LARGE-SCALE INTRUSION OF SHALLOW-WATER INTO A VERTICAL FRACTURE-ZONE IN CRYSTALLINE BEDROCK - INITIAL HYDROCHEMICAL PERTURBATION DURING TUNNEL CONSTRUCTION AT THE ASPO-HARD-ROCK-LABORATORY, SOUTHEASTERN SWEDEN

被引:53
作者
BANWART, S
GUSTAFSSON, E
LAAKSOHARJU, M
NILSSON, AC
TULLBORG, EL
WALLIN, B
机构
[1] GEOSIGMA AB, S-75108 UPPSALA, SWEDEN
[2] GEOPOINT AB, S-19162 SOLLENTWIA, SWEDEN
[3] TERRALOGICA AB, S-44006 GRABO, SWEDEN
[4] GEOKEMA AB, S-18146 LIDINGO, SWEDEN
关键词
D O I
10.1029/94WR00155
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
On March 13, 1991, construction of the entrance tunnel to the Aspo Hard Rock Laboratory opened a vertical fracture zone at a depth of 70 m. This provides an opportunity to study geochemical changes resulting from shallow water inflow into a crystalline bedrock aquifer as anticipated during construction and operation of a deep repository for spent nuclear fuel. Chloride ion is a natural conservative tracer for mixing between the dilute ([Cl-] < 10 mg L-1) shallow groundwater and the saline ([Cl-] = 5000 mg L-1) native groundwater of the fracture zone. A sharp dilution front, corresponding to 80% dilution of the native groundwater, indicated arrival of shallow groundwater in the entrance tunnel after 3 weeks. In spite of this large input of shallow water, the fracture zone remains predominantly anoxic. Major element hydrochemistry and carbon and oxygen stable isotope data indicate large inputs of alkalinity and biogenic CO2(g). Input of organic carbon with shallow groundwater provides a possible energy and carbon source for anaerobic respiration. There is no evidence for sulfate reduction, and Fe(III) oxyhydroxide fracture minerals are the only other dominant electron acceptor observed.
引用
收藏
页码:1747 / 1763
页数:17
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