Distribution of potentially toxic metal and radionuclide contamination in soils related to phosphogypsum waste stockpiling in the Eshidiya Mine, Jordan

Author:

Al-Hwaiti Mohammad S.,Ranville James F.

Publisher

Geological Society of London

Subject

General Earth and Planetary Sciences,Geochemistry and Petrology,General Environmental Science,General Chemistry

Reference88 articles.

1. Abed A.M. 1994. Shallow Marine Phosphorite-Chert-Palygorskite Association, Upper Cretaceous Amman Formation, Jordan. In: Lijima A. Abed A.M. Garrison R.E. (eds) Siliceous, Phosphatic and Glauconitic Sediments of the Tertiary and Mesozoic. Proc. of the 29th Inter. Geol. Cong., Part C, Kyoto, Japan, 24 August–3 September/1992. Utrecht, The Netherlands, 205–223.

2. Sedimentology, geochemistry, economic potential and palaeogeography of an Upper Cretaceous phosphorite belt in the southeastern desert of Jordan

3. Role of Upper Cretaceous oyster buildups in the deposition and accumulation of high-grade phosphorites in central Jordan;Abed;Journal of Sedimentary Research B,1998

4. Abed A.M. Rushdi S. Mustafa A. 2008. Uranium and potentially toxic metals during the mining, beneficiation, and processing of phosphorite and their effects on ground Water in Jordan. Mine Water Environment DOI 10.1007/s10230-008-0039-3.

5. Multivariate statistics and spatial interpretation of geochemical data for assessing soil contamination by potentially toxic elements in the mining area of Stratoni, north Greece

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