Skip to main content
Top
Published in:
Cover of the book

2016 | OriginalPaper | Chapter

1. Introduction

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The growing concern about global warming has increased interest in the geological storage of carbon dioxide (CO2).

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Khosrokhavar, R., Elsinga, G., Mojaddam, A., Farajzadeh, R., & Bruining, J. (2011). Visualization of natural convection flow of super critical CO2 in water by applying Schlieren method. In SPE EUROPEC/EAGE Annual Conference and Exhibition. Khosrokhavar, R., Elsinga, G., Mojaddam, A., Farajzadeh, R., & Bruining, J. (2011). Visualization of natural convection flow of super critical CO2 in water by applying Schlieren method. In SPE EUROPEC/EAGE Annual Conference and Exhibition.
2.
go back to reference British Petroleum. (2013). BP Energy Outlook 2030. British Petroleum. (2013). BP Energy Outlook 2030.
3.
go back to reference Exxon Mobil. (2013). The Outlook for Energy: A View to 2040. Exxon Mobil. (2013). The Outlook for Energy: A View to 2040.
4.
go back to reference Shell. (2013). New Lens Scenarios: A Shift in Perspective for a World in Transition. Shell. (2013). New Lens Scenarios: A Shift in Perspective for a World in Transition.
5.
go back to reference Metz, B., Davidson, O., De Coninck, H., & Loos, M., & Meyer, L. (2005). Carbon dioxide capture and storage. Metz, B., Davidson, O., De Coninck, H., & Loos, M., & Meyer, L. (2005). Carbon dioxide capture and storage.
6.
go back to reference Healy, J. K., & Tapick, J. M. (2004). Climate change: It’s not just a policy issue for corporate counsel-it’s a legal problem. Columbia Journal of Environmental Law, 29, 89. Healy, J. K., & Tapick, J. M. (2004). Climate change: It’s not just a policy issue for corporate counsel-it’s a legal problem. Columbia Journal of Environmental Law, 29, 89.
7.
go back to reference IPCC. (2014). IPCC, 2014: Summary for policymakers. In O. Edenhofer, et al. (Eds.), Climate Change 2014, Mitigation of Climate Change. 2014, Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change: Cambridge, United Kingdom and New York, NY, USA. IPCC. (2014). IPCC, 2014: Summary for policymakers. In O. Edenhofer, et al. (Eds.), Climate Change 2014, Mitigation of Climate Change. 2014, Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change: Cambridge, United Kingdom and New York, NY, USA.
8.
go back to reference Farajzadeh, R., Zitha, P. L., & Bruining, J. (2009). Enhanced mass transfer of CO2 into water: experiment and modeling. Industrial and Engineering Chemistry Research, 48(13), 6423–6431.CrossRef Farajzadeh, R., Zitha, P. L., & Bruining, J. (2009). Enhanced mass transfer of CO2 into water: experiment and modeling. Industrial and Engineering Chemistry Research, 48(13), 6423–6431.CrossRef
9.
go back to reference Metz, B. (2007) Climate Change 2007-Mitigation of climate change: Working Group III Contribution to the fourth assessment report of the IPCC (Vol. 4). Cambridge: Cambridge University Press. Metz, B. (2007) Climate Change 2007-Mitigation of climate change: Working Group III Contribution to the fourth assessment report of the IPCC (Vol. 4). Cambridge: Cambridge University Press.
10.
go back to reference Wilson, E. J., Morgan, M. G., Apt, J., Bonner, M., Bunting, C., Gode, J., et al. (2008). Regulating the geological sequestration of CO2. Environmental Science and Technology, 42(8), 2718–2722.CrossRef Wilson, E. J., Morgan, M. G., Apt, J., Bonner, M., Bunting, C., Gode, J., et al. (2008). Regulating the geological sequestration of CO2. Environmental Science and Technology, 42(8), 2718–2722.CrossRef
11.
go back to reference Schumpeter, J.A. (2013). Capitalism, socialism and democracy. London: Routledge. Schumpeter, J.A. (2013). Capitalism, socialism and democracy. London: Routledge.
