Continuous fixed-bed column studies of arsenite removal via oxidation and adsorption coprocesses

被引:8
作者
Khamdahsag, Pummarin [1 ,2 ,3 ]
Yan, Dickson Y. S. [4 ]
Poompang, Pongnapa [5 ]
Supannafai, Nichapa [6 ]
Tanboonchuy, Visanu [2 ,7 ]
机构
[1] Chulalongkorn Univ, Environm Res Inst, Bangkok 10330, Thailand
[2] Chulalongkorn Univ, Ctr Excellence Hazardous Substance Management HSM, Bangkok 10330, Thailand
[3] Thammasat Univ, Ctr Excellence Environm Catalysis & Adsorpt, Fac Engn, Pathum Thani 12121, Thailand
[4] Technol & Higher Educ Inst Hong Kong, Fac Sci & Technol, Hong Kong, Peoples R China
[5] Khon Kaen Univ, Dept Environm Engn, Fac Engn, Khon Kaen 40002, Thailand
[6] Chulalongkorn Univ, Grad Sch, Interdisciplinary Program Environm Sci, Bangkok 10330, Thailand
[7] Khon Kaen Univ, Res Ctr Environm & Hazardous Substance Management, Khon Kaen 40002, Thailand
关键词
Arsenic; Arsenite; Adsorption; Oxidation; Fixed-bed column; ACTIVATED CARBON; IRON-OXIDE; WATER; FE; PERFORMANCE; AS(III); SEPARATION; MECHANISM;
D O I
10.1016/j.jwpe.2021.102176
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Arsenite (As(III)) was removed via oxidation and adsorption coprocesses in fixed-bed columns. A manganese oxide octahedral molecular sieve (K-OMS2) and iron(III) trimesate (Fe-BTC) were applied as oxidizer and adsorbent, respectively. Before use in the column, K-OMS2 and Fe-BTC powders were coated on ceramic balls, with K-OMS2 and Fe-BTC to ceramic ball ratios of 1 to 50. The As(III) and arsenate (As(V)) removal efficiencies for single fixed-bed columns of K-OMS2 and Fe-BTC, respectively, as well as for the two columns combined, were determined. From the single-column run results, K-OMS2 maintained notable efficiency in oxidizing As(III) to As (V) during a three-round-use cycle, with leached Mn and K concentrations below the groundwater standard. The average As(III) oxidation percentages in K-OMS2 column for 600 min in the 1st, 2nd, and 3rd rounds were 95, 92, and 93%, respectively. In the Fe-BTC single-column run, the Yoon-Nelson model was found to represent the adsorption kinetics model of the run, with a maximum As(V) adsorption capacity of 52.60 mg/g, and more than 75% of As(V) was removed for 600 min. Maximum Fe leaching from Fe-BTC column was 0.23 mg/L, which was lower than Fe concentration range found in natural freshwater. The adsorption behavior can be explained by the fact that the adsorption rate decreased depending on the As(V) breakthrough and Fe-BTC proportion. In the case of two columns combined, more than 62% of the total As was removed over 2200 min of operation time under optimal experimental conditions.
引用
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页数:11
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