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  • Iron nanoparticles (nZVI) have immobilization effects on inorganic ion concentration in water. Our aim was to compare the results of laboratory and model outputs of interactions of nZVI with various species in created systems. Experiments and modeling using the Geochemist's Workbench compare immobilization effects on aluminum concentration caused by hydroxide and nZVI addition and also estimate the interactions of nZVI with different salts under various conditions of the surveyed system. Another major objective was the assessment of the impact of atmospheric processes in the reaction system.
  • Iron nanoparticles (nZVI) have immobilization effects on inorganic ion concentration in water. Our aim was to compare the results of laboratory and model outputs of interactions of nZVI with various species in created systems. Experiments and modeling using the Geochemist's Workbench compare immobilization effects on aluminum concentration caused by hydroxide and nZVI addition and also estimate the interactions of nZVI with different salts under various conditions of the surveyed system. Another major objective was the assessment of the impact of atmospheric processes in the reaction system. (en)
Title
  • Interaction Modelling of Iron Nanoparticles in Water Environment using The Geochemist
  • Interaction Modelling of Iron Nanoparticles in Water Environment using The Geochemist (en)
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  • Interaction Modelling of Iron Nanoparticles in Water Environment using The Geochemist
  • Interaction Modelling of Iron Nanoparticles in Water Environment using The Geochemist (en)
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  • RIV/46747885:24220/10:#0001589!RIV11-MSM-24220___
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  • P(1M0554)
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  • 264374
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  • RIV/46747885:24220/10:#0001589
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  • nanočástice železe, sanace, modelování (en)
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  • [A22F78F35A7B]
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  • Inovativní sanační technologie ve výzkumu a praxi III.
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  • Černík, Miroslav
  • Pluhař, Tomáš
  • Baarová, Hana
  • Klímková, Štěpánka
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  • Vodní zdroje Ekomonitor
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  • 978-80-86832-53-1
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  • 24220
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