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Geochemical evolution of lithospheric mantle beneath S.E. South Australia
John Foden
, Suck Hwan Song
, Simon Turner
,
Marlina Elburg
, P. B. Smith
, B. Van Der Steldt
, D. Van Penglis
University of Adelaide
University of Bristol
Research output
:
Contribution to journal
›
Article
›
peer-review
66
Citations (Scopus)
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Keyphrases
Adelaide Fold Belt
25%
Alkaline Suite
25%
Amphibole
25%
Apatite
25%
Asthenosphere
25%
Basalt
75%
Basanite
50%
Cambrian-Ordovician
25%
Cratons
25%
Decompression
25%
Dolerite
25%
Early Cambrian
25%
Earth's Field
25%
East Antarctic
25%
Element Enrichment
25%
Ferrar
25%
Gambier
25%
Geochemical Characteristics
25%
Geochemical Evolution
100%
Geochemical Impact
25%
High Concentration
25%
High Field Strength Elements
25%
Incompatible Elements
25%
Kangaroo Island
25%
Kimberlite
50%
Late Neoproterozoic
25%
Lherzolite
25%
Lithophile
25%
Lithospheric Mantle
100%
Mafic Magmatism
25%
Magma
25%
Mantle Enrichment
50%
Mantle Plume
25%
Mantle Xenoliths
25%
Mantle Zone
25%
Mantle-derived Magma
25%
Metasomatic
25%
Neoproterozoic
50%
Nephelinite
25%
New South Wales
25%
Orogen
25%
Orogenesis
25%
Passive Margin
50%
Phlogopite
25%
Plume
25%
Rare Earth
25%
Rifting
50%
Ross-Delamerian Orogeny
25%
South Australia
100%
Southern Australia
25%
Subcontinental Lithospheric Mantle
50%
Tasmania
25%
Tholeiite
25%
Undersaturated
50%
Volcano
25%
Western Victoria
25%
Earth and Planetary Sciences
Amphibole
16%
Asthenosphere
16%
Australia
16%
Basalt
50%
Basanite
33%
Calcium Phosphate
16%
Craton
16%
Delamerian Orogeny
16%
Diabase
16%
Field Strength
16%
Fold Belt
16%
Holocene
16%
Lherzolite
16%
Lithosphere
16%
Lithospheric Mantle
100%
Magma
33%
Magmatism
16%
Mantle Plume
16%
Nephelinite
16%
New South Wales
16%
Ordovician
16%
Orogeny
16%
Pacific
16%
Passive Margin
33%
Peridotite
33%
Phlogopite
16%
Precambrian
16%
Pressure Reduction
16%
Rifting
33%
South Australia
100%
Tasmania
16%
Tholeiite
16%
Volcano
16%
Xenolith
16%