JOURNAL ARTICLE

Removal of uranium(vi) from aqueous solution using iminodiacetic acid derivative functionalized SBA-15 as adsorbents

Yulong WangLijuan SongLu ZhuBo-Long GuoSuwen ChenWangsuo Wu

Year: 2013 Journal:   Dalton Transactions Vol: 43 (9)Pages: 3739-3739   Publisher: Royal Society of Chemistry

Abstract

Three different functional SBA-15 were prepared by a post-grafting method using three iminodiacetic acid derivatives of ethylenediaminetriacetic acid (ED3A), diethylenetriaminetetraacetic acid (DT4A), and 1,2-cyclohexylenedinitrilotriacetic acid (CyD3A), which were used as adsorbents for removal of uranium(vi) from aqueous solution. These materials were characterized by FT-IR, NMR, TEM, nitrogen adsorption/desorption experiments, and elemental analysis. The effect of pH, ionic strength, contact time, solid-liquid ratio, initial metal ion concentration, temperature, and coexisting ions on uranium(vi) sorption behaviors of the functionalized SBA-15 was studied. Typical sorption isotherms (Langmuir and Freundlich) were determined for the sorption process, and the maximum sorption capacity was calculated. The influence of functional groups on uranium(vi) sorption was also discussed. As a result, compared with other current U(vi) sorbents (granite, kaolin, attapulgite), SBA-15-1,2-cyclohexylenedinitrilotriacetic acid (SBA-15-CyD3A) possessed good selective sorption properties, which had potential application in separation of uranium(vi).

Keywords:
Sorption Iminodiacetic acid Uranium Adsorption Aqueous solution Chemistry Desorption Langmuir Uranyl Nuclear chemistry Freundlich equation Ionic strength Inorganic chemistry Langmuir adsorption model Metal ions in aqueous solution Ion exchange Metal Materials science Ion Organic chemistry Chelation Metallurgy

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74
Cited By
2.96
FWCI (Field Weighted Citation Impact)
58
Refs
0.92
Citation Normalized Percentile
Is in top 1%
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Citation History

Topics

Radioactive element chemistry and processing
Physical Sciences →  Chemistry →  Inorganic Chemistry
Chemical Synthesis and Characterization
Physical Sciences →  Environmental Science →  Industrial and Manufacturing Engineering
Extraction and Separation Processes
Physical Sciences →  Engineering →  Mechanical Engineering

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