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Modified Exfoliated Carbon Nanoplatelets as Sorbents for Ammonium from Natural Mineral Waters
by
Ion, Alina Catrinel
, Mincu, Monica Maria
, Bogdan, Daniela
, Ion, Ion
in
Acids
/ Activated carbon
/ Adsorption
/ carbon nanomaterials
/ Graphite
/ Nanomaterials
/ natural waters
/ Nitrogen
/ nitrogen species
/ Oxidation
/ Photocatalysis
/ Reagents
/ Scanning electron microscopy
/ Sorbents
/ Thermogravimetric analysis
2021
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Modified Exfoliated Carbon Nanoplatelets as Sorbents for Ammonium from Natural Mineral Waters
by
Ion, Alina Catrinel
, Mincu, Monica Maria
, Bogdan, Daniela
, Ion, Ion
in
Acids
/ Activated carbon
/ Adsorption
/ carbon nanomaterials
/ Graphite
/ Nanomaterials
/ natural waters
/ Nitrogen
/ nitrogen species
/ Oxidation
/ Photocatalysis
/ Reagents
/ Scanning electron microscopy
/ Sorbents
/ Thermogravimetric analysis
2021
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Do you wish to request the book?
Modified Exfoliated Carbon Nanoplatelets as Sorbents for Ammonium from Natural Mineral Waters
by
Ion, Alina Catrinel
, Mincu, Monica Maria
, Bogdan, Daniela
, Ion, Ion
in
Acids
/ Activated carbon
/ Adsorption
/ carbon nanomaterials
/ Graphite
/ Nanomaterials
/ natural waters
/ Nitrogen
/ nitrogen species
/ Oxidation
/ Photocatalysis
/ Reagents
/ Scanning electron microscopy
/ Sorbents
/ Thermogravimetric analysis
2021
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Modified Exfoliated Carbon Nanoplatelets as Sorbents for Ammonium from Natural Mineral Waters
Journal Article
Modified Exfoliated Carbon Nanoplatelets as Sorbents for Ammonium from Natural Mineral Waters
2021
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Overview
In this manuscript an improved sorbent based on modified exfoliated carbon nanoplatelets, applied in the removal of ammonium from aqueous samples, is presented. This sorbent showed better efficiency in comparison with the previous one obtained in our group for ammonium removal, the values of the maximum sorption capacity being improved from 10 to 12.04 mg/g. In terms of kinetics and sorption characteristic parameters, their values were also improved. Based on these results, a sorption mechanism was proposed, taking into account ion-exchange and chemisorption processes at the surface of the oxidized exfoliated carbon nanoplatelets. Future applications for simultaneous removal of other positive charged contaminants from natural waters might be possible.
Publisher
MDPI AG,MDPI
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