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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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Southern Africa
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South Africa (1)
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Asia
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Siberia (1)
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Siberian Platform (2)
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Yakutia Russian Federation
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Mir Pipe (1)
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Udachnaya Pipe (1)
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Canada
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Western Canada
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Northwest Territories (1)
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Commonwealth of Independent States
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Russian Federation
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Mirnyy Russian Federation (1)
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Siberian Platform (2)
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Yakutia Russian Federation
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Mir Pipe (1)
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Udachnaya Pipe (1)
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North America
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Canadian Shield
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Slave Province (1)
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commodities
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diamond deposits (2)
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mineral exploration (1)
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placers (1)
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elements, isotopes
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incompatible elements (1)
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isotope ratios (1)
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isotopes
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stable isotopes
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Nd-144/Nd-143 (1)
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Sr-87/Sr-86 (1)
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metals
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alkaline earth metals
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strontium
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Sr-87/Sr-86 (1)
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rare earths
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neodymium
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Nd-144/Nd-143 (1)
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geochronology methods
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K/Ar (1)
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geologic age
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Paleozoic
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Carboniferous
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Mississippian (1)
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Devonian (2)
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igneous rocks
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igneous rocks
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kimberlite (5)
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plutonic rocks
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ultramafics
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peridotites
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harzburgite (1)
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minerals
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native elements
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diamond (1)
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oxides
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chrome spinel (2)
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ilmenite (1)
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silicates
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chain silicates
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pyroxene group
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clinopyroxene (1)
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orthosilicates
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nesosilicates
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garnet group (2)
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sheet silicates
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mica group
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phlogopite (1)
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Primary terms
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absolute age (1)
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Africa
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Southern Africa
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South Africa (1)
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Asia
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Siberia (1)
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Siberian Platform (2)
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Yakutia Russian Federation
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Mir Pipe (1)
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Udachnaya Pipe (1)
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Canada
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Western Canada
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Northwest Territories (1)
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-
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diamond deposits (2)
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geochemistry (1)
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igneous rocks
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kimberlite (5)
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plutonic rocks
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ultramafics
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peridotites
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harzburgite (1)
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inclusions (4)
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isotopes
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stable isotopes
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Nd-144/Nd-143 (1)
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Sr-87/Sr-86 (1)
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mantle (2)
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metals
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alkaline earth metals
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strontium
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Sr-87/Sr-86 (1)
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rare earths
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neodymium
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Nd-144/Nd-143 (1)
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metasomatism (2)
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mineral exploration (1)
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North America
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Canadian Shield
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Slave Province (1)
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-
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Paleozoic
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Carboniferous
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Mississippian (1)
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Devonian (2)
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placers (1)
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Reconstruction of mantle sections beneath Yakutian kimberlite pipes using monomineral thermobarometry
Abstract Four original monomineral methods for mantle peridotite associations are used to reconstruct P – T conditions beneath the kimberlite pipes of Yakutia. The clinopyroxene Jd–Di method gives the closest coincidence with Opx barometry in accord with all physico-chemical boundaries. Garnet thermometers calibrated using Opx, Gar–Cpx and Ni-garnet thermometers and two variants of barometers were developed separately for pyroxenites and peridotites. A Cr–Sp thermobarometer uses the monomineralic version of the Ol–Sp thermometer and a newly calibrated Cr–Sp barometer. A picroilmenite method uses the Ol–Sp thermometer and a pressure-calibration of the geikielite component. Each mantle column is divided into two (upper and lower) sections by a pyroxenite layer located near 40 kbar. Below the pyroxenite layer, the lower section comprises 3–4 lithologically distinct horizons, with a thermally perturbed layer at the base. Above the pyroxenite layer are 3–5 lithologically distinct horizons, which are more fertile than the lower sections. Splitting of the geotherms characterizes most P – T diagrams and is ascribed to multistage melt percolation processes typical for the mantle beneath kimberlite pipes. The largest pipes are diamond-bearing and have a highly depleted peridotite lens above the asthenospheric layer.