12.
go back to reference Piketty, T. (2014). Capital in the 21st century. Cambridge: Harvard University Press. Piketty, T. (2014). Capital in the 21st century. Cambridge: Harvard University Press.
13.
go back to reference Khosrokhavar, R., Schoemaker, C., Battistutta, E., Wolf, K.-H. A., & Bruining, J. (2012). Sorption of CO2 in shales using the manometric set-up. In SPE Europec/EAGE Annual Conference. 2012. Society of Petroleum Engineers. Khosrokhavar, R., Schoemaker, C., Battistutta, E., Wolf, K.-H. A., & Bruining, J. (2012). Sorption of CO2 in shales using the manometric set-up. In SPE Europec/EAGE Annual Conference. 2012. Society of Petroleum Engineers.
14.
go back to reference Eftekhari, A. A., Van Der Kooi, H., & Bruining, H. (2012). Exergy analysis of underground coal gasification with simultaneous storage of carbon dioxide. Energy, 45(1), 729–745.CrossRef Eftekhari, A. A., Van Der Kooi, H., & Bruining, H. (2012). Exergy analysis of underground coal gasification with simultaneous storage of carbon dioxide. Energy, 45(1), 729–745.CrossRef
15.
go back to reference Bachu, S. (2002). Sequestration of CO2 in geological media in response to climate change: road map for site selection using the transform of the geological space into the CO2 phase space. Energy Conversion and Management, 43(1), 87–102.CrossRef Bachu, S. (2002). Sequestration of CO2 in geological media in response to climate change: road map for site selection using the transform of the geological space into the CO2 phase space. Energy Conversion and Management, 43(1), 87–102.CrossRef
16.
go back to reference Mosher, K., He, J., Liu, Y., Rupp, E., & Wilcox, J. (2013). Molecular simulation of methane adsorption in micro-and mesoporous carbons with applications to coal and gas shale systems. International Journal of Coal Geology, 109, 36–44.CrossRef Mosher, K., He, J., Liu, Y., Rupp, E., & Wilcox, J. (2013). Molecular simulation of methane adsorption in micro-and mesoporous carbons with applications to coal and gas shale systems. International Journal of Coal Geology, 109, 36–44.CrossRef
17.
go back to reference Davis, S. J., Caldeira, K., & Matthews, H. D. (2010). Future CO2 emissions and climate change from existing energy infrastructure. Science, 329(5997), 1330–1333.CrossRef Davis, S. J., Caldeira, K., & Matthews, H. D. (2010). Future CO2 emissions and climate change from existing energy infrastructure. Science, 329(5997), 1330–1333.CrossRef
18.
go back to reference Benson, S. M., & Orr, F. M. (2008). Carbon dioxide capture and storage. MRS Bulletin, 33(04), 303–305.CrossRef Benson, S. M., & Orr, F. M. (2008). Carbon dioxide capture and storage. MRS Bulletin, 33(04), 303–305.CrossRef
19.
go back to reference Wilcox, J. (2012). Carbon capture. New York: Springer. Wilcox, J. (2012). Carbon capture. New York: Springer.
20.
go back to reference Bachu, S., Bonijoly, D., Bradshaw, J., Burruss, R., Holloway, S., Christensen, N. P., & Mathiassen, O. M. (2007). CO2 storage capacity estimation: Methodology and gaps. International Journal of Greenhouse Gas Control, 1(4), 430–443.CrossRef Bachu, S., Bonijoly, D., Bradshaw, J., Burruss, R., Holloway, S., Christensen, N. P., & Mathiassen, O. M. (2007). CO2 storage capacity estimation: Methodology and gaps. International Journal of Greenhouse Gas Control, 1(4), 430–443.CrossRef
21.
