panel on Climate Control (IPCC), February 5, 2007. Climate Change 2007: The Physical Science Basis – Summary for Policy Makers. http://www.ipcc.ch/SPM2feb07.pdf.
Ilconich, J., Myers, C., Pennline, H., Luebke, D., 2007. Experimental Investigation of the Permeability and Selectivity of Supported Ionic Liquid Membranes for CO2/He Separation at Temperatures up to 125°C, J. Membr. Sci., submitted for publication.
Kanel, J.S., 2003. Overview: industrial application of ionic liquids for liquid extraction, presented at Chemical Industry Vision 2020 Technology Partnership Workshop. New York.
Klara, 2003, Integrated collaborative technology development program for CO2 sequestration in geologic formations—United States Department of Energy R&D, Energy Conv. Manage., 44, 2699, 10.1016/S0196-8904(03)00042-6
Li, 2006, Development of fluidizable lithium silicate-based sorbents for high temperature carbon dioxide removal
Li, 2005, High temperature carbon dioxide removal from syngas using lithium silicate-based sorbents
Litynski, 2006, The United States Department of Energy's Regional Carbon Sequestration Partnerships Program: a collaborative approach to carbon management, Environ. Int., 32, 128, 10.1016/j.envint.2005.05.047
Litynski, J.T., Plasynski, S., McIlvried, H.G., Mahoney, C., Srivastava, R.D., 2007. The United States Department of Energy's Regional Carbon Sequestration Partnerships Program: validation phase. Environ. Int., in press.
Lyngfelt, 2004, Development of oxygen carrier particles for chemical looping combustion. Design and operation of a 10kW chemical looping combustor
Maginn, E., 2007. Design and Evaluation of Ionic Liquids as Novel CO2 Absorbents Quarterly Technical Report (10/01/06-12/31/06). DOE Award Number: DE-FG26-04NT42122, National Energy Technology Laboratory.
Midwest Geological Sequestration Consortium (MGSC), 2004. Technical Report DE-FE26-03NT41994, National Energy Technology Laboratory.
Nelson, 2006, Production of concentrated CO2 from flue gas using dry regenerable carbonate sorbents in a thermal-swing process
Nelson, 2006, Carbon dioxide removal from flue gas of coal-fired power plants using dry regenerable sorbents in a thermal-swing process
Nelson, 2005, Dry, regenerable carbonate sorbents for capture of carbon dioxide from flue gas
Nsakala, N., Liljedahl, G.N., 2003. Greenhouse gas emissions control by oxygen firing in circulating fluidized bed boilers: phase 1 – a preliminary systems evaluation. Final Report, U.S. Department of Energy, DE-FC26-01NT41146.
Nsakala, N., Liljedahl, G.N., Turek, D.G., 2004. Greenhouse gas emissions control by oxygen firing in circulating fluidized bed boilers: phase 2 – pilot scale testing and updated performance and economics for oxygen fired CFB with CO2 capture. Final Report, U.S. Department of Energy, DE-FC26-01NT41146.
Resnik, 2006, A parametric scan for regenerative ammonia-based scrubbing for the capture of CO2
Resnik, 2004, Aqua ammonia process for simultaneous removal of CO2, SO2 and NOx, Int. J. Environ. Technol. Manage., 4, 89, 10.1504/IJETM.2004.004634
Rochelle, G., 2006, private communication.
Rochelle, 2006, Solvent and process enhancements for CO2 absorption/stripping
Shah, 2006, CO2 capture by membrane based oxy-fuel boiler
Trachtenberg, 1999, Carbon dioxide transport by proteic and facilitated transport membranes, Life Support Biosph. Sci., 6, 293
Willis, R.R., Benin, A.I., Low, J.J., Bedard, R., Lesch, D., 2006. Annual Report, Project DE-FG26-04NT42121, National Energy Technology Laboratory.
Yang, W.C., Ciferno, J., 2006. Assessment of Carbozyme Enzyme-Based Membrane Technology for CO2 Capture from Flue Gas. DOE/NETL 401/072606.
Yeh, 2005, Semi-batch absorption and regeneration studies for CO2 capture by aqueous ammonia, Fuel Process. Technol., 86, 1533, 10.1016/j.fuproc.2005.01.015
Zhang, 2006, The southwest regional carbon sequestration partnership—development of CO2 capture technology