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This study presents the first documentation and analysis of polymetallic Fe Mn seafloor nodules from offshore Northeast Greenland. Samples were collected from three sites by dredging and gravity coring along the slopes of both the outer and transform margin highs. The morphology, petrography, and whole-rock geochemistry of twenty-four nodules were determined. 10 Be/ 9 Be and (U Th)/He dating were undertaken for representative samples to constrain the time of formation. Two nodule groups were identified in all studied sampling sites. Group 1 ( n = 19) are light banded, primarily hydrogenetic nodules with notable enrichments in Mn and Fe, as well as several trace elements including rare earth elements (REE), V, Co, and Y. They have geochemical and textural similarities to Fe Mn deposits from the Arctic Basin. 10 Be/ 9 Be age estimates suggest that growth initiated around 14 Ma. This is synchronous with the deep-water opening of the Fram Strait, which influence deep water circulation and inflow of nutrient-rich Arctic waters onto the NE Greenland shelf. Group 2 nodules ( n = 5) are dense with high Fe (up to 64 wt% Fe 2 O 3 ), low Mn content and little to no enrichment in trace elements and REEs. They are interpreted as hydrothermal in origin, with preliminary (U Th)/He ages suggesting Quaternary formation under weak, diffuse fluid circulation in near-bottom environments of uncertain source. This study expands our understanding of seafloor mineralization in the Arctic–North Atlantic gateway, revealing that on the NE Greenland shelf this process reflects a long-term interplay between tectonic evolution, ocean circulation, and fluid-driven alteration.
Zastrozhnov et al. (Sat,) studied this question.