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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 NICKEL, COPPER, IRIDIUM, RHENIUM, PLATINUM, AND PALLADIUM BETWEEN MONOSULFIDE SOLID SOLUTION AND SULFIDE LIQUID - EFFECTS OF COMPOSITION AND TEMPERATURE
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PARTITIONING OF NICKEL, COPPER, IRIDIUM, RHENIUM, PLATINUM, AND PALLADIUM BETWEEN MONOSULFIDE SOLID SOLUTION AND SULFIDE LIQUID - EFFECTS OF COMPOSITION AND TEMPERATURE

机译:单硫化物固体溶液和硫化物液体对镍,铜,铱,R,铂和钯的分配-组成和温度的影响

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Partitioning of Ni, Cu, and Pt-group elements (Ir, Rh, Pt, Pd) between monosulfide solid solution (Mss) and sulfide liquid has been investigated in the Fe-Ni-Cu-S system at 1000 and 1100 degrees C and one atmosphere pressure. The Nernst partition coefficients (D = wt% in Mss/wt% in sulfide liquid) for Ni vary significantly from 0.19 to 1.17, while the values of D-Cu show a limited range of 0.17-0.27. The partition coefficients for Ir range from 1.06 to 13. Rhodium has a partition coefficient slightly lower than that of Ir under the same conditions, ranging from 0.37 to 8.23. The partition coefficients for Pt and Pd vary from 0.05 to 0.16, and from 0.08 to 0.27, respectively. The partition coefficients depend strongly on the bulk S contents of the system. They increase with increasing S contents in both Mss and liquid. Platinum, Pd, and Cu behave incompatibly during Mss crystallization, strongly partitioning into sulfide liquid. Nickel is incompatible in S-undersaturated systems and S-saturated systems. It becomes compatible when the system is S-oversaturated, Rhodium is compatible in S-saturated and S-oversaturated systems, but incompatible in S-undersaturated systems. Iridium changes from highly compatible through moderately compatible to slightly compatible when the system changes from S-oversaturated through S-saturated to S-undersaturated. The effect of temperature on metal partitioning is observed only in S-oversaturated systems, in which the partition coefficients for Ni and Rh increase with decrease of temperature. The compatible behavior of Ir and Ph, and incompatible behavior of Pt and Pd and Cu under S-saturated conditions appears to support the hypothesis that the observed metal zonation in many sulfide ore deposits such as Sudbury, Ontario and Noril'sk, Siberia resulted from sulfide liquid fractionation. [References: 29]
机译:在Fe-Ni-Cu-S系统中,研究了在1000和1100℃下Ni,Cu和Pt族元素(Ir,Rh,Pt,Pd)在单硫化物固溶体和硫化物液体之间的分配。一大气压。 Ni的能斯特分配系数(D = Mss中的重量%/硫化物液体中的wt%)从0.19到1.17显着变化,而D-Cu的值显示在0.17-0.27的有限范围内。 Ir的分配系数为1.06〜13。在相同条件下,铑的分配系数比Ir的分配系数稍低,为0.37〜8.23。 Pt和Pd的分配系数分别在0.05到0.16和0.08到0.27之间变化。分配系数在很大程度上取决于系统的整体S含量。它们随着女士和液体中S含量的增加而增加。 Mss结晶过程中,铂,钯和铜的行为不相容,会强烈地分解成硫化物液体。镍在S饱和系统和S饱和系统中不兼容。当系统为S过饱和时,它变得兼容;铑在S饱和和S过饱和系统中兼容,但在S过饱和系统中不兼容。当系统从过饱和的S变为饱和的S变为欠饱和的铱时,铱将从高度兼容变为中度兼容。温度对金属分配的影响仅在S-过饱和体系中观察到,其中Ni和Rh的分配系数随温度降低而增加。 Ir和Ph的相容行为以及S饱和条件下Pt和Pd与Cu的相容行为似乎支持以下假设:在诸如Sudbury,Ontario和Noril'sk,Siberia等许多硫化矿矿床中观察到的金属带化是由于硫化物液体分馏。 [参考:29]

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