Occurrence and mineral chemistry of chromite and related silicates from the Hongshishan mafic-ultramafic complex, NW China with petrogenetic implications
Autor: | Yingmin Yu, Chunming Wu, Wei Wei, Xinbiao Lv, Heng Wang, Banxiao Ruan, Jing Feng |
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Rok vydání: | 2016 |
Předmět: |
Mineral
Olivine 010504 meteorology & atmospheric sciences Gabbro Geochemistry engineering.material 010502 geochemistry & geophysics 01 natural sciences Geophysics Geochemistry and Petrology Ultramafic rock engineering Phlogopite Chromite Mafic Geology 0105 earth and related environmental sciences Hornblende |
Zdroj: | Mineralogy and Petrology. 111:693-708 |
ISSN: | 1438-1168 0930-0708 |
DOI: | 10.1007/s00710-016-0480-0 |
Popis: | The Hongshishan mafic-ultramafic complex is located in the western Beishan Terrane, NW China, and hosts an economic Ni-Cu deposit. Chromite as accessory mineral from the complex is divided into three types based on its occurrence and morphology. Quantitative electron probe microanalysis (EPMA) have been conducted on the different types of chromites. Type 1 chromite occurs as inclusions within silicate minerals and has relatively homogeneous composition. Type 2 chromite occurs among serpentine, as interstitial phase. Type 3 chromite is zoned and exhibits a sudden change in compositions from core to rim. Type 1 chromite occurs in olivine gabbro and troctolite showing homogeneous composition. This chromite is more likely primary. Interstitial type 2 and zoned type 3 chromite has compositional variation from core to rim and is more likely modified. Abundant inclusions of orthopyroxene, phlogopite and hornblende occur within type 2 and type 3 chromites. The parental melt of type 1 chromite has an estimated composition of 14.5 wt% MgO, 12.3 wt% Al2O3 and 1.9 wt% TiO2 and is characterized by high temperature, picritic affinity, hydrous nature and high Mg and Ti contents. Compositions of chromite and clinopyroxene are distinct from those of Alaskan-type complexes and imply that the subduction-related environment is not reasonable. Post orogenic extension and the early Permian mantle plume are responsible for the emplacement of mafic-ultramafic complexes in the Beishan Terrane. The cores of zoned chromites are classified as ferrous chromite and the rims as ferrian chromite. The formation of ferrian rim involves reaction of ferrous chromite, forsterite and magnetite to produce ferrian chromite and chlorite, or alternaively, the rim can be simply envisioned as the result of external addition of magnetite in solution to the already formed ferrous chromite. |
Databáze: | OpenAIRE |
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