Removal of cyanide from aqueous solutions by plain and metal-impregnated granular activated carbons

被引:72
作者
Deveci, H. [1 ]
Yazici, E. Y. [1 ]
Alp, I. [1 ]
Uslu, T. [1 ]
机构
[1] Karadeniz Tech Univ, Dept Mining Engn, Mineral Proc Div, TR-61080 Trabzon, Turkey
关键词
activated carbon; cyanide; effluent treatment; adsorption; environment;
D O I
10.1016/j.minpro.2006.03.002
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In this study, the removal of free cyanide from aqueous solutions by activated carbon was investigated. Effects of metal impregnation (Cu and Ag), aeration, and concentrations of adsorbent and cyanide on the rate and extent of the removal of cyanide were studied. The results have shown that the capacity of activated carbon for the removal of cyanide can be significantly improved (up to 6.3-fold) via impregnation of activated carbon with metals such as copper and silver. Silver-impregnated activated carbon was found to be the most effective at the reduction of cyanide level in solution. This appeared to be coupled with its comparatively high metal content after impregnation process where silver (5.07%) could be more readily loaded on activated carbon than copper (0.43%). Kinetics and equilibrium data for cyanide removal by plain and metal-impregnated activated carbons were determined to be consistent with the pseudo second-order kinetics and the Langmuir adsorption isotherms, respectively. Aeration (0.27 1/min) was found to exert a profound effect on the process leading to a 5.5-49.1% enhancement in the performances of plain and metal-impregnated activated carbons. This enhancement could be attributed to the increase in the availability of active sites on activated carbon for adsorption and the catalytic oxidising activity of activated carbon in the presence of oxygen. Practical limiting capacity of plain, copper- and silver-impregnated activated carbons for the removal of cyanide were experimentally determined to be 19.7, 22.4 and 29.6 mg/g, respectively. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:198 / 208
页数:11
相关论文
共 40 条
[1]   REMOVAL OF CYANIDE FROM SOLUTION USING ACTIVATED CARBON [J].
ADAMS, MD .
MINERALS ENGINEERING, 1994, 7 (09) :1165-1177
[2]   Removal of cyanide from aqueous solution using impregnated activated carbon [J].
Adhoum, N ;
Monser, L .
CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2002, 41 (01) :17-21
[3]   Catalytic oxidation of Fe(II) by activated carbon in the presence of oxygen.: Effect of the surface oxidation degree on the catalytic activity [J].
Ahumada, E ;
Lizama, H ;
Orellana, F ;
Suárez, C ;
Huidobro, A ;
Sepúlveda-Escribano, A ;
Rodríguez-Reinoso, F .
CARBON, 2002, 40 (15) :2827-2834
[4]   Microbial destruction of cyanide wastes in gold mining: process review [J].
Akcil, A ;
Mudder, T .
BIOTECHNOLOGY LETTERS, 2003, 25 (06) :445-450
[5]   Destruction of cyanide in gold mill effluents: biological versus chemical treatments [J].
Akcil, A .
BIOTECHNOLOGY ADVANCES, 2003, 21 (06) :501-511
[6]   First application of cyanidation process in Turkish gold mining and its environmental impacts [J].
Akcil, A .
MINERALS ENGINEERING, 2002, 15 (09) :695-699
[7]   Application of biosorption for the removal of organic pollutants: A review [J].
Aksu, Z .
PROCESS BIOCHEMISTRY, 2005, 40 (3-4) :997-1026
[8]   Equilibrium and kinetic modelling of biosorption of Remazol Black B by Rhizopus arrhizus in a batch system:: effect of temperature [J].
Aksu, Z ;
Tezer, S .
PROCESS BIOCHEMISTRY, 2000, 36 (05) :431-439
[9]  
BAILEY PR, 1987, EXTRACTIVE METALLURG, V1, P379
[10]  
BASKIN S, 2001, CYANIDE MONOGRAPH, P99