Triggers on sulfide saturation in Fe–Ti oxide-bearing, mafic-ultramafic layered intrusions in the Tarim large igneous province, NW China

被引:0
作者
Jun Cao
Christina Yan Wang
Yi-Gang Xu
Chang-Ming Xing
Ming-Hao Ren
机构
[1] Guangzhou Institute of Geochemistry,State Key Laboratory of Isotope Geochemistry
[2] Chinese Academy of Sciences,CAS Key Laboratory of Mineralogy and Metallogeny
[3] Guangzhou Institute of Geochemistry,College of Earth Sciences
[4] Chinese Academy of Sciences,undefined
[5] East China University of Technology,undefined
来源
Mineralium Deposita | 2017年 / 52卷
关键词
Fe–Ti oxide-bearing; Mafic-ultramafic layered intrusions; Platinum-group elements; Re–Os isotopes; Sulfide saturation; Plume-lithosphere interaction; Tarim large igneous province;
D O I
暂无
中图分类号
学科分类号
摘要
Three Fe–Ti oxide-bearing layered intrusions (Mazaertag, Wajilitag, and Piqiang) in the Tarim large igneous province (NW China) have been investigated for understanding the relationship of sulfide saturation, Platinum-group element (PGE) enrichment, and Fe–Ti oxide accumulation in layered intrusions. These mafic-ultramafic layered intrusions have low PGE concentrations (<0.4 ppb Os, <0.7 ppb Ir, <1 ppb Ru, <0.2 ppb Rh, <5 ppb Pt, and <8 ppb Pd) and elevated Cu/Pd (2.2 × 104 to 3.3 × 106). The low PGE concentrations of the rocks are mainly attributed to PGE-depleted, parental magma that was produced by low degrees of partial melting of the mantle. The least contaminated rocks of the Mazaertag and Wajilitag intrusions have slightly enriched Os isotopic compositions with γOs(t = 280 Ma) values ranging from +13 to +23, indicating that the primitive magma may have been generated from a convecting mantle, without appreciable input of lithospheric mantle. The Mazaertag and Wajilitag intrusions have near-chondritic γOs(t) values (+13 to +60) against restricted εNd(t) values (−0.4 to +2.8), indicating insignificant crustal contamination. Rocks of the Piqiang intrusion have relatively low εNd(t) values of −3.1 to +1.0, consistent with ∼15 to 25 % assimilation of the upper crust. The rocks of the Mazaertag and Wajilitag intrusions have positive correlation of PGE and S, pointing to the control of PGE by sulfide. Poor correlation of PGE and S for the Piqiang intrusion is attributed to the involvement of multiple sulfide-stage liquids with different PGE compositions or sulfide-oxide reequilibration on cooling. These three layered intrusions have little potential of reef-type PGE mineralization. Four criteria are summarized in this study to help discriminate between PGE-mineralized and PGE-unmineralized mafic-ultramafic intrusions.
引用
收藏
页码:471 / 494
页数:23
相关论文
共 584 条
[21]  
O’Neill CJ(2008)Rhenium–Osmium isotope and platinum-group element constraints on the origin and evolution of the 1.27 Ga Muskox layered intrusion J Petrol 49 1255-1295
[22]  
Poudjom Djomani Y(2010)Clinopyroxene trace element compositions of cumulate mafic rocks and basalts from the Hercynian Moroccan Central Meseta: petrogenetic implications J Afr Earth Sci 56 97-106
[23]  
Deen T(2003)Mineral/melt partitioning of trace elements during hydrous peridotite partial melting Contrib Mineral Petrol 145 391-405
[24]  
Bowden P(2013)Generation and evolution of siliceous high magnesium basaltic magmas in the formation of the Permian Huangshandong intrusion (Xinjiang, NW China) Lithos 162–163 128-139
[25]  
Begg GC(2012)Early Pan-African magmatism in the Tarim Craton: insights from zircon U–Pb–Lu–Hf isotope and geochemistry of granitoids in the Korla area, NW China Precambrian Res 212–213 117-138
[26]  
Hronsky JAM(1995)Chemical mass transfer in magmatic processes IV. A revised and internally consistent thermodynam ic model for the interpolation and extrapolation of liquid–solid equilibria in magmatic systems at elevated temperatures and pressures Contrib Mineral Petrol 119 197-212
[27]  
Arndt NT(2011)Parental magma composition inferred from trace element in cumulus and intercumulus silicate minerals: an example from the Lower and Lower Critical zones of the Bushveld Complex, South-Africa Lithos 125 537-552
[28]  
Griffin WL(2013)Continental-root control on the genesis of magmatic ore deposits Nat Geosci 6 905-910
[29]  
O’Reilly SY(1993)Experimental cpx/melt partitioning of 24 trace elements Contrib Mineral Petrol 113 1-8
[30]  
Hayward N(1994)Experimental and natural partitioning of Th, U, Pb and other trace elements between garnet, clinopyroxene and basaltic melts Chem Geol 117 149-166