Onshore Geologic Storage of CO 2

Author:

Orr Franklin M.1

Affiliation:

1. Precourt Institute for Energy, Stanford University, Stanford, CA 94305–4230, USA.

Abstract

The possibility that substantial quantities of CO 2 can be injected into subsurface porous rock formations has been investigated sufficiently to show that pore space available to contain the CO 2 is abundant. Multiple rock types and physical mechanisms can be used to trap the CO 2 indefinitely. With careful site selection and operations, leakage to the near-surface region can be avoided. The next step is to test these injection processes at the scale of a large power plant.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference19 articles.

1. Intergovernmental Panel on Climate Change “Special report on carbon capture and storage” B. Metz O. Davidson H. C. de Coninck M. Loos L. A. Meyer Eds. (Cambridge Univ. Press New York 2005).

2. J. J. Dooley et al . “Carbon dioxide capture and storage ” Technology Report Global Energy Technology Strategy Program (Battelle Memorial Institute College Park MD 2006).

3. CO 2 Sequestration Atlas II (National Energy Technology Laboratory Morgantown WV 2008).

4. Analysis of Geologic Sequestration Costs for the United States and Implications for Climate Change Mitigation

5. CO2 storage capacity estimation: Issues and development of standards

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