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Promising synergies to address water, sequestration, legal, and public acceptance issues associated with large-scale implementation of CO 2 sequestration

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  • Benjamin Court
  • Thomas Elliot
  • Joseph Dammel
  • Thomas Buscheck
  • Jeremy Rohmer
  • Michael Celia

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  • Benjamin Court & Thomas Elliot & Joseph Dammel & Thomas Buscheck & Jeremy Rohmer & Michael Celia, 2012. "Promising synergies to address water, sequestration, legal, and public acceptance issues associated with large-scale implementation of CO 2 sequestration," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 17(6), pages 569-599, August.
  • Handle: RePEc:spr:masfgc:v:17:y:2012:i:6:p:569-599
    DOI: 10.1007/s11027-011-9314-x
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    References listed on IDEAS

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    1. van Alphen, Klaas & van Voorst tot Voorst, Quirine & Hekkert, Marko P. & Smits, Ruud E.H.M., 2007. "Societal acceptance of carbon capture and storage technologies," Energy Policy, Elsevier, vol. 35(8), pages 4368-4380, August.
    2. van Alphen, Klaas & Noothout, Paul M. & Hekkert, Marko P. & Turkenburg, Wim C., 2010. "Evaluating the development of carbon capture and storage technologies in the United States," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(3), pages 971-986, April.
    3. Zhai, Haibo & Rubin, Edward S., 2010. "Performance and cost of wet and dry cooling systems for pulverized coal power plants with and without carbon capture and storage," Energy Policy, Elsevier, vol. 38(10), pages 5653-5660, October.
    4. Feeley, Thomas J. & Skone, Timothy J. & Stiegel, Gary J. & McNemar, Andrea & Nemeth, Michael & Schimmoller, Brian & Murphy, James T. & Manfredo, Lynn, 2008. "Water: A critical resource in the thermoelectric power industry," Energy, Elsevier, vol. 33(1), pages 1-11.
    5. Bristow, Abigail L. & Wardman, Mark & Zanni, Alberto M. & Chintakayala, Phani K., 2010. "Public acceptability of personal carbon trading and carbon tax," Ecological Economics, Elsevier, vol. 69(9), pages 1824-1837, July.
    6. Heleen de Coninck, 2010. "Advocacy for carbon capture and storage could arouse distrust," Nature, Nature, vol. 463(7279), pages 293-293, January.
    7. -, 2009. "The economics of climate change," Sede Subregional de la CEPAL para el Caribe (Estudios e Investigaciones) 38679, Naciones Unidas Comisión Económica para América Latina y el Caribe (CEPAL).
    8. Herzog, Howard J., 2011. "Scaling up carbon dioxide capture and storage: From megatons to gigatons," Energy Economics, Elsevier, vol. 33(4), pages 597-604, July.
    9. Pruess, Karsten & García, Julio & Kovscek, Tony & Oldenburg, Curt & Rutqvist, Jonny & Steefel, Carl & Xu, Tianfu, 2004. "Code intercomparison builds confidence in numerical simulation models for geologic disposal of CO2," Energy, Elsevier, vol. 29(9), pages 1431-1444.
    10. Hoffler, Felix & Kubler, Madjid, 2007. "Demand for storage of natural gas in northwestern Europe: Trends 2005-30," Energy Policy, Elsevier, vol. 35(10), pages 5206-5219, October.
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    Cited by:

    1. Lan-Cui Liu & Qi Li & Jiu-Tian Zhang & Dong Cao, 2016. "Toward a framework of environmental risk management for CO 2 geological storage in china: gaps and suggestions for future regulations," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 21(2), pages 191-207, February.
    2. Sharmina, Maria, 2017. "Low-carbon scenarios for Russia's energy system: A participative backcasting approach," Energy Policy, Elsevier, vol. 104(C), pages 303-315.
    3. Wen Li & Yuxi Liu & Siqi Xiao & Yu Zhang & Lihe Chai, 2018. "An Investigation of the Underlying Evolution of Shale Gas Research’s Domain Based on the Co-Word Network," Sustainability, MDPI, vol. 10(1), pages 1-23, January.
    4. Mehdi Zeidouni & Nam H. Tran & Muhammad D. Munawar, 2017. "Interpretation of above†zone pressure influence time to characterize CO2 leakage," Greenhouse Gases: Science and Technology, Blackwell Publishing, vol. 7(6), pages 1050-1064, December.

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