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Mineral, chemical and isotopic compositions of hydrothermally altered sediments from the Middle Valley (Juan de Fuca Ridge), ODP Site 139-858

机译:来自中谷(Juan de Fuca Ridge)的热液蚀变沉积物的矿物,化学和同位素组成,ODp站点139-858

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摘要

Li and Li isotopes have been measured in the clay fraction of sediments recovered from the Middle Valley hydrothermal site on the Juan De Fuca Ridge. The Li content of pure detrital clays is 51 ppm while hydrothermal clays and carbonates have lower Li (22+/-11 ppm). However, there is no clear relationship between the mineralogy of the hydrothermal alteration products and their Li content. The d7Li value of the detrital clays is +5.8?. Hydrothermal clays and carbonates have d7Li in the range of -3.9? to +7.8?; these values do not seem to be dependent on the temperature at which they formed. Modelling of the Li and Li isotope systematics indicates that the fluid from which the alteration products form is significantly enriched in Li (higher than 10000 µmol/kg) relative to pore fluids recovered from within the sediments (up to 589 µmol/kg; [Wheat, C.G., M.J. Mottl, 1994. Data report: trace metal composition of pore water from Sites 855 through 858, Middle valley, Juan De Fuca Ridge. In Mottl, M.J., Davis, E.E., Fisher, A.T., Slack, J.F. (Eds.), Proc. ODP, Sci. Res. 139: 749-755; doi:10.2973/odp.proc.sr.139.269.1994]), and that this Li is derived from sediment. Thus, the alteration products are not in equilibrium with their conjugate pore fluids; rather, the alteration minerals formed at lower water/sediment ratios. This suggests that fluid flow pathways at Middle Valley were more diffuse in the past than they are today.
机译:在从胡安德富卡山脊的中谷热液场中回收的沉积物中,粘土和锂同位素已被测量。纯碎屑粘土的Li含量为51 ppm,而热液粘土和碳酸盐的Li含量较低(22 +/- 11 ppm)。但是,热液蚀变产物的矿物学特征与其锂含量之间没有明确的关系。碎屑粘土的d7Li值为+5.8?。热液粘土和碳酸盐的d7Li在-3.9范围内。到+7.8?这些值似乎并不取决于它们形成的温度。 Li和Li同位素的系统模型表明,相对于从沉积物中回收的孔隙流体(最高589 µmol / kg),形成蚀变产物的流体中的Li含量显着丰富(高于10000 µmol / kg)。 ,CG,MJ Mottl,1994年。数据报告:从胡安德富卡里奇中谷855号至858号站点的孔隙水的痕量金属组成。 ),Proc。ODP,Sci。Res。139:749-755; doi:10.2973 / odp.proc.sr.139.269.1994]),并且该Li来源于沉积物。因此,蚀变产物与其共轭孔隙流体不平衡;相反,蚀变矿物是在较低的水/泥沙比下形成的。这表明,中谷地区的流体流动路径过去比今天更为分散。

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