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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Partitioning of Cu, Ni, An, and platinum-group elements between monosulfide solid solution and sulfide melt under controlled oxygen and sulfur fugacities
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Partitioning of Cu, Ni, An, and platinum-group elements between monosulfide solid solution and sulfide melt under controlled oxygen and sulfur fugacities

机译:在控制的氧和硫逸度下,单硫化物固溶体和硫化物熔体之间的铜,镍,锑和铂族元素之间的分配

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摘要

We have performed six experiments in which we equilibrated monosulfide solid solution (mss) with sulfide melt in evacuated silica capsules containing solid buffers to fix oxygen and sulfur fugacity, at temperatures of 950 degrees C, 1000 degrees C and 1050 degrees C at bulk concentrations of similar to 50 ppm for each of the PGE and Au, 5% Ni, and 7% Cu. Concentrations of O, S, Fe, Ni and Cu were determined by electron microprobe, whereas precious metal concentrations were determined by laser-ablation inductively-coupled mass spectrometry. Partition coefficients of all elements studied show minimal dependences on oxygen fugacity from the IW to the QFM buffers when sulfur fugacity is fixed at the Pt-PtS buffer. Cu, Pt, Pd and Au are strongly incompatible and Ru remains moderately to strongly compatible under all conditions studied. At all oxygen fugacities, at the Pt-PtS sulfur buffer, Ir and Rh remain highly compatible in mss. In the single run at both low oxygen and low sulfur fugacity Ir and Rh were found to be strongly incompatible in mss. At QFM and Pt-PtS the partition coefficient for Ni shows weak temperature dependence, ranging from 0.66 at 1050 degrees C to 0.94 at 950 degrees C. At lower oxygen and sulfur fugacity Ni showed much more incompatible behavior. Comparison with the compositions of sulfide ores from the Lindsley deposit of Sudbury suggests that the sulfide magma evolved under conditions close to the QFM and Pt-PtS buffers. The compatible behavior observed for Ni, Ir and Rh at Lindsley and most other magmatic sulfide deposits hosted by mafic rocks requires equilibration of mss and sulfide liquid at moderately high sulfur fugacity and low temperatures near to the solidus of the sulfide magma. We argue that this constraint requires that the sulfide magma must have evolved by equilibrium crystallization, rather than fractional segregation of mss as is commonly supposed. Copyright (c) 2005 Elsevier Ltd.
机译:我们进行了六个实验,在950℃,1000℃和1050℃的温度下,我们在抽真空的二氧化硅胶囊中用硫化物熔体平衡了单硫化物固溶体(mss)与硫化物的熔体,以固定氧气和硫的逸度。对于PGE和Au,5%的Ni和7%的Cu,分别类似于50 ppm。 O,S,Fe,Ni和Cu的浓度是通过电子探针确定的,而贵金属的浓度是通过激光烧蚀电感耦合质谱法确定的。当硫逸度固定在Pt-PtS缓冲液上时,所有研究元素的分配系数均显示出从IW到QFM缓冲液对氧逸度的依赖性最小。在所有研究的条件下,Cu,Pt,Pd和Au都强烈不相容,Ru保持中等至强相容性。在所有氧气逸度下,在Pt-PtS硫缓冲液中,Ir和Rh在mss中保持高度兼容。在低氧和低硫逸度的单次运行中,发现Ir和Rh的mss强烈不相容。在QFM和Pt-PtS下,Ni的分配系数显示出较弱的温度依赖性,范围从1050摄氏度的0.66到950摄氏度的0.94。在较低的氧气和硫逸度下,Ni表现出更多的不相容行为。与Sudbury Lindsley矿床硫化物矿石成分的比较表明,硫化物岩浆在接近QFM和Pt-PtS缓冲液的条件下演化。在Lindsley的Nis,Ir和Rh和大多数其他镁铁质岩浆形成的岩浆硫化物矿床中观察到的相容行为要求在中等高的硫逸度和接近硫化物岩浆固相线的低温下平衡mss和硫化物液体。我们认为,该约束条件要求硫化物岩浆必须已经通过平衡结晶演化,而不是通常认为的mss分数偏析。版权所有(c)2005 Elsevier Ltd.

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