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http://dx.doi.org/10.4191/KCERS.2011.48.3.222

Mechanism of Removal of Cr(VI) Ions from Solution by Borosilicate Glasses Containing Alkaline Earth Oxides  

Back, Il-Hee (Department of Materials Science and Engineering, Inha University)
Lim, Hyung-Bong (Department of Materials Science and Engineering, Inha University)
Kim, Cheol-Young (Department of Materials Science and Engineering, Inha University)
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Abstract
The hexavalent chromium ions in wastewater are highly toxic chemicals even at low concentrations. It causes serious diseases, such as cancer, skin disease, digestive trouble et. al. In this study, $Cr^{6+}$ ions were removed by using borosilicate glasses. Various glasses system with different compositions were prepared and then reacted in a solution contaning $Cr^{6+}$ ions. After the reaction, the concentration of the $Cr^{6+}$ ions remained in the solution was measured by ICP-OES. The reacted surface of the glasses was also analyzed by using a XRD, SEM, and EDS. When $Na_2O-RO-SiO_2-B_2O_3$ (RO=MgO, CaO, SrO, BaO) glasses were reacted with a solution containing $Cr^{6+}$ ions, the optimum removal efficiency of $Cr^{6+}$ ions was observed in the BaO glass. $Ba^{2+}$ ions leached out of these glasses combine with $Cr^{6+}$ ions in a solution to form $BaCrO_4$ crystals on the glass surface. In this manner, the $Cr^{6+}$ ions can be removed from the solution. It is conceivable that $Ba^{2+}$ ions are reacted with $Cr^{6+}$ ions in a solution immedeately after leaching out of the glasses. The pH of the solution for optimum removal of $Cr^{6+}$ ions were 3.0~5.0.
Keywords
Hexavalent chromium; Wastewater; Borosilicate glass; Removal Efficiency; Leaching;
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1 K. K. Singh, S. H. Hasanb, M. Talat b, V. K. Singhc, and S. K. Gangwarc, “Removal of Cr (VI) from Aqueous Solutions using Wheat Bran,” Chem. Eng. J., 151 113-21 (2009).   DOI
2 C. Y. Kim, H. J. Kim, and J. S. Nam, “Removal of Lead Ions from Solution by Phosphosilicate Glass,” J. Hazard. Mater., 153 [1-2] 173-78 (2008).   DOI
3 J. S. Nam and C. Y. Kim, “Phosphate Ion Removal from a Solution by Soda-lime Borosilicate Glass,” J. Non-Cryst. Solids, 354 [45-46] 5009-13 (2008).   DOI
4 J.-S. Nam, I.-H. Baek, and C. Y. Kim, “Removal of Calcium Ions from Aqueous Solution by Phosphosilicate Glass,” J. Am. Ceram. Soc., 94 [1] 124-29 (2011).   DOI
5 H. Faghihian and Robert S. Bowman, “Adsorption of Chromate by Clinoptilolite Exchangedwith Various Metal Cations,” Water Research, 39 1099-104 (2005).   DOI
6 M. B. Volf, “Chemical Approach to Glass,” pp. 497-507, Elsevier, New York, 1984.
7 Viviane A. Spinelli, Mauro C. M. Laranjeira, and Valfredo T. Favere, “Preparation and Characterization of Quaternary Chitosan Salt: Adsorption Equilibrium of Chromium(VI) ion,” Reactive & Functional Polymers, 61 347-52 (2004).   DOI
8 Saroj S. Baral, Surendra N. Das, Pradip Rath, and Gautam R. Chaudhury, “Chromium(VI) Removal by Calcined Bauxite,” Biochem. Eng. J., 34 69-75 (2007).   DOI
9 Philip Cole and Brad Rodu, “Epidemiologic Studies of Chrome and Cancer Mortality : A Series of Meta-analyses,” Regulatory Toxicology and Pharmacology, 43 225-31 (2005).   DOI
10 T. H. Won, H. D. Kim, P. S. Seo, N. H. Yoon, and S. D. Park,“Short Report : An Occupational Chrome Ulcer,” Kor. J. Dermatol., 45 [5] 524-27 (2007).
11 Erhan Demirbas, Mehmet Kobya, Elif Senturk, and Tuncay Ozkan, “Adsorption Kinetics for the Removal of Chromium (VI) from Aqueous Solutions on the Activated Carbons Prepared from Agricultural Wastes,” Water SA, 30 [4] 533-39(2004).
12 M. Nameni, M. R. Alavi Moghadam, and M. Arami, “Adsorption of Hexavalent Chromium from Aqueous Solutions by Wheat Bran,” Int. J. Environ. Sci. Tech., 5 [2] 161-68 (2008).   DOI
13 L. V. A. Gurgel, J. C. P. de Melo, J. C. de Lena, and L. F. Gil, “Adsorption of Chromium (VI) Ion from Aqueous Solution by Succinylated Mercerized Cellulose Functionalized with Quaternary Ammonium Groups,” Bioresource Technolo., 100 3214-20 (2009).   DOI
14 C. Y. Kim, A. E. Clark, and L. L. Hench, “Early Stages of Calcium-phosphate Layer Formation in Bioglasses,” J. Non-Cryst. Solids, 113 [2-3] 195-202 (1989).   DOI
15 L. L. Hench, “Bioceramics : From Concept to Clinic,” J. Am. Ceram. Soc., 74 [7] 1487-510 (1991).   DOI
16 J. S. Nam and C. Y. Kim, “Effect of $B_2O_3$ on the Removal of Phosphate Ions from an Aqueous Solution in Borosilicate Glasses,” J. Hazard. Mater., 172 [2-3] 1013-20 (2009).   DOI