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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Partitioning of V, Mn, Co, Ni, Cu, Zn, As, Mo, Ag, Sn, Sb, W, Au, Pb, and Bi between sulfide phases and hydrous basanite melt at upper mantle conditions
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Partitioning of V, Mn, Co, Ni, Cu, Zn, As, Mo, Ag, Sn, Sb, W, Au, Pb, and Bi between sulfide phases and hydrous basanite melt at upper mantle conditions

机译:在上地幔条件下,硫化物相与含水碱铁矿熔体之间的V,Mn,Co,Ni,Cu,Zn,As,Mo,Ag,Sn,Sb,W,Au,Pb和Bi之间的分配

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摘要

The partitioning of 15 major to trace metals between monosulfide solid solution (MSS), sulfide liquid (SL) and mafic silicate melt (SM) was determined in piston-cylinder experiments performed at 1175-1300°C, 1.5-3.0GPa and oxygen fugacities ranging from 3.1 log units below to 1.0 log units above the quartz-fayalite-magnetite fO_2 buffer, which conditions are representative of partial melting in the upper mantle in different tectonic settings. The silicate melt was produced by partial melting of a natural, amphibole-rich mantle source rock, resulting in hydrous (?5wt% H_2O) basanitic melts similar to low-degree partial melts of metasomatized mantle, whereas the major element composition of the starting sulfide (?52wt% Fe; 39wt% S; 7wt% Ni; 2wt% Cu) was similar to the average composition of sulfides in this environment. SL/SM partition coefficients are high (≥100) for Au, Ni, Cu, Ag, Bi, intermediate (1-100) for Co, Pb, Sn, Sb (±As, Mo), and low (≤1) for the remaining elements. MSS/SM partition coefficients are generally lower than SL/SM partition coefficients and are high (≥100) for Ni, Cu, Au, intermediate (1-100) for Co, Ag (±Bi, Mo), and low (≤1) for the remaining elements. Most sulfide-silicate melt partition coefficients vary as a function of fO_2, with Mo, Bi, As (±W) varying by a factor >10 over the investigated fO_2 range, Sb, Ag, Sn (±V) varying by a factor of 3-10, and Pb, Cu, Ni, Co, Au, Zn, Mn varying by a factor of 3-10. The partitioning data were used to model the behavior of Cu, Au, Ag, and Bi during partial melting of upper mantle and during fractional crystallization of primitive MORB and arc magmas. Sulfide phase relationships and comparison of the modeling results with reported Cu, Au, Ag, and Bi concentrations from MORB and arc magmas suggest that: (i) MSS is the dominant sulfide in the source region of arc magmas, and thus that Au/Cu ratios in the silicate melt and residual sulfides may decrease with increasing degree of partial melting, (ii) both MSS and sulfide liquid are precipitated during fractional crystallization of MORB, and (iii) fractional crystallization of arc magmas is strongly dominated by MSS.
机译:在1175-1300°C,1.5-3.0GPa和氧气逸度下进行的活塞缸实验中确定了单硫化物固溶体(MSS),硫化物液体(SL)和镁硅酸盐熔体(SM)之间的15种主要金属到痕量金属的分配范围从石英-铁橄榄石-磁铁矿fO_2缓冲区以下的3.1 log单位到上方的1.0 log单位,这些条件代表了在不同构造背景下上地幔的部分熔融。硅酸盐熔体是通过天然,富含闪石的地幔烃源岩的部分熔融而产生的,导致含水的(?5wt%H_2O)的basanitic熔体类似于交代化地幔的低度局部熔体,而起始硫化物的主要元素组成(≤52wt%的Fe; 39wt%的S; 7wt%的Ni; 2wt%的Cu)与该环境中硫化物的平均组成相似。 SL / SM分配系数对于Au,Ni,Cu,Ag,Bi高(≥100),对于Co,Pb,Sn,Sb(±As,Mo)为(1-100),对于(≤1)为低(≤100)其余元素。 MSS / SM分配系数通常低于SL / SM分配系数,并且对于Ni,Cu,Au而言较高(≥100),对于Co,Ag(±Bi,Mo)而言中等(1-100),而较低(≤1 )的剩余元素。大多数硫化物-硅酸盐熔体分配系数随fO_2的变化而变化,在研究的fO_2范围内,Mo,Bi,As(±W)的变化系数> 10,Sb,Ag,Sn(±V)的变化系数为fO_2。 3-10,而Pb,Cu,Ni,Co,Au,Zn,Mn的变化系数为3-10。分配数据用于模拟上地幔部分融化以及原始MORB和弧岩浆的分步结晶过程中Cu,Au,Ag和Bi的行为。硫化物的相位关系以及建模结果与MORB和弧岩浆中报告的Cu,Au,Ag和Bi浓度的比较表明:(i)MSS是弧岩浆源区中的主要硫化物,因此Au / Cu随部分熔融程度的增加,硅酸盐熔体和残留硫化物的比率可能会降低,(ii)在MORB的分步结晶过程中,MSS和硫化物液体都会沉淀,并且(iii)MSS强烈控制着弧状岩浆的分步结晶。

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