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Fixed bed adsorption of As(III) on iron-oxide-coated natural rock (IOCNR) and application to real arsenic-bearing groundwater

Authors :
Maji, Sanjoy Kumar
Kao, Yu-Hsuan
Wang, Chin-Jen
Lu, Guang-Sin
Wu, Jia-Jing
Liu, Chen-Wuing
Source :
Chemical Engineering Journal. Sep2012, Vol. 203, p285-293. 9p.
Publication Year :
2012

Abstract

Abstract: This study examines the efficiency of the fixed-bed adsorption of As(III) on iron-oxide-coated natural rock (IOCNR) in a contaminated aquatic environment. We considered a column with a diameter of 2-cm and varying bed depths, including 10cm, 15cm, and 20cm. The breakthrough (C/Co =0.016) times were 31.0h, 49.0h, and 63.0h, and the exhaust (C/Co =0.90) times were 60.0h, 90.0h, and 110.0h, with an up-flow rate of 8mL/min, respectively. The volume of the contaminated water treated at the breakthrough points was 14.88L, 23.52L, and 30.24L, and at the exhaust points 28.80L, 43.20L, and 52.80L, respectively when As(III) concentration was 0.6mg/L. The columns were designed using the logit method to evaluate the adsorption rate (K) and column efficiency (N). The 10-cm exhaust bed was regenerated with 4% NaOH, and its performance was evaluated. This study proposes an in situ two-step mechanism, oxidation of As(III) to As(V), and subsequent adsorption on IOCNR. A column (10cm) performance of real arsenic-bearing groundwater was evaluated. Results indicate that the treated effluent water quality is suitable for domestic use. Moreover, the experimental results agreed well with the geochemical modeling using computer program PHREEQC. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
13858947
Volume :
203
Database :
Academic Search Index
Journal :
Chemical Engineering Journal
Publication Type :
Academic Journal
Accession number :
79655004
Full Text :
https://doi.org/10.1016/j.cej.2012.07.033