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DOI10.1016/j.oregeorev.2006.05.008
Diversity of platinum-group minerals in podiform chromitites of the late Proterozoic ophiolite, Eastern Desert, Egypt: Genetic implications
Ahmed, Ahmed Hassan
通讯作者Ahmed, Ahmed Hassan
来源期刊ORE GEOLOGY REVIEWS
ISSN0169-1368
EISSN1872-7360
出版年2007
卷号32期号:1-2页码:1-19
英文摘要

Podiform chromitites are frequently distributed as lensoidal pods in the central and southern parts of the Eastern Desert, Egypt. They are, in most cases, hosted by fully serpentinized peridotite which is a part of dismembered ophiolite complexes of the Pan-African belt of Late Precambrian age. Serpentinites are the predominant components in the ophiolitic melange, either as matrix or as variably sized blocks, and are derived from harzburgite and subordinate dunite. The central Eastern Desert (CED) chromitites have a wide cornpositional range from high-Cr to high-Al varieties, whereas those of the southern Eastern Desert (SED) have a very restricted compositional range. The Cr# of spinel ranges frorn 0.5 up to 0.8 in the former, while it is around 0.8 in the latter.


Platinum-group element (PGE) mineralization has been recently reported in podiform chromitites from the late Proterozoic Pan-African ophiolite of the Eastern Desert of Egypt. The populations of platinum-group minerals (PGM) in the studied CED and SED chromitites are quite distinguishable; they are mainly sulfides (Os-rich laurite) in the former, and Os-Ir alloy in the latter. Sulfarsenides and arsenides are also found in subordinate amounts from both chromitites. The most abundant base metal sulfides (BMS) in the Eastern Desert chromitites of Egypt are millerite, heazlewoodite, pentlandite, chalcopyrite and pyrite. The sulfur fugacity and temperature conditions are the main controller of PGE mineralogy in the host chromitite at the initial stage within the upper mantle. Os-rich laurite is stable at high sulfur fugacity and low temperature conditions, whereas Os-Ir alloy is stable at lower sulfur fugacity and higher temperature conditions. The diversity of PGE mineralogy combined with the differences in petrological characteristics of chromian spinels from CED chromitites to SED ones suggests different degrees of partial melting of the mantle rocks of this ophiolite which, in turn may be attributed to different tectonic settings. During the post-magmatic processes, i.e., serpentinization, the primary PGM, e.g., Os-rich laurite and Os-Ir alloy, can be modified at low temperatures to secondary PGM. (0 2007 Elsevier B.V All rights reserved.


英文关键词chromitite PGE PGM laurite os-ir alloy precambrian ophiolite Egypt
类型Review
语种英语
国家Egypt
收录类别SCI-E
WOS记录号WOS:000249859200001
WOS关键词OS-IR ALLOY ; ULTRAMAFIC COMPLEX ; GROUP ELEMENTS ; COMPOSITIONAL VARIATION ; VOURINOS COMPLEX ; SULFUR FUGACITY ; UPPER-MANTLE ; LAVA LAKE ; RU ; FRACTIONATION
WOS类目Geology ; Mineralogy ; Mining & Mineral Processing
WOS研究方向Geology ; Mineralogy ; Mining & Mineral Processing
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/155567
作者单位(1)Helwan Univ, Fac Sci, Dept Geol, Cairo 11795, Egypt
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Ahmed, Ahmed Hassan. Diversity of platinum-group minerals in podiform chromitites of the late Proterozoic ophiolite, Eastern Desert, Egypt: Genetic implications[J],2007,32(1-2):1-19.
APA Ahmed, Ahmed Hassan.(2007).Diversity of platinum-group minerals in podiform chromitites of the late Proterozoic ophiolite, Eastern Desert, Egypt: Genetic implications.ORE GEOLOGY REVIEWS,32(1-2),1-19.
MLA Ahmed, Ahmed Hassan."Diversity of platinum-group minerals in podiform chromitites of the late Proterozoic ophiolite, Eastern Desert, Egypt: Genetic implications".ORE GEOLOGY REVIEWS 32.1-2(2007):1-19.
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