Australia’s CO2 geological storage potential and matching of emission sources to potential sinks
Autor: | V. Nguyen, P Wilson, Lynton K. Spencer, Guy Allinson, John L. Bradshaw, B.E. Bradshaw, A.J. Rigg |
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Rok vydání: | 2004 |
Předmět: |
Matching (statistics)
Cooperative research Mechanical Engineering Building and Construction Pollution Natural resource Industrial and Manufacturing Engineering Current (stream) Sustainable gardening chemistry.chemical_compound General Energy Containment chemistry Environmental protection Environmental science Petroleum Electrical and Electronic Engineering Source to sink Civil and Structural Engineering |
Zdroj: | Energy. 29:1623-1631 |
ISSN: | 0360-5442 |
DOI: | 10.1016/j.energy.2004.03.064 |
Popis: | Within the GEODISC program of the Australian Petroleum Cooperative Research Centre (APCRC), Geoscience Australia (GA) and the University of New South Wales (UNSW) have completed an analysis of the potential for the geological storage of CO 2 . The geological analysis assessed over 100 potential environmentally sustainable sites for CO 2 injection (ESSCIs) by applying a deterministic risk assessment based on the five factors of: storage capacity, injectivity potential, site details, containment and natural resources. Utilising a risked storage capacity suggests that at a regional scale Australia has a CO 2 storage potential in excess of 1600 years of current annual total net emissions. Whilst this estimate does give an idea of the enormous magnitude of the geological storage potential of CO 2 in Australia, it does not account for various factors that are evident in source to sink matching. If preferences due to source to sink matching are incorporated, and an assumption is made that some economic imperative will apply to encourage geological storage of CO 2 , then a more realistic analysis can be derived. In such a case, Australia may have the potential to store a maximum of 25% of our total annual net emissions, or approximately 100–115 Mt CO 2 per year. |
Databáze: | OpenAIRE |
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