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用于模拟陨铁金属的铁镍系统中分配系数的实验测定

Experimental Determination of Partitioning in the Fe-Ni System for Applications to Modeling Meteoritic Metals.

作者信息

Chabot Nancy L, Wollack E Alex, McDonough William F, Ash Richard D, Saslow Sarah A

机构信息

Johns Hopkins University Applied Physics Laboratory, Laurel, MD 20723, USA.

University of Maryland, College Park, MD 20742, USA.

出版信息

Meteorit Planet Sci. 2017 Jun;52(6):1133-1145. doi: 10.1111/maps.12864. Epub 2017 Apr 4.

DOI:10.1111/maps.12864
PMID:28943752
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5606159/
Abstract

Experimental trace element partitioning values are often used to model the chemical evolution of metallic phases in meteorites, but limited experimental data were previously available to constrain the partitioning behavior in the basic Fe-Ni system. In this study, we conducted experiments that produced equilibrium solid metal and liquid metal phases in the Fe-Ni system and measured the partition coefficients of 25 elements. The results are in good agreement with values modeled from IVB iron meteorites and with the limited previous experimental data. Additional experiments with low levels of S and P were also conducted, to help constrain the partitioning behaviors of elements as a function of these light elements. The new experimental results were used to derive a set of parameterization values for element solid metal-liquid metal partitioning behavior in the Fe-Ni-S, Fe-Ni-P, and Fe-Ni-C ternary systems at 0.1 MPa. The new parameterizations require that the partitioning behaviors in the light-element-free Fe-Ni system are those determined experimentally by this study, in contrast to previous parameterizations that allowed this value to be determined as a best-fit parameter. These new parameterizations, with self-consistent values for partitioning in the end-member Fe-Ni system, provide a valuable resource for future studies that model the chemical evolution of metallic phases in meteorites.

摘要

实验微量元素分配值常被用于模拟陨石中金属相的化学演化,但此前用于限制基本铁镍体系中分配行为的实验数据有限。在本研究中,我们开展了实验,在铁镍体系中生成了平衡的固态金属相和液态金属相,并测量了25种元素的分配系数。结果与从IVB型铁陨石模拟得到的值以及先前有限的实验数据吻合良好。我们还进行了低硫和低磷含量的额外实验,以帮助限制元素分配行为随这些轻元素的变化情况。新的实验结果被用于推导在0.1MPa下铁镍硫、铁镍磷和铁镍碳三元体系中元素固态金属-液态金属分配行为的一组参数化值。新的参数化要求在无轻元素的铁镍体系中的分配行为是本研究通过实验确定的,这与之前将该值作为最佳拟合参数确定的参数化方法不同。这些新的参数化方法,在端元铁镍体系中有自洽的分配值,为未来模拟陨石中金属相化学演化的研究提供了宝贵资源。