Adsorption of ~(133)Cs and ~(87)Sr on pumice tuff:A comparative study between powder and intact soli

来源 :Acta Geochimica | 被引量 : 0次 | 上传用户:zbtoy
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This study examines the use of intact samples as an alternative to powder in conventional batch sorption studies to determine the distribution coefficient(K_d).Stable cesium(~(133)Cs) and strontium(~(87)Sr) were used under specified geochemical conditions to compare the Kdvalues of powder and block pumice tuff samples. The aim of the study was to infer any Kddifference under laboratory and field conditions. Kdvalues for block samples were found to be less than one order of magnitude lower than powder materials for both Cs and Sr on fresh tuff, and more than one order of magnitude lower in oxidized tuff. Destruction of micropores in oxidized tuff was estimated to be mainly responsible for reducing Kdvalues in oxidized tuff. However, approximately one order of magnitude difference in Kdvalues indicates that homogenously prepared intact samples can be used for sorption coefficient measurement at closer to in situ conditions. Pore size distribution analysis using mercury intrusion porosimetry revealed that lower Kdvalues on block samples result from lower surface area available as sorption sites due to inaccessible closed pores in the intact solid. This study examines the use of intact samples as an alternative to powder in conventional batch sorption studies to determine the distribution coefficient (K_d) .Stable cesium (~ (133) Cs) and strontium (~ (87) Sr) were used under specified geochemical conditions to compare the Kdvalues ​​of powder and block pumice tuff samples. The aim of the study was to infer any Kddifference under laboratory and field conditions. Kdvalues ​​for block samples were found to be less than one order of magnitude lower than powder materials for both Cs and Sr on fresh tuff, and more than one order of magnitude lower in oxidized tuff. Destruction of micropores in oxidized tuff was estimated to be mainly responsible for reducing Kdvalues ​​in oxidized tuff. However, approximately one order of magnitude difference in Kdvalues ​​indicates that homogenously prepared intact samples can be used for sorption coefficient measurement at closer to in situ conditions. Pore size distribution analysis using mercury intrusion porosime try revealed that lower Kdvalues ​​on block samples result from lower surface area available as sorption sites due to inaccessible closed pores in the intact solid.
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