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HERO ID
4244107
Reference Type
Journal Article
Title
Arsenic(V) removal using an amine-doped acrylic ion exchange fiber: Kinetic, equilibrium, and regeneration studies
Author(s)
Lee, CG; Alvarez, PJJ; Nam, A; Park, SJ; Do, T; Choi, US; Lee, SH
Year
2017
Is Peer Reviewed?
Yes
Journal
Journal of Hazardous Materials
ISSN:
0304-3894
EISSN:
1873-3336
Volume
325
Page Numbers
223-229
Language
English
PMID
27940111
DOI
10.1016/j.jhazmat.2016.12.003
Web of Science Id
WOS:000392165700022
Abstract
This study investigates As(V) removal from aqueous solutions using a novel amine-doped acrylic ion exchange fiber. The amine doping reaction was confirmed using FT-IR, and the surface of the fiber was characterized using FEG-SEM. The synthesis process was completed within 60min using an AlCl3·6H2O catalyst at 100°C, and the resulting in a fiber with an ion exchange capacity of 7.5meq/g. The removal efficiency of the A-60 fiber was affected by the solution pH, and the efficiency was optimum at pH 3.04. As(V) adsorption on the fiber was rapid in the first 20min and reached equilibrium in 60min. As(V) removal followed pseudo-first-order kinetics, and the Redlich-Peterson adsorption isotherm model provided the best fit of the equilibrium data. The fiber has an As(V) adsorption capacity (qe) of 205.32±3.57mg/g, which is considerably higher than literature values and commercial adsorbents. The removal efficiency of the fiber was above 83% of the initial value after nine regeneration cycles.
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•
Inorganic Arsenic (7440-38-2) [Final 2025]
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2.5 Update 2015-2019: Title & Abstract Screening
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