Browse > Article

Adsorption Characteristics of Malachite Green Employing Waste Garnet as Adsorbent  

Baek, Mi-Hwa (Department of Environmental Science and Engineering, Ewha Womans University)
Kim, Dong-Su (Department of Environmental Science and Engineering, Ewha Womans University)
Publication Information
Abstract
The adsorption characteristics of malachite green on waste garnet have been investigated for its treatment from aqueous solution by employing waste garnet which is generated from the abrasive production process as an adsorbent. The influential factors examined were the initial concentration of malachite green in solution, reaction temperature, and the amount of adsorbent. Also, the effect of the modification of the surface of adsorbent on adsorption was examined. As the initial malachite green was increased with reaction temperature and the color removal of malachite green-containing solution was promoted with the amount of adsorbent. Finaly, increased adsorption of malachite green could be attained when the surface of glass was modified by hexamethyldisilazane.
Keywords
Adsorption; Malachite green; Waste garnet; Wastewater;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Tahir. S. S. and Rauf, Naseem, Removal of a Cationie Dye from Aqueous Aolutions by Adsorption onto Bentonite Clay. Chemosphere, 63, pp. 1842-1848 (2006)   DOI   ScienceOn
2 Kirk-Othmer, Encyclopedia of Chemical Technology. Wiley-Interscience, 1. pp. 26-52 (1978)
3 Srivastava. S., Sinha. R. and Roy, D., Toxieological Effects of Malachite Green. Aquatic Toxicology, 66, pp. 319-329 (2004)   DOI   ScienceOn
4 Reidv, R.. Gorman. B. P.. Orozco-Teran, R. A., Zhang, Z. and Mueller. D. W.. Effects of Supercritical Processing on Ultra Low-k Films, Proceedings of the Advanced Metallization Conference, Materials Research Society, Fds. Melnick, Cale, Zaima. Ohta, pp. 602 (2002)
5 Blackburn, W. H. and Dennen, W. H.. Principles of Mineralogy, 2nd Ed., WCB Publisher, pp. 357-358 (1994)
6 Mittal, A., Adsorption Kinetics of Removal of a Toxic Dye, Malachite Green, from Wastewater by using Hlen Feathers. Journal of Hazardous Materials, B133, pp. 196-202 (2006)
7 Sparks, D. L., Environmental Soil Chemistry, Academic Press p. 42 (1995)
8 이상직, 김종대, 최재환, 한성욱, Malachite Green 유도체의 합성과 항균성에 관한 연구, 한국생화학회지, 24, pp. 343-347 (1991)
9 Gong. R., Jin, Y.. Chen, 1'.. Chen, J. and Liu. Z., Enhanced Malachite Green Removal from Aqueous Solution by Citric-Acid Modified Rice Straw. Journal of Hazardous Materials. 137, pp. 865-870 (2006)   DOI   ScienceOn
10 허강준, 김원규, 김윤배, 박세창, 박재학, Malachite Green의 구피(Poecilia relicu!alus)에 대한 급성 및 아급성 독성, Lab. Anim. Res., 21, pp. 229-233 (2005)
11 최동미, 홍순근, 임무혁, 정지윤, 장문익, 박건상, 홍무기, 우건조 수산식품 중 말라카이트그런 및 류코말라카이트 그린의 분석. 한국분석과학회지, 19, pp. 142-148 (2006)
12 Carter, M. C, Weber. W. J. and Olmstead. K. P.. Fffects of Background Dissovled Oragnic Matter on ICL Adsorption by GAC. J. AWWA. 84, pp. 81-91 (1992)   DOI
13 Onganer, Y. and Temur, C, Adsorption Dynamics of Le(III) from Aqueous Solution onto Activated Carbon, J. Colloid Interface Sci., 205. pp. 241-244 (1998)   DOI   ScienceOn
14 Schnick. R. A., The Impetus to Register New Therapeutants for Aquaculturc. Prog. Fish Cult.. 50, pp. 190-196 (1988)   DOI
15 Culp, S. J. and Beland. F. A., Malachite Green; a Toci-cological Review., J. Am. Coll. Toxicol., 15, pp. 219-238 (1996)   DOI
16 노승백, 안원술, 임미애, 접촉각 측정에 의한 분체 PMMA에 대한 수용액의 흡착 특성과 임계표면장력 예측, 폴리머, 21, pp. 103-111 (1997)
17 Ahn, D. H., Chang, W. S. and Yoon, T. I., Dyestuff Wastewater Treatment using Chemical Oxidation, Physical Adsorption. Process Biochem., 34, pp. 429-439 (1999)   DOI   ScienceOn
18 Chen, C. C, Photooxidative N-de-methylation of Crystal Violet Dye in Aqueous Nano-$TiO_2$ Dispersions under Visible Light Irradiation, Journal Photochemistry and Photohiology A: Chemistry, 184, pp. 147-154 (2006)   DOI   ScienceOn