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Mobilization and Retardation of Uranium DOC Species at Three Mine Piles in Schlema/Alberoda, Saxony, Germany

 

作者: K. Franke,   D. Rössler,   U. Gottschalch,   H. Kupsch,  

 

期刊: Isotopes in Environmental and Health Studies  (Taylor Available online 2000)
卷期: Volume 36, issue 3  

页码: 223-239

 

ISSN:1025-6016

 

年代: 2000

 

DOI:10.1080/10256010008036383

 

出版商: Taylor & Francis Group

 

关键词: Adsorption;Dissolved organic carbon;Fulvic acid species;Geo-chemical barriers;Heavy metals;Humic acid species;Transport;Uranium;Mine pile

 

数据来源: Taylor

 

摘要:

The modeling of geo-chemical processes needs the detailed and comprehensive knowledge of all chemical interactions existing in the flow path of waste dumps, subsoil and aquifer. This includes the adsorption, displacement and transport of heavy metal species of fulvic and humic acids, which represent the main amount of DOC in the liquid/solid system of the flow path. Comparative measurements of DOC concentrations in the input and output flow at the three waste dumps in the district Schlema/Alberoda indicated that DOC is produced and/or supplied within the waste dumps. The speciation of heavy metal compounds of fulvic and humic acids was achieved by means of sequential chromatographic analysis SCA and isoelectric focusing IEF. Between 5% and 20% of uranium exist in the flow path in the form of stable fulvic and humic acid species. Their distribution coefficients are strongly correlated with the pH values of the geo-chemical system.

 

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