Resumé
A main concern and hazard associated with offshore CO2 storage is leakage through the overburden sediments reaching the seabed and into the water column. We hypothesize that an early indicator of CO2 leakage from a CCS reservoir will be increased methane in the surface sediments, with thermogenic/long chain molecular signatures. In the SEEP and SEABAS research studies, we have conducted a multiproxy study involving geophysical data identifying the pathways of possible seepage, microbial and gas data characterizing the present type of seepage and sedimentary data, variations in elements and fauna characterizing the past seepage history at a storage site. Hereby we have tested the possibilities for proxy-based identification and development of toolboxes for identifying both methane and CO2 seepages in the abandoned reservoirs and at possible CO2 storage sites in the Danish North Sea. We propose that such a comprehensive seabed baseline analyses based on multiple tools is carried out prior to storage.
| Originalsprog | Engelsk |
|---|---|
| DOI | |
| Status | Udgivet - 2024 |
| Begivenhed | 5th EAGE Global Energy Transition Conference and Exhibition, GET 2024 - Rotterdam, Holland Varighed: 4 nov. 2024 → 7 nov. 2024 |
Konference
| Konference | 5th EAGE Global Energy Transition Conference and Exhibition, GET 2024 |
|---|---|
| Land/Område | Holland |
| By | Rotterdam |
| Periode | 4/11/24 → 7/11/24 |
Programområde
- Programområde 5: Natur og klima
Fingeraftryk
Dyk ned i forskningsemnerne om 'CO2 storage Environmental Baseline'. Sammen danner de et unikt fingeraftryk.Citationsformater
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver