PHOTOCHEMICAL DECOMPOSITION OF OXALIC, GLYOXALIC AND PYRUVIC-ACID CATALYZED BY IRON IN ATMOSPHERIC WATERS

被引:151
作者
ZUO, YG [1 ]
HOIGNE, J [1 ]
机构
[1] ETHZ,EAWAG,CH-8600 DUBENDORF,SWITZERLAND
关键词
CLOUD CHEMISTRY; GLYOXYLIC ACID; IRON COMPLEXES; OXALIC ACID; PHOTOCHEMISTRY; PYRUVIC ACID; TROPOSPHERIC CHEMISTRY;
D O I
10.1016/1352-2310(94)90270-4
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Kinetics of the iron(III) catalysed photochemical degradation of oxalic, glyoxalic and pyruvic acids has been investigated under conditions representative of atmospheric waters. Degradation rates for the organic acids are proportional to the concentration of iron (III)-substrate complexes and sunlight intensity. Under September noon sunlight irradiation (0.65 m Einstein m-2 s-1), 1 muM dissolved iron(III) has a potential to catalyse the degradation of oxalic acid at a rate of 10 +/- 1 nM s-1; of glyoxalic acid, 7 +/- 1 nM s-1; and of pyruvic acid, 8 +/- 1 nM s-1. The half life for the photolysis of oxalic acid and alpha-keto acids catalysed by iron(III) is in the order of a few minutes whenever the concentration of dissolved iron(III) is comparable to that of the organic acids. A detailed reaction mechanism has been proposed in which the complex formation between iron(III) and the substrate is a key step. The evidence, that such an iron(III) catalysed photochemical process serves as a major removal pathway for atmospheric oxalic and alpha-keto acids, has also been discussed.
引用
收藏
页码:1231 / 1239
页数:9
相关论文
共 42 条
[1]   BIOMASS-BURNING EMISSIONS AND ASSOCIATED HAZE LAYERS OVER AMAZONIA [J].
ANDREAE, MO ;
BROWELL, EV ;
GARSTANG, M ;
GREGORY, GL ;
HARRISS, RC ;
HILL, GF ;
JACOB, DJ ;
PEREIRA, MC ;
SACHSE, GW ;
SETZER, AW ;
DIAS, PLS ;
TALBOT, RW ;
TORRES, AL ;
WOFSY, SC .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1988, 93 (D2) :1509-1527
[2]   PHOTOMETRIC-METHOD FOR THE DETERMINATION OF LOW CONCENTRATIONS OF HYDROGEN-PEROXIDE BY THE PEROXIDASE CATALYZED OXIDATION OF N,N-DIETHYL-P-PHENYLENEDIAMINE (DPD) [J].
BADER, H ;
STURZENEGGER, V ;
HOIGNE, J .
WATER RESEARCH, 1988, 22 (09) :1109-1115
[3]   DETERMINATION OF MONO-VALENT AND DIVALENT-CATIONS AND ANIONS IN SMALL FOG SAMPLES BY ION CHROMATOGRAPHY [J].
BALTENSPERGER, U ;
KERN, S .
JOURNAL OF CHROMATOGRAPHY, 1988, 439 (01) :121-127
[4]   THE PHOTOREDUCTION OF SOME FERRIC COMPOUNDS IN AQUEOUS SOLUTION [J].
BAXENDALE, JH ;
BRIDGE, NK .
JOURNAL OF PHYSICAL CHEMISTRY, 1955, 59 (08) :783-788
[5]   EVIDENCE FOR REDOX CYCLING OF IRON IN ATMOSPHERIC WATER DROPLETS [J].
BEHRA, P ;
SIGG, L .
NATURE, 1990, 344 (6265) :419-421
[6]   OUTER SPHERE OXIDATIONS OF ALCOHOLS AND FORMIC-ACID BY CHARGE-TRANSFER EXCITED-STATES OF IRON(III) SPECIES [J].
CAREY, JH ;
LANGFORD, CH .
CANADIAN JOURNAL OF CHEMISTRY-REVUE CANADIENNE DE CHIMIE, 1975, 53 (16) :2436-2440
[7]   AQUEOUS-PHASE PHOTOCHEMICAL FORMATION OF HYDROXYL RADICAL IN AUTHENTIC CLOUDWATERS AND FOGWATERS [J].
FAUST, BC ;
ALLEN, JM .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1993, 27 (06) :1221-1224
[8]   PHOTOCHEMICAL TRANSFORMATION IN AQUEOUS-SOLUTION AND POSSIBLE ENVIRONMENTAL FATE OF ETHYLENEDIAMINETETRAACETIC ACID (EDTA) [J].
FRANK, R ;
RAU, H .
ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 1990, 19 (01) :55-63
[9]   KINETIC-MODEL STUDIES OF ATMOSPHERIC DROPLET CHEMISTRY .2. HOMOGENEOUS TRANSITION-METAL CHEMISTRY IN RAINDROPS [J].
GRAEDEL, TE ;
MANDICH, ML ;
WESCHLER, CJ .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1986, 91 (D4) :5205-5221
[10]   ATMOSPHERIC REACTIONS OF PYRUVIC-ACID [J].
GROSJEAN, D .
ATMOSPHERIC ENVIRONMENT, 1983, 17 (11) :2379-2382