MarchettiC., “On geoengineering and the CO2 problem,”Climatic Change, 1, pp. 59–68 (1977).
2.
GolombD.HerzogH.TesterJ.WhiteD.ZembaS., Feasibility, Modeling and Economics of Sequestering Power Plant CO2 Emissions in the Deep Ocean, MIT-EL 89-003, MIT Energy Laboratory, Cambridge, MA (1989).
3.
HerzogGolombH. D.ZembaS., “Feasibility, modelling and economics of sequestering power plant CO2 emissions in the deep ocean,”Env. Prog., 10(10), pp. 64–74 (1991).
4.
LiroC.R.AdamsE.E.HerzogH.J., Modeling the Release of CO2 in the Deep Ocean, MIT-EL 91-002, MIT Energy Laboratory, Cambridge, MA (1991).
5.
LiroC.R.AdamsE.E.HerzogH.J., “Modelling the release of CO2 in the deep ocean”, Energy Convers, Mgmt, 33(5-8), pp. 667–674 (1992).
6.
HerzogH.DrakeE.TesterJ.RosenthalR., A Research Needs Assessment for the Capture, Utilization, and Disposal of Carbon Dioxide from Fossil Fuel-Fired Power Plants, DOE/ER-30194, U.S. Department of Energy, Washington, DC (1993).
7.
HerzogH.J.DrakeE.M., Long-Term Advanced CO2 Capture Options, IEA/93/0E6, IEA Greenhouse Gas R&D Programme, Cheltenham, U.K. (1993).
8.
BoorasG.S.SmelserS.C., “An engineering and economic evaluation of CO2 removal from fossil-fuel-fired power plants,”Energy, 16(11/12), pp. 1295–1305 (1991).
9.
SudaT.FujiiM.YoshidaK.IijimaM.SetoT.MatsuokaS., “Development of flue gas carbon dioxide recovery technology,”Energy Convers. Mgmt, 33(5-8), pp. 317–324 (1992).
10.
BarchasR.DavisR., “The Kerr-McGee/ABB Lummus Crest technology for the recovery of CO2 from stack gases,”Energy Convers. Mgmt, 33(5-8), pp. 333–340 (1992).
11.
SanderM.T.MarizC.L., “The Fluor Daniel Econamine FG Process: past experience and present day focus,”Energy Convers. Mgmt, 33(5-8), pp. 341–348 (1992).
12.
KumarR.FullerT.KocourekR.TeatsG.YoungJ.MylesK.WolskyA., Tests to Produce and Recover Carbon Dioxide by Burning Coal in Oxygen and Recycling Flue Gas, ANL-CNSV-61, Argonne National Laboratory, Argonne, IL (1987).
13.
SparrowF.T.WolskyA.M.BerryG.F.BrooksC.CobbT.B.LynchE.P.JankowskiD.J.WalbridgeE.W., Carbon Dioxide from Flue Gases for Enhanced Oil Recovery, ANL-CNSV-65, Argonne National Laboratory, Argonne IL (1988).
14.
AbeleA.R.KindtG.S.ClarkW.D.PayneR.ChenS.L., An Experimental Program to Test the Feasibility of Obtaining Normal Performance from Combustors Using Oxygen and Recycled Gas instead of Air, ANL-CNSV-TM-204, Argonne National Laboratory. Argonne, IL (1987).
15.
National Acid Precipitation Assessment Program (NAPAP), Technologies and Other Measures for Controlling Emissions: Performance. Costs and Applicability, Report 25. Government Printing Office, Washington, DC (1990).
16.
HendriksC.BlokK.TurkenburgW.C., “Technology and cost of recovering and storing carbon dioxide from an integrated-gasifier, combined-cycle plant,”Energy, 16(11/12), pp. 1277–1293 (1991).
17.
Intergovernmental Panel on Climate Change (IPCC), Climate Change — The IPCC Scientific Assessment, HoughtonJ.T.JenkinsG.T.EphraumsJ. J., Eds., Cambridge University Press, Cambridge, England (1990).
18.
WilsonT.R.S., “The deep ocean disposal of carbon dioxide,”Energy Convers. Mgmt, 33(5-8), pp. 627–633 (1992).
19.
BaesC.F.Jr.BeallS.E.LeeD.W., “The collection, disposal, and storage of carbon dioxide,”Interactions of Energy and Climate, BachW.PankrathJ., and WilliamsJ., Eds., D. Reidel Publishing Co., pp. 495–519 (1980).
20.
HaugenP.M.DrangeH., “Sequestration of CO2 in the deep ocean by shallow injection,”Nature, 357, pp. 318–320 (1992).
21.
AdamsE.E.GolombD.HerzogH.J.ZhangX.Y., “Confined release of CO2 into the ocean,” presented at ICO-2, Tsukuba, Japan, June 1–2 (1993).
22.
KayaY., “Policy strategies for managing the global environment: A panel discussion.” in Energy and the Environment in the 21st Century, TesterJ.W.WoodD.O., and FerrariN. A., Eds., The MIT Press, Cambridge, MA, pp. 141–142 (1991).
23.
GarrettC.W., “On global climate change, carbon dioxide, and fossil fuel combustion,”Prog, Energy Combust. Sci., 18(5), pp. 369–407 (1992).