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首页> 外文期刊>Geosciences >Clay Mineral Suites in Submarine Mud Volcanoes in the Kumano Forearc Basin, Nankai Trough: Constraints on the Origin of Mud Volcano Sediments
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Clay Mineral Suites in Submarine Mud Volcanoes in the Kumano Forearc Basin, Nankai Trough: Constraints on the Origin of Mud Volcano Sediments

机译:南海海槽熊野前盆地海底泥火山中的粘土矿物套房:泥火山沉积物成因的限制

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Clay mineralogy is an important characteristic of mud volcano sediments. This study determined the clay mineral compositions of sediment from two submarine mud volcanoes in the Kumano forearc basin, Nankai Trough, by X-ray diffraction analysis. Similar compositions dominated by smectite in the two mud volcanoes indicate that the mud volcanoes in the basin are rooted in the same source sequence. These clay mineral compositions differed from those in Pleistocene basin sediment, suggesting that the mud volcano sediment originated beneath the Pleistocene sediment. The illite content in the illite–smectite mixed layer averaged 32% in the mud volcano sediment, which implies that the sediment experienced temperatures above 60 °C that promoted the smectite-to-illite transformation. However, porewater extracted from the mud volcano sediment had Cl ? concentrations roughly half that of seawater and proportional enrichment in 18 O and depletion in D, indicating that dehydration reactions of clay minerals had previously occurred in a deeply buried sedimentary layer. The smectite and illite contents (60%) in the clay-size fraction rule out in situ smectite dewatering as the cause of the dilution of Cl ? in porewater. Thus, fluids derived from clay dewatering must have originated from deeper than the source of the mud volcano sediment.
机译:粘土矿物学是火山泥沉积物的重要特征。这项研究通过X射线衍射分析确定了南海海槽熊野前盆地两个海底泥火山的沉积物的粘土矿物成分。两个泥火山中以蒙脱石为主的相似成分表明,盆地中的泥火山以相同的物源序列为根。这些粘土矿物成分不同于更新世盆地沉积物中的矿物成分,表明泥火山沉积物起源于更新世沉积物之下。泥火山沉积物中伊利石-蒙脱石混合层中的伊利石含量平均为32%,这意味着沉积物经历的温度高于60°C,从而促进了绿土向伊利石的转变。但是,从火山泥沉积物中提取的孔隙水中含有Cl-。其浓度大约是海水的一半,18 O中的比例富集和D中的耗竭,这表明粘土矿物的脱水反应以前曾发生在深埋的沉积层中。粘土筛分中的蒙皂石和伊利石含量(<60%)排除了原位蒙脱石脱水的原因,因为这是稀释Cl 2的原因。在孔隙水中。因此,从粘土脱水中得到的流体必定来自比火山泥沉积物源更深的流体。

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