Assessing risk to fresh water resources from long term CO2 injection - laboratory and field studies

被引:78
|
作者
Smyth, Rebecca C. [1 ]
Hovorka, Susan D. [1 ]
Lu, Jiemin [1 ]
Romanak, Katherine D. [1 ]
Partin, Judson W. [2 ]
Wong, Corrine [2 ]
Yang, Changbing [1 ]
机构
[1] Univ Texas Austin, Bur Econ Geol, Jackson Sch Geosci, POB 10, Austin, TX 78713 USA
[2] Univ Texas Austin, Jackson Sch Geosci, Dept Geol Sci, Austin, TX 78713 USA
来源
关键词
geologic sequestration; water resources; laboratory experiments; increased pH; cations; groundwater sampling; GREENHOUSE GASES; AQUIFER DISPOSAL;
D O I
10.1016/j.egypro.2009.01.255
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In developing a site for geologic sequestration, one must assess potential consequences of failure to adequately contain injected carbon dioxide (CO2). Upward migration of CO2 or displacement of saline water because of increased pressure might impact protected water resources 100s to 1000s of meters above a sequestration interval. Questions posed are: (1) Can changes in chemistry of fresh water aquifers provide evidence of CO2 leakage from deep injection/sequestration reservoirs containing brine and or hydrocarbons? (2) What parameters can we use to assess potential impacts to water quality? (3) If CO2 leakage to freshwater aquifers occurs, will groundwater quality be degraded and if so, over what time period? Modeling and reaction experiments plus known occurrences of naturally CO2-charged potable water show that the common chemical reaction products from dissolution of CO2 into freshwater include rapid buffering of acidity by dissolution of calcite and slower equilibrium by reaction with clays and feldspars. Results from a series of laboratory batch reactions of CO2 with diverse aquifer rocks show geochemical response within hours to days after introduction of CO2. Results included decreased pH and increased concentrations of cations in CO2 experimental runs relative to control runs using argon (Ar). Some cation (Ba, Ca, Fe, Mg, Mn, and Sr) concentrations increased over and an order of magnitude during CO2 runs. Results are aquifer dependant in that experimental vessels containing different aquifer rocks showed different magnitudes of increase in cation concentrations. Field studies designed to improve understanding of risk to fresh water are underway in the vicinity of (1) SACROC oilfield in Scurry County, Texas, USA where CO2 has been injected for enhanced oil recovery (EOR) since 1972 and (2) the Cranfield unit in Adams County, Mississippi, USA where CO2 EOR is currently underway. Both field studies are funded by the U. S. Department of Energy (DOE) regional carbon sequestration partnership programs and industrial sponsors. Preliminary results of groundwater monitoring are currently available for the SACROC field study where researchers investigated 68 water wells and one spring during five field excursions between June 2006 and July 2008. Results to date show no trend of preferential degradation below drinking water standards in areas of CO2 injection (inside SACROC) as compared to areas outside of the SACROC oil field. (C) 2008 Elsevier B. V. All rights reserved
引用
收藏
页码:1957 / 1964
页数:8
相关论文
共 50 条
  • [31] Long-term CO2 injection and its impact on near-surface soil microbiology
    Gwosdz, Simone
    West, Julia M.
    Jones, David
    Rakoczy, Jana
    Green, Kay
    Barlow, Tom
    Blothe, Marco
    Smith, Karon
    Steven, Michael
    Kruger, Martin
    FEMS MICROBIOLOGY ECOLOGY, 2016, 92 (12)
  • [32] Long-term response of oceans to CO2 removal from the atmosphere
    Sabine Mathesius
    Matthias Hofmann
    Ken Caldeira
    Hans Joachim Schellnhuber
    Nature Climate Change, 2015, 5 : 1107 - 1113
  • [33] Long-term response of oceans to CO2 removal from the atmosphere
    Mathesius, Sabine
    Hofmann, Matthias
    Caldeira, Ken
    Schellnhuber, Hans Joachim
    NATURE CLIMATE CHANGE, 2015, 5 (12) : 1107 - +
  • [34] Assessing the potential of composite confining systems for secure and long-term CO2 retention in geosequestration
    Bakhshian, Sahar
    Bump, Alexander P.
    Pandey, Shaunak
    Ni, Hailun
    Hovorka, Susan D.
    SCIENTIFIC REPORTS, 2023, 13 (01)
  • [35] Assessing the potential of composite confining systems for secure and long-term CO2 retention in geosequestration
    Sahar Bakhshian
    Alexander P. Bump
    Shaunak Pandey
    Hailun Ni
    Susan D. Hovorka
    Scientific Reports, 13
  • [36] Coreflooding Studies to Investigate the Potential of Carbonated Water Injection as an Injection Strategy for Improved Oil Recovery and CO2 Storage
    Sohrabi, Mehran
    Kechut, Nor Idah
    Riazi, Masoud
    Jamiolahmady, Mahmoud
    Ireland, Shaun
    Robertson, Graeme
    TRANSPORT IN POROUS MEDIA, 2012, 91 (01) : 101 - 121
  • [37] Coreflooding Studies to Investigate the Potential of Carbonated Water Injection as an Injection Strategy for Improved Oil Recovery and CO2 Storage
    Mehran Sohrabi
    Nor Idah Kechut
    Masoud Riazi
    Mahmoud Jamiolahmady
    Shaun Ireland
    Graeme Robertson
    Transport in Porous Media, 2012, 91 : 101 - 121
  • [38] A long-term field study on biodiversity x elevated CO2 interactions in grassland
    Niklaus, PA
    Leadley, PW
    Schmid, B
    Körner, C
    ECOLOGICAL MONOGRAPHS, 2001, 71 (03) : 341 - 356
  • [39] A comparison of passive seismic monitoring of fracture stimulation from water and CO2 injection
    Verdon, James P.
    Kendall, J. -Michael
    Maxwell, Shawn C.
    GEOPHYSICS, 2010, 75 (03) : MA1 - MA7
  • [40] Laboratory and field tests of CO2-water injection into the Ogachi hot dry rock site, Japan
    Ueda, Akira
    Nakatsuka, Yoshihiro
    Kunieda, Makoto
    Kuroda, Yoshihiro
    Yajima, Tatsuya
    Satoh, Hisao
    Sugiyama, Kazunori
    Ozawa, Akiko
    Ohsumi, Takashi
    Wakahama, Hiroshi
    Mito, Saeko
    Kaji, Yoshikazu
    Kaieda, Hideshi
    GREENHOUSE GAS CONTROL TECHNOLOGIES 9, 2009, 1 (01): : 3669 - 3674