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The use of three physico-chemical methods in the study of the organic matter associated with the sedimentary phosphorites in Djebel Onk Basin, Algeria
Authors:Mohamed Dass Amiour  Hamid Mezghache  Brahim Elouadi
Institution:1. Department of Earth Sciences, Institute of Architecture and Geosciences, University of Ferhat Abbas, Setif, 19000, Algeria
4. Kouicem A. El Hak Road/El Hira Djamel, Collo, W. Skikda, 21200, Algeria
2. Department of Geology, Faculty of Earth Sciences, University of Badji Mokhtar, Annaba, BP 12, Annaba, 23000, Algeria
3. Laboratory of Chemical Analysis Elaboration and Materials Engineering (LEACIM), Université de La Rochelle, Avenue Michel Crépeau, 17042, La Rochelle, Cedex 01, France
Abstract:The study of the organic matter (OM) associated with the phosphate ore of Kef Essennoun deposit (Djebel Onk mining basin, Algeria) was with a view to determine the decomposition degree of the OM within the pellets and the matrix, and the conditions of diagenesis. The sedimentary phosphates of this deposit are constituted of sub-rounded, phosphate-rich grains (pellets) dispersed in a surrounding, much poorer than pellets in P, matrix (or gangue). The survey of the OM associated with both pellets and matrix used several types of analyses: scanning electron microscopy (SEM), scanning electron microscope with energy-dispersive X-ray analysis, Fourier transform infrared spectroscopy and nuclear magnetic resonance spectroscopy. The results show the OM, dispersed approximately homogeneously, in the form of large flat particles, within the gangue and within the phosphatic pellets in the form of small particles. The O/C ratio showed that the OM is more oxidised in the matrix than within the pellets. The oxidation increased with the phosphatisation rate of the pellets and more with the carbonation rate of the matrix, but it decreased with the silicification degree in the siliceous carbonated matrix. Two major functional classes were distinguished within pellets: aliphatic and oxygenated ones, the latter being fundamentally present in humic OM. The presence and abundance of these humic compounds in pelletal phosphorites are known from the 1980s and considered as witnessing a formation of apatite in a strictly closed environment, inside the pellet.
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