Photocatalytic reduction - recovery of silver using polyoxometalates

被引:62
作者
Troupis, A
Hiskia, A
Papaconstantinou, E [1 ]
机构
[1] NCSR Demokritos, Inst Phys Chem, Athens 15310, Greece
[2] NTU, Dept Chem Engn, Athens 15780, Greece
关键词
polyoxometalates; photocatalysis; silver recovery; AQUEOUS-SOLUTIONS; ORGANIC-COMPOUNDS; COLLOIDAL SILVER; METAL-IONS; OXIDATION; MECHANISM; HETEROPOLYTUNGSTATES; DECOMPOSITION; DEGRADATION; DEPOSITION;
D O I
10.1016/S0926-3373(02)00264-3
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Recovery of silver ions from aqueous solutions can be obtained through a homogeneous photocatalytic process that involves addition of a polyoxometalate (POM) (POM = PW12O403-, SiW12O404- or P2Mo18O626-) organic substrate, for instance propan-2-ol, and illumination with near-visible and UV-light. The process is effective for a wide range of Ag+ concentration, varying from about 3 to more than 1300 ppm. Prolonged irradiation leads to complete removal of silver up to non detected traces (<0.2 ppm). Silver removal follows thermodynamics, i.e. it depends on the redox potential difference of the photochemically reduced POM and Ag+ in the thermal reaction [POM(e(-)) + Ag+ --> POM + Ag]. Air oxygen has no effect on the rate of silver recovery. On the contrary, thiosulfate complexes Ag+, lowers the redox potential and hinders the reduction and precipitation of silver. Unlike TiO2 particulates, POM anions are not contaminated by the precipitated silver retaining their ability to remove large quantities of pure metal. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:305 / 315
页数:11
相关论文
共 26 条
[1]   REDUCTION OF NITROAROMATIC COMPOUNDS BY PHOTO-REDUCED HETEROPOLYTUNGSTATES [J].
AMADELLI, R ;
VARANI, G ;
MALDOTTI, A ;
CARASSITI, V .
JOURNAL OF MOLECULAR CATALYSIS, 1990, 59 (03) :L9-L14
[2]   Light induced elimination of mono-and polychlorinated phenols from aqueous solutions by PW12O403-. The case of 2.4.6-trichlorophenol [J].
Androulaki, E ;
Hiskia, A ;
Dimotikali, D ;
Minero, C ;
Calza, P ;
Pelizzetti, E ;
Papaconstantinou, E .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2000, 34 (10) :2024-2028
[3]   Photoelectrochemical cell for the combined photocatalytic oxidation of organic pollutants and the recovery of metals from waste waters [J].
Byrne, JA ;
Eggins, BR ;
Byers, W ;
Brown, NMD .
APPLIED CATALYSIS B-ENVIRONMENTAL, 1999, 20 (02) :L85-L89
[4]  
COOLEY AC, 1993, J IMAGING SCI TECHN, V37, P374
[5]   Catalysis by heteropoly compounds .33. Photocatalyzed decomposition of 4-chlorophenol by Keggin-type heteropolytungstate [J].
Einaga, H ;
Misono, M .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1997, 70 (07) :1551-1557
[6]  
HADA H, 1976, J PHYS CHEM-US, V80, P2728, DOI 10.1021/j100566a003
[7]   Colloidal silver nanoparticles:: Photochemical preparation and interaction with O2, CCl4, and some metal ions [J].
Henglein, A .
CHEMISTRY OF MATERIALS, 1998, 10 (01) :444-450
[8]   REACTIONS OF ORGANIC FREE-RADICALS AT COLLOIDAL SILVER IN AQUEOUS-SOLUTION - ELECTRON POOL EFFECT AND WATER DECOMPOSITION [J].
HENGLEIN, A .
JOURNAL OF PHYSICAL CHEMISTRY, 1979, 83 (17) :2209-2216
[9]   PHOTOCATALYTIC DEPOSITION OF SILVER ON POWDER TITANIA - CONSEQUENCES FOR THE RECOVERY OF SILVER [J].
HERRMANN, JM ;
DISDIER, J ;
PICHAT, P .
JOURNAL OF CATALYSIS, 1988, 113 (01) :72-81
[10]   Comparison of the photoredox properties of polyoxometallates and semiconducting particles [J].
Hiskia, A ;
Mylonas, A ;
Papaconstantinou, E .
CHEMICAL SOCIETY REVIEWS, 2001, 30 (01) :62-69