Publicación

Iron isotopes constrain sub-seafloor hydrothermal processes at the Trans-Atlantic Geotraverse (TAG) active sulfide mound

Fredrik Sahlström · Valentín R. Troll · Sabina Strmić Palinkaš · Ellen Kooijman · Xin‐Yuan Zheng
2022 Communications Earth and Environment DOI: 10.1038/s43247-022-00518-2

Resumen

Sub-seafloor hydrothermal processes along volcanically active plate boundaries are integral to the formation of seafloor massive sulfide deposits and to oceanic iron cycling, yet the nature of their relationship is poorly understood. Here we apply iron isotope analysis to sulfide minerals from the Trans-Atlantic Geotraverse (TAG) mound and underlying stockwork, 26°N Mid-Atlantic Ridge, to trace hydrothermal processes inside an actively-forming sulfide deposit in a sediment-free mid-ocean ridge setting. We show that data for recently formed chalcopyrite imply hydrothermal fluid–mound interactions cause small negative shifts (<−0.1‰) to the δ 56 Fe signature of dissolved iron released from TAG into the North Atlantic Ocean. Texturally distinct types of pyrite, in turn, preserve a δ 56 Fe range from −1.27 to +0.56‰ that reflects contrasting precipitation mechanisms (hydrothermal fluid–seawater mixing vs. conductive cooling) and variable degrees of progressive hydrothermal maturation during the >20 kyr evolution of the TAG complex. The identified processes may explain iron isotope variations found in fossil onshore sulfide deposits.

Autores y colaboradores

Authors

Fredrik Sahlström
Valentín R. Troll
Sabina Strmić Palinkaš
Ellen Kooijman
Xin‐Yuan Zheng

Palabras clave

Hydrothermal circulation Geology Seafloor spreading Pyrite Geochemistry Sulfide Hydrothermal vent Seawater Ridge