[1]
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Obtained from http://www.fe.doe.gov/oil_gas/res_efficiency.shtml
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[2]
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Caneba, G.T. and Dar, Y., 2002, “Free Radical Retrograde Precipitation Copolymers and Process for making Same”, submitted to U.S. Patent and Trademark Office, January.
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[3]
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Caneba, G.T., 1992, “Free-Radical Retrograde-Precipitation Polymerization Process”, U.S. Patent No. 5,173,551, December;
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[4]
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Caneba, G. T., 1992, Adv. Polym. Tech., 11, 277-286;
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[5]
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Aggarwal, A., R. Saxena, B. Wang, and G. T. Caneba, 1996, J. App. Polym. Sci., 62, 2039-2051;
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[6]
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Wang, B., Y. Dar, L. Shi, and G. T. Caneba, 1999, J. App. Polym. Sci., 71, 61-74.
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[7]
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Caneba, G.T., 2002, Proceedings of the American Institute of Chemical Engineers Annual Meeting, Indianapolis, IN, November 3-8.
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[8]
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Borchardt, J.K., Bright, D.B., Dickson, M.K., and Wellington, S.L., 1988, “Surfactants for
Carbon Dioxide Foam Flooding”, in: Surfactant-Based Mobility Control – Progress in
Miscible-Flood Enhanced Oil Recovery, D.H. Smith, Ed., ACS Symposium Series, 373,
Washington, D.C., Chapter 8.
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[9]
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“National Energy Policy: Report of the National Energy Policy Development Group”, U.S. Government Printing Office, Washington, D.C., May, 2001, p. x.
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[10]
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Ibid., Chapter 2.
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[11]
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Obtained from http://news.ft.com
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[12]
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Chu, B. and Z. Zhao, 1996, “Nonionic Surfactants”, Nace Vaugn, Ed., Marcel Dekker, NY,pp. 67-143.
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[13]
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Klins, M.A. and C.P. Bardon, 1991, “Carbon Dioxide Flooding”, in:Basic Concepts in
Enhanced Oil Recovery Processes, M. Baviere, Ed., Elsevier Applid Science, New York.,
pp.215-240.
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[14]
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Obtained from http://fe.doe.gov/oil_gas_res_efficiency/res_progareas.shtml
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