Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A Novel Approach in Hydrogeochemical Exploration for Uranium Mineralization: an Example from West Central Sinai, Egypt

View through CrossRef
AbstractGroundwater in contact with ore deposits may acquire a chemical composition that could be used as a guide for exploration. Eight well‐water samples are collected from a known uranium‐mineralized area near Abu Zenima, west central Sinai to examine the applicability of using the hydrogeochemical technique in the search for uranium mineralization in similar arid areas. The analytical chemical data of the ground water is compared with ground radiometric measurements. The obtained results indicate that groundwater affected by uranium mineralization has a specific relativity of major anions expressed essentially as SO4>Cl>HCO3 and to a lesser extent as C1>SO4>HCO3, associated as a rule with low magnesium content. This association constitutes a signature of uranium mineralization on the composition of groundwater in west central Sinai and could be used as an important exploration guide in the search for uranium deposits in similar areas. Anomalies in Ni, Fe, Zn and Cr and other pathfinder elements in groundwater can furnish geochemical guides to uranium ores. The immobile trace element anomalies, including Zn, Ni and Fe are strongly distributed near the orebody; whereas the relatively mobile trace elements, including Co, U, V and Cr, constitute the dispersion haloes away from the orebody. A new hydrogeochemical discrimination diagram is constructed to be used as a quick and cost effective exploration tool in the search for uranium occurrences in environmentally similar arid areas. Based on the obtained results, a new site for uranium occurrence, west of W. Baba, is delineated and recommended for future detailed geological and geochemical surveying.
Title: A Novel Approach in Hydrogeochemical Exploration for Uranium Mineralization: an Example from West Central Sinai, Egypt
Description:
AbstractGroundwater in contact with ore deposits may acquire a chemical composition that could be used as a guide for exploration.
Eight well‐water samples are collected from a known uranium‐mineralized area near Abu Zenima, west central Sinai to examine the applicability of using the hydrogeochemical technique in the search for uranium mineralization in similar arid areas.
The analytical chemical data of the ground water is compared with ground radiometric measurements.
The obtained results indicate that groundwater affected by uranium mineralization has a specific relativity of major anions expressed essentially as SO4>Cl>HCO3 and to a lesser extent as C1>SO4>HCO3, associated as a rule with low magnesium content.
This association constitutes a signature of uranium mineralization on the composition of groundwater in west central Sinai and could be used as an important exploration guide in the search for uranium deposits in similar areas.
Anomalies in Ni, Fe, Zn and Cr and other pathfinder elements in groundwater can furnish geochemical guides to uranium ores.
The immobile trace element anomalies, including Zn, Ni and Fe are strongly distributed near the orebody; whereas the relatively mobile trace elements, including Co, U, V and Cr, constitute the dispersion haloes away from the orebody.
A new hydrogeochemical discrimination diagram is constructed to be used as a quick and cost effective exploration tool in the search for uranium occurrences in environmentally similar arid areas.
Based on the obtained results, a new site for uranium occurrence, west of W.
Baba, is delineated and recommended for future detailed geological and geochemical surveying.

Related Results

Uranium and Thorium
Uranium and Thorium
AbstractUranium is a heavy, radioactive metal, the 92nd element in the periodic table, and a member of the actinide series. Its name and chemical symbol U are derived from the plan...
CRITICALITY ANALYSIS OF URANIUM STORAGE FACILITY WITH FORMATION RACKS
CRITICALITY ANALYSIS OF URANIUM STORAGE FACILITY WITH FORMATION RACKS
Uranium materials are needed for the uranium fuel production of research reactors and radioisotope. Before the uranium material is used, it is stored in the storage facility. One o...
Hydrogeochemical impacts on uranium migration in the Opalinus Clay at Mont Terri
Hydrogeochemical impacts on uranium migration in the Opalinus Clay at Mont Terri
Reactive transport models taking into account water-rock interactions are used to simulate the migration behaviour of radionuclides at potential disposal sites for highly radioacti...
Uranium Provinces in China
Uranium Provinces in China
Abstract  Three uranium provinces are recognized in China, the Southeast China uranium province, the Northeast China‐Inner Mongolia uranium province and the Northwest China (Xinjia...
Geological comparison between east European and Canadian uranium deposits
Geological comparison between east European and Canadian uranium deposits
The comparison of some geological features between the Canadian and East European (including the Asian part of U. S.S. R.) uranium deposits and types of deposits show many similari...
Outline of Uranium Resources Characteristics and Metallogenetic Regularity in China
Outline of Uranium Resources Characteristics and Metallogenetic Regularity in China
Uranium, as one of twenty–six kinds of important minerals in China, is strategic resource and energy mineral, which has been thoroughly investigated in the project of National Pote...

Back to Top