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首页> 外文期刊>Solid Earth Sciences >Fate of sulfate in seafloor hydrothermal systems: Insights from in situ observation of the liquid–liquid phase separation in hydrothermal fluids
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Fate of sulfate in seafloor hydrothermal systems: Insights from in situ observation of the liquid–liquid phase separation in hydrothermal fluids

机译:海底水热系统硫酸盐的命运:来自原位的见解吸水液中液 - 液相分离的观察

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The ubiquitous hydrothermal circulation within the newly formed oceanic crust plays an important role in the transport of heat, water and chemical constituents in the earth-ocean-atmosphere system. One enigma during this process is whether seawater-derived sulfate participates in the deep hydrothermal circulation. Our results showed that homogeneous sulfate-bearing fluid separated to a sulfate-rich dense liquid phase and a sulfate-poor light liquid phase. The liquid–liquid phase separation (LLPS) temperature increased with rising fluid pressure but decreased with the addition of low dielectric constant (D) components.In situRaman spectroscopic characterization revealed that the Zn2+-SO42-association increased with the addition of lowDcomponents. All these observations confirmed our previous conclusions that strong ion complexation triggered the LLPS. The formation of a sulfate-rich dense liquid phase could postpone the precipitation of sulfate, resulting in the participation of seawater-derived sulfate in the deep hydrothermal circulation. Sulfate would be reduced to S2?and mixed with that leached from the basalt, leading to the elevated δ34S value of the sulfide precipitated on the seafloor.
机译:新成立的海底内普遍存在的水热循环在地球大气系统中的热量,水和化学成分运输中起着重要作用。在此过程中的一个谜是海水衍生的硫酸盐是否参与深水温循环。我们的结果表明,均相硫酸盐含有富含硫酸盐的致密液相和硫酸盐差的光液相。液 - 液相分离(LLP)温度随着流体压力的上升而增加,但随着低介电常数(D)组分而降低。SITURAMAN光谱性表征显示,ZN2 + -SO42关联随着Lowdconents的增加而增加。所有这些观察结果证实了我们之前的结论,即强的离子络合引发了LLP。形成富含硫酸盐的致密液相可以推迟硫酸盐的沉淀,导致海水衍生硫酸盐在深水温循环中的参与。硫酸盐将减少到S2?并与玄武岩浸出的混合,导致硫化物在海底上沉淀的升高Δ34s值。

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