Laboratory oxygen isotopic study of sulfur (IV) oxidation: Origin of the mass-independent oxygen isotopic anomaly in atmospheric sulfates and sulfate mineral deposits on Earth

被引:120
作者
Savarino, J [1 ]
Lee, CCW [1 ]
Thiemens, MH [1 ]
机构
[1] Univ Calif San Diego, Dept Chem & Biochem, La Jolla, CA 92093 USA
关键词
D O I
10.1029/2000JD900456
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The oxygen isotopic composition (O-16, O-17, and O-18) Of sulfate formed from different oxidative reactions has been investigated. In the aqueous phase, sulfur oxidation by H2O2. O-3, and O-2, catalyzed by Fe(III) and Mn(ll) were studied. In the gas phase we have investigated the only relevant reaction for the atmosphere: SO2 + OH and its chain termination reaction SO3 + H2O. The results show that none of these reactions, gas or aqueous phase, produce a mass-independent oxygen isotopic composition in sulfate. Since H2O2 and O-3 are known to possess a mass-independent isotopic signature, we have investigated the possible transfer of this anomaly to sulfate. It appears that both these oxidant species transfer their anomaly. Isotopic analysis shows that two oxygen atoms from H2O2 are found in the product H2SO4. This result is in accord with previous work. For O-3 we found that only one of the original ozone oxygen transfers to the product sulfate. These isotopic results contradict the free radical reaction mechanism proposed by Penkett et al. [1979] but agree with the nonfree radical mechanism suggested by Erickson er al. [1977]. Therefore, it appears that only aqueous phase oxidation produces a mass-independent oxygen isotopic composition in sulfate. This finding is a response of the origin of the mass-independent oxygen isotopic composition of atmospheric and mineral deposits of sulfate on Earth [Bao et al., 2000; Lee, 1997]. Furthermore, this finding allows us to quantify the relative proportion of sulfate production by OH (gas phase formation) and by H2O2 and O-3 (aqueous phase formation). The results can be used to test atmospheric chemical/transport models.
引用
收藏
页码:29079 / 29088
页数:10
相关论文
共 44 条
[1]   Evaluated kinetic and photochemical data for atmospheric chemistry: Supplement VI - IUPAC subcommittee on gas kinetic data evaluation for atmospheric chemistry [J].
Atkinson, R ;
Baulch, DL ;
Cox, RA ;
Hampson, RF ;
Kerr, JA ;
Rossi, MJ ;
Troe, J .
JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 1997, 26 (06) :1329-1499
[2]   MASS-INDEPENDENT OXYGEN ISOTOPIC FRACTIONATION IN A MICROWAVE PLASMA [J].
BAINSSAHOTA, SK ;
THIEMENS, MH .
JOURNAL OF PHYSICAL CHEMISTRY, 1987, 91 (16) :4370-4374
[3]   Anomalous 17O compositions in massive sulphate deposits on the Earth [J].
Bao, HM ;
Thiemens, MH ;
Farquhar, J ;
Campbell, DA ;
Lee, CCW ;
Heine, K ;
Loope, DB .
NATURE, 2000, 406 (6792) :176-178
[4]  
BHATTACHARYA SK, 1989, Z NATURFORSCH A, V44, P435
[5]   KINETICS AND MECHANISM OF THE OXIDATION OF SULFUR(IV) BY OZONE IN AQUEOUS-SOLUTIONS [J].
BOTHA, CF ;
HAHN, J ;
PIENAAR, JJ ;
VANELDIK, R .
ATMOSPHERIC ENVIRONMENT, 1994, 28 (20) :3207-3212
[6]  
*CAMBR U, 1996, INT PAN CLIM CHANG R
[8]   ISOTOPIC COMPOSITION OF OXYGEN IN THE CATALYTIC DECOMPOSITION OF HYDROGEN PEROXIDE [J].
DOLE, M ;
RUDD, DP ;
MUCHOW, GR ;
COMTE, C .
JOURNAL OF CHEMICAL PHYSICS, 1952, 20 (06) :961-968
[9]   Isotope specific kinetics of hydroxyl radical (OH) with water (H2O): Testing models of reactivity and atmospheric fractionation [J].
Dubey, MK ;
Mohrschladt, R ;
Donahue, NM ;
Anderson, JG .
JOURNAL OF PHYSICAL CHEMISTRY A, 1997, 101 (08) :1494-1500
[10]   REACTION OF SULFUR-DIOXIDE WITH OZONE IN WATER AND ITS POSSIBLE ATMOSPHERIC SIGNIFICANCE [J].
ERICKSON, RE ;
YATES, LM ;
CLARK, RL ;
MCEWEN, D .
ATMOSPHERIC ENVIRONMENT, 1977, 11 (09) :813-817