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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Fluid inclusions in jadeitite and jadeite-rich rock from serpentinite mélanges in northern Hispaniola: Trapped ambient fluids in a cold subduction channel
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Fluid inclusions in jadeitite and jadeite-rich rock from serpentinite mélanges in northern Hispaniola: Trapped ambient fluids in a cold subduction channel

机译:来自北部北部蛇形岩Mélanges的翡翠和翡翠岩石中的液体夹杂物:在冷郊河通道中被困的环境液体

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摘要

Freezing-point depression was measured in aqueous fluid inclusions to determine salinities in six samples of jadeitite and jadeite-rich rock from the Jagua Clara serpentinite mélange of the Rio San Juan Complex, Dominican Republic. The mélange represents a fossil subduction-zone channel from a cold, mature subduction zone with a geothermal gradient of ~6?°C/km. One hundred and twenty-five determinations of salinity in primary inclusions hosted in jadeite, quartz, apatite and lawsonite range between extremes of 1.2 and 8.7, but yield a well-defined mean of 4.5?±?1.1?wt% (±1?s.d.) NaCl equiv, slightly higher than mean seawater (3.5?wt%). In one sample, eight additional fluid inclusions in quartz aligned along grain boundaries yield slightly lower values of 2.7?±?1.3?wt% NaCl equiv. Homogenization temperatures were also measured for 47 fluid inclusions in two samples, but primary entrapment densities are not preserved. It is significant that the suite includes two types of samples: those precipitated directly from an aqueous fluid as well as examples of metasomatic replacement of a pre-existing magmatic rock. Nevertheless, the results indicate identical salinity for both types and suggest a much stronger genetic link between the two types of jadeitite and jadeite-rich rock than has previously been assumed. Based on the results of conductivity measurements in modern subduction zones, we envision a pervasive fluid in the subduction channel that evolved from salinity levels lower than those in sea-water up to the measured values due to on-going but largely completed serpentinization in the subduction channel. The present data represent a reference marker for the subduction channel of the Rio San Juan intra-oceanic subduction zone at 30–50?km depth and after 50–60?Myr of operation.
机译:在含水流体夹杂物中测量冷冻点抑制,以确定来自多米尼加共和国里约热内卢共和国的Jagua Clara SerpentiniteMélange的六个样品中的六个样品。 Mélange代表来自冷,成熟的俯冲区的化石俯冲区通道,地热梯度为〜6?°C / km。在翡翠,石英,磷灰石和律师的主要夹杂物中盐度中的一百二十五次测定,但在极端为1.2和8.7之间,但产生明确定义的平均值为4.5?±1.1?wt%(±1?SD )NaCl等于平均海水(3.5°Wt%)。在一个样品中,沿晶界对准的八种额外的流体夹杂物沿晶界对齐,略低于2.7≤≤1.3℃的值略低。在两个样品中还测量了47个流体夹杂物的均质化温度,但不保留初始滞留密度。这很重要的是,该套件包括两种类型的样品:那些直接从含水流体沉淀的那些以及预先存在的岩石岩石的代替替代的实例。然而,结果表明两种类型的相同盐度,并表明两种类型的翡翠和翡翠的岩石之间的更强大的遗传联系,而不是先前的假设。基于现代俯冲区域的电导率测量结果,我们设想俯冲渠道中的普遍存器,从盐度水平的演变为低于海水的盐度水平,由于正在进行的俯冲而在很大程度上完成蛇形化的测量值渠道。目前的数据代表RIO SAN JUAN内海洋俯冲区的俯冲通道的参考标记,在30-50 km深度和50-60次后的操作后。

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