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Geochemical and Visual Indicators of Hydrothermal Fluid Flow through a Sediment-Hosted Volcanic Ridge in the Central Bransfield Basin (Antarctica)

机译:热液流过中部布兰斯菲尔德盆地(南极洲)含泥火山岩脊的地球化学和视觉指标

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摘要

In the austral summer of 2011 we undertook an investigation of three volcanic highs in the Central Bransfield Basin, Antarctica, in search of hydrothermal activity and associated fauna to assess changes since previous surveys and to evaluate the extent of hydrothermalism in this basin. At Hook Ridge, a submarine volcanic edifice at the eastern end of the basin, anomalies in water column redox potential (Eh) were detected close to the seafloor, unaccompanied by temperature or turbidity anomalies, indicating low-temperature hydrothermal discharge. Seepage was manifested as shimmering water emanating from the sediment and from mineralised structures on the seafloor; recognisable vent endemic fauna were not observed. Pore fluids extracted from Hook Ridge sediment were depleted in chloride, sulfate and magnesium by up to 8% relative to seawater, enriched in lithium, boron and calcium, and had a distinct strontium isotope composition (87Sr/86Sr  = 0.708776 at core base) compared with modern seawater (87Sr/86Sr ≈0.70918), indicating advection of hydrothermal fluid through sediment at this site. Biogeochemical zonation of redox active species implies significant moderation of the hydrothermal fluid with in situ diagenetic processes. At Middle Sister, the central ridge of the Three Sisters complex located about 100 km southwest of Hook Ridge, small water column Eh anomalies were detected but visual observations of the seafloor and pore fluid profiles provided no evidence of active hydrothermal circulation. At The Axe, located about 50 km southwest of Three Sisters, no water column anomalies in Eh, temperature or turbidity were detected. These observations demonstrate that the temperature anomalies observed in previous surveys are episodic features, and suggest that hydrothermal circulation in the Bransfield Strait is ephemeral in nature and therefore may not support vent biota.
机译:在2011年的南方夏季,我们对南极布兰斯菲尔德盆地中部的三个火山高地进行了调查,以寻找热液活动和相关动物群,以评估自先前调查以来的变化并评估该盆地热液活动的程度。在盆地东端的海底火山大厦胡克里奇(Hook Ridge),在靠近海底的位置检测到水柱氧化还原电位(Eh)异常,没有伴随温度或浊度异常,表明存在低温热液排放。渗流表现为沉积物和海底矿化结构散发出的微光。没有观察到可识别的通风口地方性动物区系。从Hook Ridge沉积物中提取的孔隙液中的氯化物,硫酸盐和镁含量相对于海水最多减少8%,富含锂,硼和钙,并具有独特的锶同位素组成( 87 Sr /与现代海水( 87 Sr / 86 Sr≈0.70918)相比, 86 Sr = 0.708776(位于核心底部)表示水热流体通过沉积物的平流在这个网站上。氧化还原活性物质的生物地球化学区划意味着原位成岩过程对热液的显着调节。在中姐妹地区,三姐妹综合体的中脊位于胡克岭西南约100公里处,虽然发现了小水柱Eh异常,但目视观察到的海底和孔隙流体剖面并没有提供活跃的热液循环证据。在“三姐妹”西南约50公里处的Axe处,没有发现Eh,温度或浊度方面的水柱异常。这些观察结果表明,以前的调查中观察到的温度异常是偶发性特征,并且表明布兰斯菲尔德海峡的热液循环是短暂的,因此可能不支持通风口生物群。

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