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Unconventional Energy Resources

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Unconventional Energy Resources ( unconventional-energy-resources )

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Unconventional Energy Resources: 2013 Review Larter, & J. R. Suter (Eds.), Heavy-oil and oil-sand petroleum systems in Alberta and beyond, vol 64 (pp. 481–508). AAPG Studies in Geology. Humphries, M., & Sherlock, M. F. (2013). U.S. and world coal production, federal taxes, and incentives: Congressional Re- search Service, Report for Congress. Retrieved June 5, 2013, from http://www.fas.org/sgp/crs/misc/R43011.pdf. I2M Associates, LLC. (2013). I2M Associates Interactive Web Resources Portal. Retrieved June 24, 2013, from http:// web.i2massociates.com/categories/about-this-portal.asp. IAEA. (2005). Chernobyl: true scale of the accident. Retrieved June 29, 2013, from http://www.iaea.org/newscenter/multi media/videos/cnnchernobylreport/index.html. International Energy Agency. (2013). Redrawing the energy-cli- mate map. World Energy Outlook Special Report, Interna- tional Energy Agency, p. 126. Retrieved July 22, 2013, from http://www.iea.org/publications/freepublications/publication/ WEO_RedrawingEnergyClimateMap.pdf. IOCC (Interstate Oil Compact Commission). (1983). Major tar sand and heavy oil deposits of the United States: Interstate Oil Compact Commission, pp. 85–116. Jenkins, C. (2010). Tight Gas Sands Committee Report, EMD Annual Meeting, April 2010, posted on EMD Website, Members-Only/Tight Gas Sands. Jenkins, C. D. (2011). Tight gas sands, in American Association of Petroleum Geologists (Energy Minerals Division), Uncon- ventional Energy Resources: 2011 Review. Natural Resources Research, 20(4), 286–288. Jogalekar A. (2013). Nuclear power may have saved 1.8 million lives otherwise lost to fossil fuels, may save up to 7 million more. Scientific American.com. Retrieved June 24, 2013, from http://blogs.scientificamerican.com/the-curious-wavefunct ion/2013/04/02/nuclear-power-may-have-saved-1-8-million-lives- otherwise-lost-to-fossil-fuels-may-save-up-to-7-million-more/. Johnson, J. (2013). Nuclear retirement anxiety—as nuclear power plants age, concerns grow over financing, complexity, and safety of decommissioning. Chemical & Engineering News, 91(13), 14–17. Retrieved June 24, 2013, from http://cen. acs.org/articles/91/i13/Nuclear-Retirement-Anxiety.html. Karl, B. (2013). Geothermal technology powering projects in Alaska and China. Southern Methodist University (SMU) Geothermal Laboratory, Geothermal Energy and Waste Heat to Power–Utilizing Oil and Gas Plays, Conference Summary, Agenda, Presenters. Retrieved July 15, 2013, from http://smu.edu/geothermal/Oil&Gas/2013/ 2013_Speakers_Agenda.htm. Keller, G. R. (2013). Integrated studies of thermal regimes and geothermal potential in Oklahoma. Southern Methodist University (SMU) Geothermal Laboratory, Geothermal Energy and Waste Heat to Power-Utilizing Oil and Gas Plays, Conference Summary, Agenda, Presenters. Retrieved July 15, 2013, from http://smu.edu/geothermal/Oil&Gas/ 2013/2013_Speakers_Agenda.htm. Kerlin, K. (2013). New rotary expander for high pressure natural gas. Southern Methodist University (SMU) Geothermal Laboratory, Geothermal Energy and Waste Heat to Power– Utilizing Oil and Gas Plays, Conference Summary, Agenda, Presenters. Retrieved July 15, 2013, from http://smu.edu/ geothermal/Oil&Gas/2013/2013_Speakers_Agenda.htm. Kharecha, P. A., & Hansen, J. E. (2013). Prevented mortality and greenhouse gas emissions from historical and projected nu- clear power. Environmental Science and Technology, 47, 4889–4895. Retrieved June 27, 2013, from http://pubs.acs.org/ doi/ipdf/10.1021/es3051197. King, G. E. (2012). Hydraulic fracturing 101: What every repre- sentative, environmentalist, regulator, reporter, investor, university researcher, neighbor and