Radiotracer study of sorption of europium on Gorleben sand from aqueous solutions containing humic substances

被引:0
作者
P. Beneš
K. Štamberg
L. Široký
J. Mizera
机构
[1] Czech Technical University,Department of Nuclear Chemistry
来源
Journal of Radioanalytical and Nuclear Chemistry | 2002年 / 254卷
关键词
Aqueous Solution; Europium; Polyethylene; Ionic Strength; Leaching;
D O I
暂无
中图分类号
学科分类号
摘要
The sorption of trace europium, as a trivalent actinide homologue, was studied in the system Gorleben sand - aqueous solution with the aim to elucidate its mechanism. Radiotracer method (152/154Eu) and batch experiments were used. Simultaneously, the distribution of humic substances present in, or added to the system was measured. The evaluation of the sorption was complicated by the adsorption of Eu on the walls of polyethylene vials used for the experiments, which was rather high and had to be taken into consideration. It has been found that Eu sorption on Gorleben sand increases from pH 2 to pH 5-7 and then it decreases. The decrease is due to the complexation of Eu with humic substances leached from Gorleben sand at pH >7. The position of the sorption maximum depends on the composition of the solution and on the liquid-to-solid ratio. It is shifted to lower pH values in the presence of added humic acid (HA), which enhances Eu sorption at low pH values and suppresses it at pH values higher than 5. The regions of the enhancing/suppressing effects coincide with the high/low adsorption of HA on Gorleben sand, respectively. The increasing ionic strength (from 0.01 to 0.1) and europium concentration (3.4.10-8 to 9.3.10-7 mol/l) suppress the relative sorption (expressed in %) at low pH values and enhance it at pH>6-8. Addition of carbonates (5.10-3 mol/l) supports Eu sorption at pH>7.5 so that no decrease with pH is observed till pH 9. Alkaline leaching of the sand significantly changes most of the effects found. These results were qualitatively interpreted and conclusions were drawn on the mechanism of the sorption.
引用
收藏
页码:231 / 239
页数:8
相关论文
共 50 条
[1]   Sorption studies of europium on lead dioxide from aqueous solutions [J].
Ahmad, H ;
Hussain, ST ;
Hasany, SM ;
Saleem, M ;
Afzal, M .
JOURNAL OF TRACE AND MICROPROBE TECHNIQUES, 1997, 15 (03) :263-271
[2]   Removal of humic substances from aqueous solutions with a photocatalytic membrane reactor [J].
S. A. Tsarenko ;
V. M. Kochkodan ;
A. O. Samsoni-Todorov ;
V. V. Goncharuk .
Colloid Journal, 2006, 68 :341-344
[3]   Color removal from aqueous solutions of humic substances in the presence of Praestol and aluminum sulfate [J].
Kurenkov, VF ;
Snigirev, SV ;
Kogdanina, LS .
RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 2001, 74 (01) :86-89
[4]   Color Removal from Aqueous Solutions of Humic Substances in the Presence of Praestol and Aluminum Sulfate [J].
V. F. Kurenkov ;
S. V. Snigirev ;
L. S. Kogdanina .
Russian Journal of Applied Chemistry, 2001, 74 :86-89
[5]   Evaluation of sorption affinity of cadmium(II) on Haro river sand from aqueous solutions [J].
S. M. Hasany ;
M. H. Chaudhary .
Journal of Radioanalytical and Nuclear Chemistry, 2001, 247 :335-340
[6]   Comparative study on Th(IV) sorption on alumina and silica from aqueous solutions [J].
Weijuan L. ;
Zuyi T. .
Journal of Radioanalytical and Nuclear Chemistry, 2002, 254 (01) :187-192
[7]   Sorption of uranium from aqueous solutions with graphene oxide [J].
Wang, Chun Li ;
Li, Yan ;
Liu, Chun Li .
JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY, 2015, 304 (03) :1017-1025
[8]   Preparation and evaluation of cerium(IV) tungstate powder as inorganic exchanger in sorption of cobalt and europium ions from aqueous solutions [J].
El-Kamash, A. M. ;
El-Gammal, B. ;
El-Sayed, A. A. .
JOURNAL OF HAZARDOUS MATERIALS, 2007, 141 (03) :719-728
[9]   Sorption and possible preconcentration of europium and gadolinium ions from aqueous solutions by Mn3O4 nanoparticles [J].
Sayed, Moubarak A. ;
Helal, A. I. ;
Abdelwahab, S. M. ;
Mahmoud, H. H. ;
Aly, H. F. .
CHEMICAL PAPERS, 2020, 74 (02) :619-630
[10]   Sorption and possible preconcentration of europium and gadolinium ions from aqueous solutions by Mn3O4 nanoparticles [J].
Moubarak A. Sayed ;
A. I. Helal ;
S. M. Abdelwahab ;
H. H. Mahmoud ;
H. F. Aly .
Chemical Papers, 2020, 74 :619-630