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首页> 外文期刊>Geochemical Journal >Mineral nitrogen isotope signature in clay minerals formed under high ammonium environment conditions in sediment associated with ammonium-rich sediment-hosted hydrothermal system
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Mineral nitrogen isotope signature in clay minerals formed under high ammonium environment conditions in sediment associated with ammonium-rich sediment-hosted hydrothermal system

机译:矿物氮同位素签名在沉积物中沉积物中的高铵环境条件下形成的粘土矿物质中的患者

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摘要

The shallow-seafloor Wakamiko hydrothermal field in Kagoshima Bay, Japan, has been characterized by high ammonium contents (similar to 17 mM) in the discharge fluid. The sediment layer covering the field also contained a high concentration of ammonium in the pore fluids. The fluid chemistry suggests that the high concentration was attributed to whether mixing with hydrothermal fluid or the mineralization of organic matter. The occurrence of sediments such as smectite, illite and mica has been reported, and is associated with hydrothermal activity. Those 2:1 clay minerals can fold ammonium as mineral nitrogen (MN) in their interlayers. Extracted clay fractions from the sediment core samples obtained from the field were mainly composed of smectite. It contained a small amount of MN and its delta N-15 values reflected that of pore fluid ammonium in the case of a high ammonium (4 mM) environment. On the other hand, delta N-15 values of MN in the low ammonium (= 4 mM) environment were similar to those of the associated adsorbed organic nitrogen. The high ammonium environment associated with hydrothermal activity is expected to enhance formation of ammonium-bearing clay minerals, and then the d15N value of MN fixed in the clay minerals is possibly preserved a signal of pore fluid ammonium.
机译:日本鹿儿岛湾的浅海底Wakamiko水热场,在放电流体中的高铵含量(类似于17毫米)的特征。覆盖该领域的沉积物层还含有高浓度的孔流体中的铵。流体化学表明,高浓度归因于是否与水热流体或有机物质的矿化混合。据报道,诸如蒙脱石,伊利石和云母等沉积物的发生,并且与水热活性有关。那2:1粘土矿物可以在其中间层中作为矿物氮(Mn)递给铵。从该场获得的沉积物核心样品中提取的粘土馏分主要由蒙脱石组成。它含有少量的Mn,其δn-15值反映了在高铵(& 4mm)环境的情况下的孔流体铵。另一方面,低铵(& = 4mm)环境中Mn的δn-15值类似于相关的吸附有机氮的Mn。预期与水热活性相关的高铵环境,增强含铵粘土矿物的形成,然后固定在粘土矿物中的Mn的D15N值可能保留了孔流体铵的信号。

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