首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Cold seeps in Monterey Bay, California: Geochemistry of pore waters and relationship to benthic foraminiferal calcite
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Cold seeps in Monterey Bay, California: Geochemistry of pore waters and relationship to benthic foraminiferal calcite

机译:加利福尼亚蒙特利湾的冷渗漏:孔隙水的地球化学及其与底栖有孔虫方解石的关系

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An extensive geochemical and biogeochemical examination of CH_4 seeps in the Clam Flats area of Monterey Bay provides insight into the character of relationships between seep geochemistry and benthic foraminiferal geochemistry. The area is characterized by sulfide-rich fluids. Sulfide increases are associated with large increases in alkalinity, as well as small decreases in dissolved Ca and Mg. In addition, only small increases in NH_4 are observed, but values of δ~(13)C of dissolved inorganic C are as low as -60‰ at shallow depths (<3cm). These observations indicate that all these processes are related to the bacterial oxidation of CH4, which is transported upward by slow seepage of pore fluids. The geochemistry of the pore fluids should be relevant to the geochemistry of the carbonate tests of living and dead foraminifera. However, a profound disequilibrium of approximately an order of magnitude occurs between the δ~(13)C values of stained (cytoplasm-containing) foraminiferal carbonate and the C isotope values of ambient pore water dissolved inorganic C. Reasons are unclear for this isotopic disequilibrium, but have important implications for interpretations of foraminiferal carbonate as a paleoenvironmental proxy. Much fine scale work is needed to fully understand the relationships between the biogeochemistry of benthic foraminifera and the geochemistry of the pore waters where they live.
机译:对蒙特雷湾Clam Flats地区CH_4渗漏进行了广泛的地球化学和生物地球化学检查,可洞察渗流地球化学与底栖有孔虫地球化学之间的关系。该地区的特点是富含硫化物的流体。硫化物的增加与碱度的大幅度增加,以及溶解的Ca和Mg的小幅度减少有关。此外,仅观察到NH_4的少量增加,但在浅深度(<3cm)处,溶解的无机碳的δ〜(13)C值低至-60‰。这些观察结果表明,所有这些过程都与CH4的细菌氧化有关,CH4的氧化是通过孔隙流体的缓慢渗漏向上传输的。孔隙流体的地球化学应该与活和有孔有孔虫的碳酸盐测试的地球化学有关。然而,染色的(含细胞质的)有孔虫碳酸盐的δ〜(13)C值与周围孔隙水溶解的无机C的C同位素值之间出现了大约一个数量级的严重不平衡。这种同位素不平衡的原因尚不清楚,但对于将有孔虫碳酸盐解释为古环境代用品具有重要意义。要充分了解底栖有孔虫的生物地球化学与它们所生活的孔隙水的地球化学之间的关系,需要做大量的精细工作。

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