engineer should know about estimating frac risk and improving frac performance in unconventional gas and oil wells. In Proceedings SPE Hydraulic Fracturing Technology Conference. The Woodlands, TX, USA, 6–8 February, 2012, SPE Paper 152596, p. 80. Koottungal, L. (2012) 2012 worldwide EOR survey. Oil and Gas Journal, 2, 2012. Kuuskraa, V. A., Hammershaimb, E. C., Paque, M. (1987). Major tar sand and heavy-oil deposits of the United States. In R. F. Meyer (Ed.), Exploration for heavy crude oil and natural Bitumen, vol 25 (pp. 123–135). AAPG Studies in Geology. Larter, S. R., Adams, J. J., Gates, I. D., Bennett, B., & Huang, H. (2008). The origin, prediction and impact of oil viscosity heterogeneity on the production characteristics of tar sand and heavy oil reservoirs. Journal of Canadian Petroleum Technology, 47, 52–61. Lentsch, D., Savvatis, A., Schubert, A., & Schoebel, W. (2012). Overcoming drilling challenges with rotary steerable technol- ogy in deep geothermal wells in the Molasse Basin of Southern Germany. Geothermal Resources Council Transactions, Geothermal Resources Council 2012 Annual Meeting, Sep- tember 30–October 3, 2012, Reno, Nevada, CD-ROM, v. 36, pp. 165–169. Liberatore, M., Herring, A., Prasad, M., Dorgan, J., & Batzle, M. (1912). Fluid and rock property controls on production and seismic monitoring Alaska heavy oils—final report. U.S. Department of Energy National Energy Technology Labo- ratory, Project DE-FC26-08NT05663, p. 43. Lindsey, C. (2012). Geothermal energy potential in Oktibbeha County—is Mississippi really hot? Geothermal Resources Council Transactions, Geothermal Resources Council 2012 Annual Meeting, September 30–October 3, 2012, Reno, Ne- vada, CD-ROM, v. 36, pp. 171–175. Lukawski, M. (2013). The impact of well drilling costs on the economics of geothermal energy utilization. Southern Meth- odist University (SMU) Geothermal Laboratory, Geother- mal Energy and Waste Heat to Power–Utilizing Oil and Gas Plays, Conference Summary, Agenda, Presenters. Retrieved July 15, 2013, from http://smu.edu/geothermal/Oil&Gas/ 2013/2013_Speakers_Agenda.htm. Ma, X. (2009). Status and development prospects of ChinaÕs unconventional natural gas exploration and exploitation. 9th U.S.—China Oil and Gas Forum. PetroChina & Production Company (CNPC), China, p. 34. Marsh, R. A., & Hein, F. J. (2008). CanadaÕs extra-heavy (bitu- men) and heavy oil resources, reserves and development. Journal of Canadian Petroleum Technology, 47(5), 7–11. Masliyah, J. H., Czarnecki, J. A., & Xu, Z. (2011). Handbook on theory and practice of bitumen recovery from Athabasca oil sands, vol I and II. University of Alberta Press, Edmonton, AB, p. 1232. May, M. T. (2013). Oil-saturated Mississippian-Pennsylvanian sandstones of south-central Kentucky. In F. J. Hein, D. Leckie, S. Larter, & J. R. Suter (Eds.), Heavy-oil and oil-sand petroleum systems in Alberta and beyond, vol 64 (pp. 373– 406). AAPG Studies in Geology. McCalister, R. (2012). Briefing paper—Coal exporting terminals: Interstate Energy Board, Coal Ports—October 9, 2012 web- inar. Retrieved July 22, 2013, from http://www.west gov.org/wieb/coalports/. McVay, D. A., Bello, R. O., Ayers, W. B., Jr., Hernandez, G. A., Rushing, J. A., Ruhl, S. K., Hoffmann, M. F., & Ramazanova, R. I. (2009). Evaluation of the technical and economic fea- sibility of CO2 sequestration and enhanced coalbed methane recovery in Texas low-rank coals. In M. Grobe, J. C. Pashin, & R. L. Dodge (Eds.), Carbon dioxide sequestration in geo- logical media—state of the science (pp. 665–688). AAPG Studies in Geology, v. 59. Meckel, L. D. & Thomasson, M. R. (2008). Pervasive tight-gas sandstone reservoirs: An overview. In S. P. Cumella, K. W. Shanley, & W. K. Camp (Eds.), Understanding, exploring, and developing tight-gas sands—2005 Vail Hedberg Confer- ence (pp. 13–27). AAPG Hedberg Series, no. 3.

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