The deep basinal euxinic sediments of the Black Sea are enriched in iron that is highly susceptible to sulfidization compared to oxic/suboxic continental margin sediments in the Black Sea and oxic/dysoxic continental margin and deep-sea sediments worldwide. A mass balance treatment of iron speciation data from three deep basin sediment cores shows that this enrichment is due to a combination of (1)highly reactive iron-bearing phases (sulfides and oxides) whose ultimate source was by diagenetic mobilization from the shelf (Wijsman and others, 2001) and (2) enhanced iron reactivity in the lithogenous component of deep basinal sediments. The cause of the enhanced reactivity of lithogenous iron is problematical. Possible mechanisms include m...
Continental shelf sediments are a major source of iron (Fe) for phytoplankton in surface waters. In ...
The biogeochemical cycles of iron, phosphorus and sulfur are intimately linked and the fate of these...
The biogeochemical cycles of iron, phosphorus and sulfur are intimately linked and the fate of these...
The deep basinal euxinic sediments of the Black Sea are enriched in iron that is highly susceptible ...
ABSTRACT. The deep basinal euxinic sediments of the Black Sea are enriched in iron that is highly su...
Sulfur isotope and C-S-Fe elemental data from the Lower Devonian (Siegenian/Emsian) Hunsruck Slate o...
The distribution of reactive iron in sediments of the northwestern shelf, the shelf edge and the aby...
The distribution of reactive iron in sediments of the northwestern shelf, the shelf edge and the aby...
Enrichments of highly reactive iron (Fe) (sum of Fe (oxyhydr)oxide, carbonate and sulfide minerals) ...
Abstract: Modern and ancient euxinic sediments are often enriched in iron that is highly reactive to...
More than two hundred aerobic continental margin, aerobic deep sea, dysaerobic, and anaerobic / euxi...
Highlights • Turbidity currents transport large amounts of reactive iron minerals and associat...
High degrees of Fe mineral sulfidation are found in the euxinic sediments of the Black Sea. With the...
Enrichments of highly reactive iron (Fe) (sum of Fe (oxyhydr)oxide, carbonate and sulfide minerals) ...
Continental shelf sediments are a major source of iron (Fe) for phytoplankton in surface waters. In ...
Continental shelf sediments are a major source of iron (Fe) for phytoplankton in surface waters. In ...
The biogeochemical cycles of iron, phosphorus and sulfur are intimately linked and the fate of these...
The biogeochemical cycles of iron, phosphorus and sulfur are intimately linked and the fate of these...
The deep basinal euxinic sediments of the Black Sea are enriched in iron that is highly susceptible ...
ABSTRACT. The deep basinal euxinic sediments of the Black Sea are enriched in iron that is highly su...
Sulfur isotope and C-S-Fe elemental data from the Lower Devonian (Siegenian/Emsian) Hunsruck Slate o...
The distribution of reactive iron in sediments of the northwestern shelf, the shelf edge and the aby...
The distribution of reactive iron in sediments of the northwestern shelf, the shelf edge and the aby...
Enrichments of highly reactive iron (Fe) (sum of Fe (oxyhydr)oxide, carbonate and sulfide minerals) ...
Abstract: Modern and ancient euxinic sediments are often enriched in iron that is highly reactive to...
More than two hundred aerobic continental margin, aerobic deep sea, dysaerobic, and anaerobic / euxi...
Highlights • Turbidity currents transport large amounts of reactive iron minerals and associat...
High degrees of Fe mineral sulfidation are found in the euxinic sediments of the Black Sea. With the...
Enrichments of highly reactive iron (Fe) (sum of Fe (oxyhydr)oxide, carbonate and sulfide minerals) ...
Continental shelf sediments are a major source of iron (Fe) for phytoplankton in surface waters. In ...
Continental shelf sediments are a major source of iron (Fe) for phytoplankton in surface waters. In ...
The biogeochemical cycles of iron, phosphorus and sulfur are intimately linked and the fate of these...
The biogeochemical cycles of iron, phosphorus and sulfur are intimately linked and the fate of these...