COMPOSITION AND MASS FLUX OF SEDIMENT ENTERING THE WORLDS SUBDUCTION ZONES: IMPLICATIONS FOR GLOBAL SEDIMENT BUDGETS, GREAT EARTHQUAKES, AND VOLCANISM

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dc.contributor.author Rea D.K.
dc.contributor.author Ruff L.J.
dc.date.accessioned 2020-11-21T02:36:43Z
dc.date.available 2020-11-21T02:36:43Z
dc.date.issued 1996
dc.identifier https://elibrary.ru/item.asp?id=487538
dc.identifier.citation Earth and Planetary Science Letters, 1996, , 1, 1-12
dc.identifier.issn 0012-821X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/19199
dc.description.abstract Lithologic data compiled from Deep Sea Drilling Project and Ocean Drilling Program sites, when combined with orthogonal convergence rates at convergent plate boundaries, permit quantification of the mass flux of sediment into subduction zones. We have made such calculations for each major sediment component -- terrigenous grains, calcium carbonate, opal, and water -- for twelve trench systems. Results show that 1.4 x 10^15 g/yr of sediment and 0.9 x 10^15 g/yr of water enter the trenches in the oceanic sedimentary layer. Most of the entering sediment, 1.1 x 10^15 g/yr, is terrigenous; the remainder is more carbonate than opal. For most of geologic time an order of magnitude more sediment enters the ocean than leaves it via subduction. The global sedimentary cycle need be in balance only over an entire Wilson cycle. Comparison of sediment fluxes into trenches with the magnitude of large earthquakes and with the composition of bulk volcanic rock shows no correlation.
dc.subject SEDIMENTATION RATES
dc.subject MARINE SEDIMENTS
dc.subject SEDIMENT SUPPLY
dc.subject SUBDUCTION ZONES
dc.title COMPOSITION AND MASS FLUX OF SEDIMENT ENTERING THE WORLDS SUBDUCTION ZONES: IMPLICATIONS FOR GLOBAL SEDIMENT BUDGETS, GREAT EARTHQUAKES, AND VOLCANISM
dc.type Статья


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