The application of Fe–Mn hydrous oxides based adsorbent for removing selenium species from water
Publication date
2013
Authors
Szlachta, M.
Chubar, N.
Editors
Advisors
Supervisors
Document Type
Article
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(c) UU Universiteit Utrecht, 2013
Abstract
In this study, the adsorptive removal of selenium(IV) and selenium(VI) from water by a newly developed
ion exchange adsorbent, based on Fe(III) and Mn(III) hydrous oxides, was examined. This study was conducted
to determine the influence of various operating parameters, such as initial anion concentration,
contact time, adsorbent dose, pH, solution temperature, and the presence of competitive anions, on the
treatment performance. The high Se(IV) adsorptive capacity of the adsorbent (up to 41.02 mg/g at pH 4)
was due to its high affinity for selenite, as reflected in the fast rate of uptake (batch studies) and an efficient
long-term removal (column experiments). Although adsorption of anions traditionally decreases as pH
increases, the mixed adsorbent was capable of purifying large volumes of Se(IV)-containing water (at
pH 7) to reach concentrations lower than 10 lg/L, which meets the European Commission standards.
The presence of sulphate and carbonate did not influence Se(IV) adsorption. However, high phosphate
and silicate concentrations may have decreased the removal efficiency of Se(IV). Data from the batch
and column adsorption experiments were fitted with a number of approved models, which revealed the
adsorption mechanism and allowed for a comparison of the results.
Keywords
Adsorption, Water treatment, Fe–Mn hydrous oxide, Selenate, Selenite