Arid
DOI10.1016/j.jafrearsci.2014.07.015
Provenance of the heavy mineral-enriched alluvial deposits at the west coast of the Red Sea. Implications for evolution of Arabian-Nubian crust
Mahar, Munazzam Ali1; Ibrahim, Tarek M. M.2; Goodell, Philip C.1
通讯作者Mahar, Munazzam Ali
来源期刊JOURNAL OF AFRICAN EARTH SCIENCES
ISSN1464-343X
EISSN1879-1956
出版年2014
卷号100页码:510-523
英文摘要

Here we present the LA-ICP-MS U-Pb ages and Hf isotopic record of detrital zircons from the active alluvial fans at the west coast of the Red Sea. The Ras Manazal alluvial fan (primarily composed of zircon, magnetite with some rutile, ilmenite and monazite) yielded a relatively restricted age population ranges from 765 to 666 Ma. These ages and present-day drainage pattern is consistent that the sediments are primarily derived from erosion of nearby subduction related granitoids in the immediate west (i.e., not more than 50 km from the Red Sea coast) of the fan. In contrast, approximately 160 km south, at the Egypt-Sudan border, the Wadi Diit fan is relatively more enriched in ilmenite and REE-bearing phases (e.g., thorite, monazite, xenotime, garnet, etc.) and yielded five zircon age populations of (1) 824-733 Ma, (2) 730-705 Ma, (3) 646-608 Ma, (4) 516-500 Ma, and (5) 134-114 Ma. The age populations 1-3 if coupled with the present-day drainage pattern can be related to the earlier subduction related and later post collision granitoids in the southern part of the South Eastern Desert and Gebeit terrane of northern Sudan. Sparse Early Cretaceous zircons (134-114 Ma) are derived from the Mesozoic volcanic suits in the source region. However, the age group 516-500 Ma is enigmatic. Wadi Diit zircons are primarily derived from granitoids in the broad S-N directed Hamisana Shear Zone and its subordinate SW to NE directed Onib-Sol-Hamed Suture Zone. These shear zones provided pathways for the present-day drainage system for sediment transportation to the Wadi Diit and adjacent coastal region. We infer that the ca. 500 Ma late-stage magmatic zircons represent a hitherto unknown magmatic event, possibly related to the shear heating associated with the crustal scale shear zones. This implies that the shear zones in the South Eastern Desert and northern Sudan remained thermally active as late as similar to 500 Ma. The time resolved hafnium composition (epsilon Hf (t)) of both fans varies from +3.5 to +13.5. Our new U-Pb ages and Hf isotopic composition suggests that the detrital zircons were derived from the Neoproterozoic juvenile crust. This is consistent with the Neoproterozoic juvenile igneous and metamorphic rocks in the Eastern Desert and northern Sudan. (C) 2014 Elsevier Ltd. All rights reserved.


英文关键词Arabian-Nubian Shield Detrital zircon geochronology Magmatic evolution Alluvial fan deposits Provenance Juvenile Neoproterozoic crust
类型Article
语种英语
国家USA ; Egypt
收录类别SCI-E
WOS记录号WOS:000345473200035
WOS关键词EAST-AFRICAN OROGEN ; ZIRCON U-PB ; HF-ISOTOPE ; LU-HF ; SEDIMENT PROVENANCE ; AGE CONSTRAINTS ; VOLCANIC-ROCKS ; GNEISS DOME ; DESERT ; SHIELD
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/182887
作者单位1.Univ Texas El Paso, Dept Geol Sci, El Paso, TX 79968 USA;
2.Nucl Mat Author, Cairo, Egypt
推荐引用方式
GB/T 7714
Mahar, Munazzam Ali,Ibrahim, Tarek M. M.,Goodell, Philip C.. Provenance of the heavy mineral-enriched alluvial deposits at the west coast of the Red Sea. Implications for evolution of Arabian-Nubian crust[J],2014,100:510-523.
APA Mahar, Munazzam Ali,Ibrahim, Tarek M. M.,&Goodell, Philip C..(2014).Provenance of the heavy mineral-enriched alluvial deposits at the west coast of the Red Sea. Implications for evolution of Arabian-Nubian crust.JOURNAL OF AFRICAN EARTH SCIENCES,100,510-523.
MLA Mahar, Munazzam Ali,et al."Provenance of the heavy mineral-enriched alluvial deposits at the west coast of the Red Sea. Implications for evolution of Arabian-Nubian crust".JOURNAL OF AFRICAN EARTH SCIENCES 100(2014):510-523.
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