go back to reference Xu, T., Apps, J. A., & Pruess, K. (2004). Numerical simulation of CO2 disposal by mineral trapping in deep aquifers. Applied Geochemistry, 19(6), 917–936.CrossRef Xu, T., Apps, J. A., & Pruess, K. (2004). Numerical simulation of CO2 disposal by mineral trapping in deep aquifers. Applied Geochemistry, 19(6), 917–936.CrossRef
22.
go back to reference Pruess, K., & Garcia, J. (2002). Multiphase flow dynamics during CO2 disposal into saline aquifers. Environmental Geology, 42(2–3), 282–295.CrossRef Pruess, K., & Garcia, J. (2002). Multiphase flow dynamics during CO2 disposal into saline aquifers. Environmental Geology, 42(2–3), 282–295.CrossRef
23.
go back to reference Khosrokhavar, R., Elsinga, G., Farajzadeh, R., & Bruining, H. (2014). Visualization and investigation of natural convection flow of CO2 in aqueous and oleic systems. Journal of Petroleum Science and Engineering 122, 230–239. Khosrokhavar, R., Elsinga, G., Farajzadeh, R., & Bruining, H. (2014). Visualization and investigation of natural convection flow of CO2 in aqueous and oleic systems. Journal of Petroleum Science and Engineering 122, 230–239.
24.
go back to reference Gmelin, L. (1973). Gmelin Handbuch der anorganischen Chemie, 8. Auflage. Kohlenstoff, Teil C3, Verbindungen. ISBN 3-527-81419-1. Gmelin, L. (1973). Gmelin Handbuch der anorganischen Chemie, 8. Auflage. Kohlenstoff, Teil C3, Verbindungen. ISBN 3-527-81419-1.
25.
go back to reference Parkhurst, D. L., & Appelo, C. (2013). Description of input and examples for PHREEQC version 3- A computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. US Geological Survey Techniques and Methods, Book 6, Modeling Techniques. Parkhurst, D. L., & Appelo, C. (2013). Description of input and examples for PHREEQC version 3- A computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. US Geological Survey Techniques and Methods, Book 6, Modeling Techniques.
26.
go back to reference Rodosta, T., Hull, J., & Zoback, M. (2013). Interdisciplinary Investigation of CO 2 Sequestration in Depleted Shale Gas Formations, 2013, U.S. Department of Energy. Rodosta, T., Hull, J., & Zoback, M. (2013). Interdisciplinary Investigation of CO 2 Sequestration in Depleted Shale Gas Formations, 2013, U.S. Department of Energy.
27.
go back to reference Nicot, J.-P., & Duncan, I. J. (2012). Common attributes of hydraulically fractured oil and gas production and CO2 geological sequestration. Greenhouse Gases: Science and Technology, 2(5), 352–368.CrossRef Nicot, J.-P., & Duncan, I. J. (2012). Common attributes of hydraulically fractured oil and gas production and CO2 geological sequestration. Greenhouse Gases: Science and Technology, 2(5), 352–368.CrossRef
28.
go back to reference International Energy Agency. (2013). CO 2 Emissions From Fuel Combustion: Highlights (2013th ed.). International Energy Agency: France. International Energy Agency. (2013). CO 2 Emissions From Fuel Combustion: Highlights (2013th ed.). International Energy Agency: France.
29.
go back to reference Khosrokhavar, R., Wolf, K.-H., & Bruining, H. (2014). Sorption of CH4 and CO2 on a carboniferous shale from Belgium using a manometric setup. International Journal of Coal Geology, 128, 153–161.CrossRef Khosrokhavar, R., Wolf, K.-H., & Bruining, H. (2014). Sorption of CH4 and CO2 on a carboniferous shale from Belgium using a manometric setup. International Journal of Coal Geology, 128, 153–161.CrossRef
Metadata
Title
Introduction
Author
Roozbeh Khosrokhavar
Copyright Year
2016
DOI
https://doi.org/10.1007/978-3-319-23087-0_1