Primary magmas and mantle temperatures

被引:133
作者
Green, DH [1 ]
Falloon, TJ
Eggins, SM
Yaxley, GM
机构
[1] Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT 0200, Australia
[2] Univ Tasmania, Sch Earth Sci, Hobart, Tas 7005, Australia
关键词
mantle melting; mantle potential temperature; plumes; primary magmas;
D O I
10.1127/0935-1221/2001/0013-0437
中图分类号
P57 [矿物学];
学科分类号
070901 ;
摘要
The composition of olivine phenocrysts in Hawaiian tholeiitic picrites and in Mid-Ocean Ridge picrites vary up to Mg-91.3(#) and Mg-92.1(#) respectively. The compositions and liquidus temperatures of the magmas crystallizing the most magnesian phenocrysts can be estimated and we find that anhydrous liquidus temperatures (at 1 bar pressure) of Hawaiian tholeiitic picrites average 1365 degreesC, for E-MOR picrites average 1355 degreesC, and for N-MOR picrites average 1335 degreesC. Water contents of the magmas decrease in the order Hawaiian picrites, E-MOR picrites to N-MOR picrites, and consideration of liquidus depression by these water contents leads to the conclusion that magma temperatures for all types were approximately 1325 degreesC at similar to 1 bar. The data from parental or primary magmas suggests that the temperature contrast between 'Hot-Spot' and MOR magmas is less than or equal to 20 degreesC. Application of information from partial melting studies of Iherzolites and liquidus studies of the Hot-Spot and MOR picrites leads to the conclusion that both 'Hot-Spot' and MOR primary basalts are derived from mantle with potential temperature T-p similar to 1430 degreesC. Insofar as primitive magmas may be used to infer the potential temperature of their sources, there is no evidence for a temperature contrast of Delta T-p = 100-250 degreesC between 'Hot-Spot' or 'Deep Mantle Plume' sources and ambient (MOR source) asthenospheric mantle. Although magma temperatures are similar, the residual mantle compositions for Hawaiian picrites are refractory harzburgites, more refractory (including Cr/Cr+Al ratio) than the Iherzolite to harzburgite residue from MOR picrite extraction. It is argued that the buoyancy plume and geophysically anomalous mantle beneath the Hawaiian Arch is due to compositional and not temperature contrasts in the upper mantle. The four-component mixing identified in the Hawaiian source is attributed to interaction between old subducted lithospheric slabs, buoyant or suspended in the upper mantle, and surrounding ambient mantle at T-p = 1430 degreesC.
引用
收藏
页码:437 / 451
页数:15
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