Evaluation through column leaching tests of metal release from contaminated estuarine sediment subject to CO2 leakages from Carbon Capture and Storage sites
The pH change and the release of organic matter and metals from sediment, due to the potential CO2 acidified seawater leakages from a CCS (Carbon Capture and Storage) site are presented. Column leaching test is used to simulate a scenario where a flow of acidified seawater is in contact with recent...
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Published in | Environmental pollution (1987) Vol. 171; pp. 174 - 184 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.12.2012
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Abstract | The pH change and the release of organic matter and metals from sediment, due to the potential CO2 acidified seawater leakages from a CCS (Carbon Capture and Storage) site are presented. Column leaching test is used to simulate a scenario where a flow of acidified seawater is in contact with recent contaminated sediment. The behavior of pH, dissolved organic carbon (DOC) and metals As, Cd, Cr, Cu, Ni, Pb, Zn, with liquid to solid (L/S) ratio and pH is analyzed. A stepwise strategy using empirical expressions and a geochemical model was conducted to fit experimental release concentrations. Despite the neutralization capacity of the seawater-carbonate rich sediment system, important acidification and releases are expected at local scale at lower pH. The obtained results would be relevant as a line of evidence input of CCS risk assessment, in an International context where strategies to mitigate the climate change would be applied.
► Tier structured approach for assessment of the release of metals from sediment. ► Standard column leaching test to simulate CO2 acidified seawater CCS leakages. ► Metal and DOC release from marine sediment in contact to CO2 acidified seawater. ► From empirical to geochemical modeling approaches of DOC and metals release in column tests. ► Contamination line of evidence input of CCS risk assessment.
Column metal release from CO2 acidified seawater leakages in contact with estuarine contaminated sediment in CCS sites |
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AbstractList | The pH change and the release of organic matter and metals from sediment, due to the potential CO(2) acidified seawater leakages from a CCS (Carbon Capture and Storage) site are presented. Column leaching test is used to simulate a scenario where a flow of acidified seawater is in contact with recent contaminated sediment. The behavior of pH, dissolved organic carbon (DOC) and metals As, Cd, Cr, Cu, Ni, Pb, Zn, with liquid to solid (L/S) ratio and pH is analyzed. A stepwise strategy using empirical expressions and a geochemical model was conducted to fit experimental release concentrations. Despite the neutralization capacity of the seawater-carbonate rich sediment system, important acidification and releases are expected at local scale at lower pH. The obtained results would be relevant as a line of evidence input of CCS risk assessment, in an International context where strategies to mitigate the climate change would be applied. The pH change and the release of organic matter and metals from sediment, due to the potential CO₂ acidified seawater leakages from a CCS (Carbon Capture and Storage) site are presented. Column leaching test is used to simulate a scenario where a flow of acidified seawater is in contact with recent contaminated sediment. The behavior of pH, dissolved organic carbon (DOC) and metals As, Cd, Cr, Cu, Ni, Pb, Zn, with liquid to solid (L/S) ratio and pH is analyzed. A stepwise strategy using empirical expressions and a geochemical model was conducted to fit experimental release concentrations. Despite the neutralization capacity of the seawater-carbonate rich sediment system, important acidification and releases are expected at local scale at lower pH. The obtained results would be relevant as a line of evidence input of CCS risk assessment, in an International context where strategies to mitigate the climate change would be applied. The pH change and the release of organic matter and metals from sediment, due to the potential CO2 acidified seawater leakages from a CCS (Carbon Capture and Storage) site are presented. Column leaching test is used to simulate a scenario where a flow of acidified seawater is in contact with recent contaminated sediment. The behavior of pH, dissolved organic carbon (DOC) and metals As, Cd, Cr, Cu, Ni, Pb, Zn, with liquid to solid (L/S) ratio and pH is analyzed. A stepwise strategy using empirical expressions and a geochemical model was conducted to fit experimental release concentrations. Despite the neutralization capacity of the seawater-carbonate rich sediment system, important acidification and releases are expected at local scale at lower pH. The obtained results would be relevant as a line of evidence input of CCS risk assessment, in an International context where strategies to mitigate the climate change would be applied. ► Tier structured approach for assessment of the release of metals from sediment. ► Standard column leaching test to simulate CO2 acidified seawater CCS leakages. ► Metal and DOC release from marine