Microbial and thermochemical controlled sulfur cycle in the Early Triassic sediments of the Western Canadian Sedimentary Basin

被引:12
作者
Liseroudi, Mastaneh H. [1 ]
Ardakani, Omid H. [1 ,2 ]
Pedersen, Per K. [1 ]
Stern, Richard A. [3 ]
Wood, James M. [4 ]
Sanei, Hamed [5 ]
机构
[1] Univ Calgary, Dept Geosci, 2500 Univ Dr NW, Calgary, AB T2N 1N4, Canada
[2] Geol Survey Canada, 3303 33Rd St Nw, Calgary, AB T2L 2A7, Canada
[3] Univ Alberta, Earth & Atmospher Sci, Earth Sci Bldg, Edmonton, AB T6G 2E3, Canada
[4] Calaber1 Resources, 965 Sierra Morena Court SW, Calgary, AB T3H 3R3, Canada
[5] Aarhus Univ, Dept Geosci, Lithospher Organ Carbon LOC, Hoegh Guldbergs Gade 2, DK-8000 Aarhus, Denmark
关键词
NORTHEASTERN BRITISH-COLUMBIA; PERMIAN MASS EXTINCTION; SULFATE REDUCTION RATES; PEACE RIVER ARCH; 125; DEGREES-C; ISOTOPE FRACTIONATION; MONTNEY FORMATION; ANAEROBIC OXIDATION; PYRITE DELTA-S-34; SEAWATER SULFATE;
D O I
10.1144/jgs2020-175
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Pyrite is one of three main sulfur reservoirs and one of the biggest fluxes in the global sulfur cycle. The sulfur isotopic signature of hydrogen sulfide, pyrite and their parent sulfate is widely used as a proxy for tracking sulfur cycle variations in diagenetic environments. The Early Triassic Montney Formation in the Western Canadian Sedimentary Basin is characterized by distinct regional variations in pyrite abundance, type, sulfur isotopic signature and H2S concentrations in natural gas. Two main types of framboidal and crystalline pyrite were identified to have formed during various stages of diagenesis. The wide range of delta S-34(pyrite) values (-34.4 to + 57.8 parts per thousand V-CDT) demonstrates that the sulfur cycle in the Montney Formation is governed by both microbial and thermochemical processes. The comparison of delta S-34 of the produced-gas H2S with pyrite, anhydrite and solid bitumen of the Montney, and underlying and overlying formations, suggests a mixture of dominantly in situ and minor migrated H2S with thermochemical sulfate reduction origin in the Montney Formation. The large diagenetic variations in pyrite types and delta S-34(pyrite) values suggest a lack of direct biogeochemical connection to the sulfur cycle and emphasize the importance of careful petrographic observations and micro-scale isotopic analysis of sedimentary units to accurately reconstruct paleoenvironmental conditions. Supplementary material: [description of material] is/are available at
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页数:20
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