Discovery of abundant hydrothermal venting on the ultraslow-spreading Gakkel ridge in the Arctic Ocean
- 1 January 2003
- journal article
- Published by Springer Nature in Nature
- Vol. 421 (6920) , 252-256
- https://doi.org/10.1038/nature01351
Abstract
Submarine hydrothermal venting along mid-ocean ridges is an important contributor to ridge thermal structure, and the global distribution of such vents has implications for heat and mass fluxes from the Earth's crust and mantle and for the biogeography of vent-endemic organisms. Previous studies have predicted that the incidence of hydrothermal venting would be extremely low on ultraslow-spreading ridges (ridges with full spreading rates <2 cm x yr(-1)-which make up 25 per cent of the global ridge length), and that such vent systems would be hosted in ultramafic in addition to volcanic rocks. Here we present evidence for active hydrothermal venting on the Gakkel ridge, which is the slowest spreading (0.6-1.3 cm x yr(-1)) and least explored mid-ocean ridge. On the basis of water column profiles of light scattering, temperature and manganese concentration along 1,100 km of the rift valley, we identify hydrothermal plumes dispersing from at least nine to twelve discrete vent sites. Our discovery of such abundant venting, and its apparent localization near volcanic centres, requires a reassessment of the geologic conditions that control hydrothermal circulation on ultraslow-spreading ridges.Keywords
This publication has 25 references indexed in Scilit:
- Evolution and Biogeography of Deep-Sea Vent and Seep InvertebratesScience, 2002
- Evidence of recent volcanic activity on the ultraslow-spreading Gakkel ridgeNature, 2001
- Seismic character of volcanic activity at the ultraslow-spreading Gakkel RidgeGeology, 2001
- Seismic evidence for volcanic activity discovered in central ArcticEos, 2000
- Distributions of hydrothermal activity along the Mid-Atlantic Ridge: interplay of magmatic and tectonic controlsEarth and Planetary Science Letters, 1998
- Detection of hydrothermal plumes along the Southeast Indian Ridge near the Amsterdam‐St. Paul PlateauGeophysical Research Letters, 1998
- The relationship between near-axis hydrothermal cooling and the spreading rate of mid-ocean ridgesEarth and Planetary Science Letters, 1996
- Hydrothermal methane venting between 12°N and 26°N along the Mid‐Atlantic RidgeJournal of Geophysical Research, 1993
- Entrainment and vertical transport of deep-ocean water by buoyant hydrothermal plumesNature, 1985
- Hydrothermal manganese plumes in the Mid-Atlantic Ridge rift valleyNature, 1985