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Substantial iron sequestration during green-clay authigenesis in modern deep-sea sediments

机译:现代深海沉积物中绿泥自生过程中的大量铁螯合

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In much of the global ocean, iron is a limiting nutrient for marine productivity. The formation of pyrite has been considered the most important sink of reactive iron in modern, organic-rich sediments. However, clay mineral transformations can also lead to long-term sequestration of iron during late diagenesis and in hydrothermal settings. Here we present evidence for substantial iron sequestration during the early diagenetic formation of ferruginous clay minerals, also called green-clay authigenesis, in the deep-sea environment of the Ivory Coast-Ghana Marginal Ridge. Using high-resolution electron microscopic methods and sequential sediment extraction techniques, we demonstrate that iron uptake by green-clay authigenesis can amount to 76 +/- 127 mu mol Fe cm(-2) kyr(-1), which is on average six times higher than that of pyrite in suboxic subsurface sediments 5m below the sea floor or shallower. Even at depths of 15m below the sea floor or greater, rates of iron burial by green clay and pyrite are almost equal at similar to 80 mu mol Fe cm(-2) kyr(-1). We conclude that green-clay formation significantly reduces the pore water inventory of dissolved iron in modern and ancient pelagic sediments, which challenges the long-standing conceptual view that clay mineral diagenesis is of little importance in current biogeochemical models of the marine iron cycle.
机译:在全球大部分海洋中,铁是海洋生产力的限制养分。黄铁矿的形成被认为是现代的,富含有机物的沉积物中最重要的反应性铁汇。但是,粘土矿物的转化也可能导致成岩后期和热液环境中铁的长期螯合。在这里,我们提供了在象牙海岸-加纳边缘山脊的深海环境中,在铁质粘土矿物的早期成岩作用形成过程中大量铁螯合的证据,也称为绿土自生。使用高分辨率电子显微镜方法和顺序沉积物提取技术,我们证明通过绿土自生铁的吸收量可达到76 +/- 127μmol Fe cm(-2)kyr(-1),平均为6在海床以下5m或更浅的亚有氧地下沉积物中,其含量比黄铁矿高出3倍。即使在海床以下15m或更大的深度处,绿土和黄铁矿的铁掩埋速率也几乎等于80μmol Fe cm(-2)kyr(-1)。我们得出的结论是,绿色粘土的形成显着降低了现代和古代远洋沉积物中溶解铁的孔隙水存量,这挑战了长期存在的观念观点,即粘土矿物成岩作用在当前海洋铁循环的生物地球化学模型中意义不大。

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