sediment in contact to CO2 acidified seawater. ► From empirical to geochemical modeling approaches of DOC and metals release in column tests. ► Contamination line of evidence input of CCS risk assessment. Column metal release from CO2 acidified seawater leakages in contact with estuarine contaminated sediment in CCS sites The pH change and the release of organic matter and metals from sediment, due to the potential CO(2) acidified seawater leakages from a CCS (Carbon Capture and Storage) site are presented. Column leaching test is used to simulate a scenario where a flow of acidified seawater is in contact with recent contaminated sediment. The behavior of pH, dissolved organic carbon (DOC) and metals As, Cd, Cr, Cu, Ni, Pb, Zn, with liquid to solid (L/S) ratio and pH is analyzed. A stepwise strategy using empirical expressions and a geochemical model was conducted to fit experimental release concentrations. Despite the neutralization capacity of the seawater-carbonate rich sediment system, important acidification and releases are expected at local scale at lower pH. The obtained results would be relevant as a line of evidence input of CCS risk assessment, in an International context where strategies to mitigate the climate change would be applied.The pH change and the release of organic matter and metals from sediment, due to the potential CO(2) acidified seawater leakages from a CCS (Carbon Capture and Storage) site are presented. Column leaching test is used to simulate a scenario where a flow of acidified seawater is in contact with recent contaminated sediment. The behavior of pH, dissolved organic carbon (DOC) and metals As, Cd, Cr, Cu, Ni, Pb, Zn, with liquid to solid (L/S) ratio and pH is analyzed. A stepwise strategy using empirical expressions and a geochemical model was conducted to fit experimental release concentrations. Despite the neutralization capacity of the seawater-carbonate rich sediment system, important acidification and releases are expected at local scale at lower pH. The obtained results would be relevant as a line of evidence input of CCS risk assessment, in an International context where strategies to mitigate the climate change would be applied. |
Author | Coz, Alberto Vandecasteele, Carlo Viguri, Javier R. Payán, M. Cruz Galan, Berta |
Author_xml | – sequence: 1 givenname: M. Cruz surname: Payán fullname: Payán, M. Cruz organization: Department of Chemical Engineering and Inorganic Chemistry, ETSIIT, University of Cantabria, Avda. de los Castros s/n, 39005 Santander, Spain – sequence: 2 givenname: Berta surname: Galan fullname: Galan, Berta organization: Department of Chemical Engineering and Inorganic Chemistry, ETSIIT, University of Cantabria, Avda. de los Castros s/n, 39005 Santander, Spain – sequence: 3 givenname: Alberto surname: Coz fullname: Coz, Alberto organization: Department of Chemical Engineering and Inorganic Chemistry, ETSIIT, University of Cantabria, Avda. de los Castros s/n, 39005 Santander, Spain – sequence: 4 givenname: Carlo surname: Vandecasteele fullname: Vandecasteele, Carlo organization: Department of Chemical Engineering, University of Leuven, Willem de Croylaan 46, B-3001 Heverlee, Belgium – sequence: 5 givenname: Javier R. surname: Viguri fullname: Viguri, Javier R. email: vigurij@unican.es organization: Department of Chemical Engineering and Inorganic Chemistry, ETSIIT, University of Cantabria, Avda. de los Castros s/n, 39005 Santander, Spain |
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Keywords | CO2 leakage Sediment CO2-acidified seawater Column leaching tests Metal release heavy metals Carbon dioxide acidification greenhouse gas environment impact trace elements lixiviation estuaries acidified seawater climate change sea water Sediment water interaction Pollutant behavior CO2 sequestration Geological formation arsenic CO Carbon sequestration sustainable development Mitigation Carcinogen Geoengineering Poison leakage |
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SubjectTerms | acidification analysis Applied sciences arsenic Biological and physicochemical properties of pollutants. Interaction in the soil cadmium carbon carbon dioxide Carbon Dioxide - analysis Carbon Dioxide - chemistry Carbon Sequestration chemistry chromium climate change Climatology. Bioclimatology. Climate change CO2 leakage CO2-acidified seawater Column leaching tests copper dissolved organic carbon Earth sciences Earth, ocean, space Engineering and environment geology. Geothermics Environmental Monitoring Estuaries Exact sciences and technology External geophysics Geologic Sediments Geologic Sediments - chemistry Hydrogen-Ion Concentration leaching lead Metal release Metals Metals - analysis Metals - chemistry Meteorology Models, Chemical neutralization nickel Pollution Pollution, environment geology Risk Assessment seawater Seawater - chemistry Sediment sediments Soil and sediments pollution Spain Water Pollutants, Chemical Water Pollutants, Chemical - analysis Water Pollutants, Chemical - chemistry zinc |
Title | Evaluation through column leaching tests of metal release from contaminated estuarine sediment subject to CO2 leakages from Carbon Capture and Storage sites |
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