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Author (up) Klaus, J.; Külls, C. openurl 
  Title Integrating residence time data in mixing cell modeling-Application to the Lower Kuiseb Dune area Type Conference Article
  Year 2009 Publication EGU Geophysical Abstracts Abbreviated Journal  
  Volume Issue Pages 11026  
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  Notes Approved no  
  Call Number THL @ christoph.kuells @ Klaus2009integrating Serial 54  
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Author (up) Klaus, J.; Külls, C.; Dahan, O. url  doi
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  Title Evaluating the recharge mechanism of the Lower Kuiseb Dune area using mixing cell modeling and residence time data Type Journal Article
  Year 2008 Publication Journal of Hydrology Abbreviated Journal  
  Volume 358 Issue 3-4 Pages 304-316  
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  Publisher Elsevier Place of Publication Editor  
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  Notes Approved no  
  Call Number THL @ christoph.kuells @ Klaus2008evaluating Serial 28  
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Author (up) Klaus, J.; Zehe, E.; Elsner, M.; Külls, C.; McDonnell, J.J. url  doi
openurl 
  Title Macropore flow of old water revisited: experimental insights from a tile-drained hillslope Type Journal Article
  Year 2013 Publication Hydrology and Earth System Sciences Abbreviated Journal  
  Volume 17 Issue 1 Pages 103  
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  Publisher Copernicus GmbH Place of Publication Editor  
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  Notes Approved no  
  Call Number THL @ christoph.kuells @ Klaus2013macropore Serial 23  
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Author (up) Klimkova, S.; Cernik, M.; Lacinova, L.; Filip, J.; Jancik, D.; Zboril, R. url  openurl
  Title Zero-valent iron nanoparticles in treatment of acid mine water from in situ uranium leaching Type Journal Article
  Year 2011 Publication Chemosphere Abbreviated Journal  
  Volume 82 Issue 8 Pages 1178-1184  
  Keywords Acid mine water, Contaminant removal, Surface stabilizing shell, Water treatment, Zero-valent iron nanoparticles  
  Abstract Acid mine water from in situ chemical leaching of uranium (Straz pod Ralskem, Czech Republic) was treated in laboratory scale experiments by zero-valent iron nanoparticles (nZVI). For the first time, nZVI were applied for the treatment of the real acid water system containing the miscellaneous mixture of pollutants, where the various removal mechanisms occur simultaneously. Toxicity of the treated saline acid water is caused by major contaminants represented by aluminum and sulphates in a high concentration, as well as by microcontaminants like As, Be, Cd, Cr, Cu, Ni, U, V, and Zn. Laboratory batch experiments proved a significant decrease in concentrations of all the monitored pollutants due to an increase in pH and a decrease in oxidation–reduction potential related to an application of nZVI. The assumed mechanisms of contaminants removal include precipitation of cations in a lower oxidation state, precipitation caused by a simple pH increase and co-precipitation with the formed iron oxyhydroxides. The possibility to control the reaction kinetics through the nature of the surface stabilizing shell (polymer vs. FeO nanolayer) is discussed as an important practical aspect.  
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  ISSN 0045-6535 ISBN Medium  
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  Call Number THL @ christoph.kuells @ klimkova_zero-valent_2011 Serial 196  
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Author (up) Klock, H.; Külls, C.; Udluft, P. openurl 
  Title Quantification of Groundwater Recharge-Estimating recharge values using hydrochemical and geological data: A case study from the semiarid Kalahari catchment of northern Namibia Type Journal Article
  Year 2001 Publication IAHS Publications-Series of Proceedings and Reports-Intern Assoc Hydrological Sciences Abbreviated Journal  
  Volume 269 Issue Pages 25-32  
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  Publisher Wallingford [Oxfordshire]: IAHS, 1981- Place of Publication Editor  
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  Notes Approved no  
  Call Number THL @ christoph.kuells @ Klock2001 Serial 32  
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