Generation of the Mt Kinabalu Granite by Crustal Contamination of Intraplate Magma Modelled by Equilibrated Major Element Assimilation with Fractional Crystallization (EME-AFC)

被引:8
作者
Burton-Johnson, A. [1 ]
Macpherson, C. G. [2 ]
Ottley, C. J. [2 ]
Nowell, G. M. [2 ]
Boyce, A. J. [3 ]
机构
[1] British Antarctic Survey, Madingley Rd, Cambridge CB3 0ET, England
[2] Univ Durham, Dept Earth Sci, Durham DH1 3LE, England
[3] Scottish Univ, Environm Res Ctr, E Kilbride G75 0QF, Lanark, Scotland
基金
英国自然环境研究理事会;
关键词
granite petrogenesis; magma differentiation; AFC modelling; oxygen isotopes; Borneo; PHASE-EQUILIBRIA; TRACE-ELEMENT; ISOTOPE FRACTIONATION; THERMODYNAMIC MODEL; HENRY MOUNTAINS; PELITIC SYSTEM; ARC MAGMAS; OXYGEN; ORIGIN; EMPLACEMENT;
D O I
10.1093/petrology/egz036
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
New geochemical data are presented for the composite units of the Mount Kinabalu granitoid intrusion of Borneo and utilised to explore the discrimination between crustal- and mantle-derived granitic magmas. The geochemical data demonstrate that the units making up this composite intrusion became more potassic through time. This was accompanied by an evolution of isotope ratios from a continental-affinity towards a slightly more mantle-affinity (Sr-87/Sr-86(i) similar to 0.7078; Nd-143/Nd-144(i) similar to 0.51245; Pb-206/(204)Pbi similar to 18.756 for the oldest unit compared to Sr-87/Sr-86(i) similar to 0.7065, Nd-143/Nd-144(i) similar to 0.51250 and Pb-206/Pb-204(i) similar to 18.721 for the younger units). Oxygen isotope ratios (calculated whole-rock delta O-18 of +6.5-9.3 parts per thousand) do not show a clear trend with time. The isotopic data indicate that the magma cannot result only from fractional crystallization of a mantle-derived magma. Alkali metal compositions show that crustal anatexis is also an unsuitable process for genesis of the intrusion. The data indicate that the high-K units were generated by fractional crystallization of a primary, mafic magma, followed by assimilation of the partially melted sedimentary overburden. We present a new, Equilibrated Major Element -Assimilation with Fractional Crystallization (EME-AFC) approach for simultaneously modelling the major element, trace element, and radiogenic and oxygen isotope compositions during such magmatic differentiation; addressing the lack of current AFC modelling approaches for felsic, amphibole- or biotite-bearing systems. We propose that Mt Kinabalu was generated through low degree melting of upwelling fertile metasomatized mantle driven by regional crustal extension in the Late Miocene.
引用
收藏
页码:1461 / 1487
页数:27
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