MODELING OF EXTRACTION EQUILIBRIUM FOR COPPER(II) EXTRACTION BY PYRIDINECARBOXYLIC ACID-ESTERS FROM CONCENTRATED CHLORIDE SOLUTIONS AT CONSTANT WATER ACTIVITY AND CONSTANT TOTAL CONCENTRATION OF IONIC OR MOLECULAR-SPECIES DISSOLVED IN THE AQUEOUS-SOLUTION

被引:71
作者
COTE, G
JAKUBIAK, A
BAUER, D
SZYMANOWSKI, J
MOKILI, B
POITRENAUD, C
机构
[1] POZNAN TECH UNIV,INST CHEM TECHNOL & ENGN,PL-60965 POZNAN,POLAND
[2] CTR ETUD SACLAY,INSTN,ENSEIGNEMENTS CHIM SECT,F-91191 GIF SUR YVETTE,FRANCE
关键词
D O I
10.1080/07366299408918202
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The extraction of copper(II) from concentrated chloride ion solutions by various pyridinecarboxylic acid esters is investigated. It is shown that the efficiency of the extraction is strongly dependent on the water activity (a(w))total concentration (a) of ionic or molecular species dissolved in the aqueous phase. For decyl nicotinate, decyl isonicotinate, decyl picolinate and ACORGA CLX-50 (all denoted EXT) in toluene, the distribution of copper(II) can be satisfactorily represented by the formation of CuCl2(EXT)(2) in the organic phase on the condition of taking into account the existence of CuClx(2-x) complexes (x=1 to 4) in the aqueous phase. The apparent extraction constant K-ex and stability constants beta i of the various CuClx(2-X) complexes are estimated for two aqueous media corresponding to aw = 0.835 and sigma = 8.0 mol.L(-1), and a(w) = 0.617 and sigma = 12.0 mol.L(-1), respectively. On the other hand, in the case of ACORGA CLX-50 in kerosene, more complex phenomena influencing the activity coefficient of the extractant seem to occur.
引用
收藏
页码:99 / 120
页数:22
相关论文
共 37 条
[1]   WEAK CHLORO COMPLEX-FORMATION BY COPPER(II) IN AQUEOUS CHLORIDE SOLUTIONS [J].
BJERRUM, J ;
SKIBSTED, LH .
INORGANIC CHEMISTRY, 1986, 25 (14) :2479-2481
[2]   DETERMINATION OF SMALL STABILITY-CONSTANTS - A SPECTROPHOTOMETRIC STUDY OF COPPER(II) CHLORIDE COMPLEXES IN HYDROCHLORIC-ACID [J].
BJERRUM, J .
ACTA CHEMICA SCANDINAVICA SERIES A-PHYSICAL AND INORGANIC CHEMISTRY, 1987, 41 (06) :328-334
[3]  
CHEKMAREV AM, 1980, P INT SOLVENT EXTR C
[4]  
DALTON RF, 1991, JOM-J MIN MET MAT S, V43, P51
[5]  
DALTON RF, 1983, P ISEC 83 DENVER, P189
[6]  
DALTON RF, 1982, Patent No. 57797
[7]  
DALTON RF, 1992, SOLVENT EXTRACTION 1, P1145
[8]  
DANNUS P, 1991, THESIS U P M CURIE P
[9]   LASER RAMAN STUDY OF AQUEOUS COPPER NITRATE SOLUTIONS [J].
DAVIS, AR ;
CHONG, C .
INORGANIC CHEMISTRY, 1972, 11 (08) :1891-&
[10]  
FROLOV YG, 1973, SOV ATOM ENERGY, V35, P731