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首页> 外文期刊>Geology >Isotopic composition of gypsum in the Macquarie Island ophiolite: Implications for the sulfur cycle and the subsurface biosphere in oceanic crust
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Isotopic composition of gypsum in the Macquarie Island ophiolite: Implications for the sulfur cycle and the subsurface biosphere in oceanic crust

机译:麦格理岛蛇绿岩中石膏的同位素组成:对洋壳中硫循环和地下生物圈的影响

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摘要

The O, S, and Sr isotope compositions were determined for 17 samples of gypsum that replaced anhydrite in the sheeted-dike complex of the Macquarie Island ophiolite. Elevated delta(34)S (26.2parts per thousand-29.0parts per thousand) and delta(18)O values (12.5parts per thousand -14.4parts per thousand) of gypsum compared to those of seawater sulfate are the result of microbial sulfate reduction. Low organic carbon contents and little sulfate reduction in sediments, plus a large basaltic Sr component in the gypsum (Sr-87/Sr-86 = 0.70446-0.70524), indicate that the sulfate source was not pore waters in the overlying sediment. Low delta(34)S values of sulfide in basalt lavas are consistent with microbial reduction of seawater sulfate within the volcanic rocks. Tectonic activity at the slow-spreading ridge allowed evolved formation waters to enter hot sheeted-dike complex basement, resulting in heating and precipitation of anhydrite. Results show that microbes can leave geochemical tracers of their activity in oceanic basement and that anhydrite can be preserved in oceanic crust and may be of significance for the oceanic sulfur budget. [References: 33]
机译:确定了麦格理岛蛇绿岩薄片状二叠合物中取代硬石膏的17个石膏样品的O,S和Sr同位素组成。与硫酸盐海水相比,石膏的Δ(34)S(千分之26.2-每千分之29.0)和Δ(18)O值(千分之12.5(每千分之一-14.4))的升高是硫酸盐微生物还原的结果。沉积物中有机碳含量低,硫酸盐还原量少,加上石膏中的玄武质Sr成分较大(Sr-87 / Sr-86 = 0.70446-0.70524),表明硫酸盐来源不是上覆沉积物中的孔隙水。玄武岩熔岩中硫化物的低δ(34)S值与火山岩中海水硫酸盐的微生物还原作用相一致。缓慢扩张的山脊的构造活动使演化的地层水进入热的板状二叠纪复杂的地下室,导致硬石膏的加热和沉淀。结果表明,微生物可以保留其在海洋基底层中的活动的地球化学示踪物,并且硬石膏可以保留在海洋地壳中,并且可能对海洋硫预算有重要意义。 [参考:33]

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