RARE-GAS CONSTRAINTS ON HYDROCARBON ACCUMULATION, CRUSTAL DEGASSING AND GROUNDWATER-FLOW IN THE PANNONIAN BASIN

被引:166
作者
BALLENTINE, CJ
ONIONS, RK
OXBURGH, ER
HORVATH, F
DEAK, J
机构
[1] EOTVOS LORAND UNIV,DEPT GEOPHYS,H-1083 BUDAPEST,HUNGARY
[2] RES CTR WATER RESOURCES DEV,H-1095 BUDAPEST,HUNGARY
关键词
D O I
10.1016/0012-821X(91)90133-3
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The isotopic composition and abundances of He, Ne and Ar have been measured in a sequence of vertically stacked gas reservoirs at Hajduszoboszlo and Ebes, in the Pannonian Basin of Hungary. The gas reservoirs occur at depths ranging from 727 to 1331 m, are CH4 dominated and occupy a total rock volume of approximately 1.5 km3. There are systematic variations in both major species abundances and rare gas isotopic composition with depth: CO2 and N2 both increase from 0.47 and 1.76% to 14.1 and 30.5%, respectively, and Ar-40/Ar-36 and Ne-21/Ne-22 increase systematically from 340 and 0.02990 at 727 m to 1680 and 0.04290 at 1331 m. A mantle-derived He component between 2 and 5% is present in all samples, the remainder is crustal-radiogenic He. The Ar and Ne isotope variations arise from mixing between atmosphere-derived components in groundwater, and crustally produced radiogenic Ar and Ne. The atmosphere-derived Ar-40 and Ne-21 decreases from 85 and 97% of the total Ar-40 and Ne-21 at 727 m to 18 and 68% at 1331 m. The deepest samples are shown to have both atmosphere-derived and radiogenic components close to the air-saturated water and radiogenic production ratios. The shallowest samples show significant fractionation of He/Ar and Ne/Ar ratios in atmosphere-derived and radiogenic rare gas components, but little or no fractionation of He/Ne ratios. This suggests that diffusive fractionation of rare gases is relatively unimportant and that rare gas solubility partitioning between CH4 and H2O phases controls the observed rare gas elemental abundances. The total abundance of atmosphere-derived and radiogenic rare gas components in the Hajduszoboszlo gas field place limits on the minimum volume of groundwater that has interacted with the natural gas, and the amount of crust that has degassed and supplied radiogenic rare gases. The radiogenic mass balance cannot be accounted for by steady state production either within the basin sediments or the basement complex since basin formation. The results require that radiogenic rare gases are stored at their production ratios on a regional scale and transported to the near surface with minimal fractionation. The minimum volume of groundwater required to supply the atmosphere-derived rare gases would occupy a rock volume of some 1000 km3 (assuming an average basin porosity of 5%), a factor of 670 greater than the reservoir volume. Interactions between groundwater and the Hajduszoboszlo hydrocarbons has been on a greater scale than often envisaged in models of hydrocarbon formation and migration.
引用
收藏
页码:229 / 246
页数:18
相关论文
共 40 条
[1]  
BAUR H, 1983, THESIS TH ZURICH
[2]  
Berczi I., 1988, AAPG MEMOIR, P107
[3]  
BERCZI I, 1988, AAPG MEMOIR, V45, P57
[4]   NATURAL-GAS ASSOCIATION WITH WATER AND OIL AS DEPICTED BY ATMOSPHERIC NOBLE-GASES - CASE STUDIES FROM THE SOUTHEASTERN MEDITERRANEAN COASTAL-PLAIN [J].
BOSCH, A ;
MAZOR, E .
EARTH AND PLANETARY SCIENCE LETTERS, 1988, 87 (03) :338-346
[5]   HELIUM AND NEON ISOTOPE GEOCHEMISTRY OF SOME GROUND WATERS FROM THE CANADIAN PRECAMBRIAN SHIELD [J].
BOTTOMLEY, DJ ;
ROSS, JD ;
CLARKE, WB .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1984, 48 (10) :1973-1985
[6]  
Coleman D.D., 1977, ILL STATE GEOL SURV, V111, P1, DOI [10.2118/6491-MS, DOI 10.2118/6491-MS]
[7]  
CRAWFORD ML, 1986, ADV PHYSICAL GEOCHEM, V5, P1
[8]  
Crovetto R., 1982, Journal of Chemical Physics, V76, P1077, DOI 10.1063/1.443074
[9]  
DOVENYI P, 1988, AAPG MEMOIR, V45, P195
[10]  
Erdelyi M., 1976, ACTA GEOL ACAD SCI H, V20, P287