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硅酸盐熔/流共存体系中元素分配系数研究的几个问题 被引量:2
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作者 唐群力 胡瑞忠 吴开兴 《地质地球化学》 CSCD 2003年第3期88-92,共5页
随着实验地球化学的快速发展,元素在熔/流体系中的分配行为引起研究者的广泛关注。自二十世纪70年代以来,研究者对元素在硅酸盐熔/流体系中的分配行为进行了大量研究,并取得了一些重要成果。本文对近30年来国内外在该领域的研究现状进... 随着实验地球化学的快速发展,元素在熔/流体系中的分配行为引起研究者的广泛关注。自二十世纪70年代以来,研究者对元素在硅酸盐熔/流体系中的分配行为进行了大量研究,并取得了一些重要成果。本文对近30年来国内外在该领域的研究现状进行了归纳、总结,探讨了固相组成、金属元素本身的物理化学性质、流体组分中阴、阳离子对硅酸盐熔/流体系中元素分配行为的影响,并指出了当前研究中存在的主要问题,希望对今后的实验研究起到一定的借鉴作用。 展开更多
关键词 实验地球化学 元素 熔/流体相 分配系数
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Fluid/melt in continental deep subduction zones: Compositions and related geochemical fractionations 被引量:11
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作者 XIAO YiLin SUN He +3 位作者 GU HaiOu HUANG Jian LI WangYe LIU Lei 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第9期1457-1476,共20页
Plate subduction is the most magnificent process in the Earth. Subduction zones are important sites for proceeding matter- and energy- transports between the Earth's surface and the interior, continental crust gro... Plate subduction is the most magnificent process in the Earth. Subduction zones are important sites for proceeding matter- and energy- transports between the Earth's surface and the interior, continental crust growth, and crust-mantle interactions. Besides, a number of geological processes in subduction zones are closely related to human beings' daily life, such as volcanic eruptions and earthquakes, formation of mineral deposits. Subduction process thus has long been the centric topic of Earth sciences. The finding in 1980 s that continental crust could be subducted to mantle depths is a revolutionary progress in plate tectonic theory. Compared to oceanic crust, continental crust is colder, drier, lighter, and much more geochemically/isotopically heterogeneous. Hence, continental subduction process would affect the structure, compositions and evolutions of the overlying mantle wedge even more. During continental subduction and subsequent exhumation, fluids and melts can be generated in the(de)hydration process and partial melting process, respectively. These melts/fluids play important roles in crust-mantle interactions, elemental migrations, isotopic fractionations, and mantle metasomatism. By summarizing recent research works on subduction zones in this paper, we present a review on the types, physicochemical conditions and compositions of fluids/melts, as well as the migration behaviors of fluid-related characteristic elements(Nb-Ta-V) and the fractionation behaviors of non-traditional stable isotopes(Li-Mg) in subduction zones. The aim of this paper is to provide the readers an update comprehensive overview of the melt/fluid activities in subduction zones and of Li-Mg isotope systematics in subduction-related rocks and minerals. 展开更多
关键词 subduction process melt/fluid composition crust-mantle interaction elemental mobility isotopic fractionation
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