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Effect of phosphate quality on foam generation during the phosphoric acid production process

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Języki publikacji
EN
Abstrakty
EN
The presence of organics materials in phosphate ores generates foam during the manufacture of phosphoric acid, thus affecting the production performance and the quality of the products. Today, in the phosphate industry defoamers are used to reduce the negative impact of foam phosphoric production. In the present work, we focused on root cause evaluation for foam generation during the phosphoric acid production process, we evaluated the effect of phosphate rock quality in terms of organic carbon (OC) and carbonate content, on foam generation using a laboratory protocol for foaming ability evaluation. The results show that there is a relationship between the volume of the foam generated and the values of those impurities, while the volume of foam generated is higher when the concentration of OC and Carbonate is high. In our work, we confirm that the foaming ability of the phosphate rock can be avoided if the concentration of organic carbon less than 0.1% and less than 3% for carbonate.
Słowa kluczowe
Rocznik
Strony
48--57
Opis fizyczny
Bibliogr. 16 poz., rys., tab., wykr.
Twórcy
  • Laboratory of Analytical Chemistry and PhysicoChemistry of Materials, Department of Chemistry, Faculty of Sciences Ben M'Sik, UniversityHassan II, Casablanca, Morocco
  • Engineering, industrial management, and innovation laboratory, faculty of Science and Techniques, University HASSAN I, BP: 577, Settat, Morocco
  • Laboratory of Analytical Chemistry and PhysicoChemistry of Materials, Department of Chemistry, Faculty of Sciences Ben M'Sik, UniversityHassan II, Casablanca, Morocco
autor
  • OCP Group.JorfLasfar, ElJadida, Morocco
autor
  • Laboratory of Analytical Chemistry and PhysicoChemistry of Materials, Department of Chemistry, Faculty of Sciences Ben M'Sik, UniversityHassan II, Casablanca, Morocco
  • CBS laboratory, Mohammed VI Polytechnic University, Ben Guerir, Morocco
autor
  • Mines Saint-Etienne ENSM-SE Centre sciences des Processus Industriels et Naturels (SPIN)
  • Laboratory of Analytical Chemistry and PhysicoChemistry of Materials, Department of Chemistry, Faculty of Sciences Ben M'Sik, UniversityHassan II, Casablanca, Morocco
Bibliografia
  • ASHRAF, M. ZAFAR, Z. I., ANSARI, T. M., 2007. Selective leaching of low grade calcareous phosphate rock in succinic acid, Hydrometallurgy, 18(2) 145 - 157.
  • BECKER, P. 1989. Phosphates and phosphoric acid: raw materials, technology and economics of the wet processes, Marcel Decker Inc., New York.
  • BENDADA, A., 2005. Etude expérimentale et modélisation de l'élimination des cations métalliques de l'acide phosphorique issu du procédé humide. Application aux cas de l'aluminium, le fer et le cuivre, PhD. Thesis.
  • BENMOUMEN, M., 1997. Mise au point de methodes de separation desmatieres organiques contenues dans les phosphates. Rapport cerphos.
  • BERTHOLUS, M., DEFRANCESCHI, M., 2004. Les apatites des phosphates naturels. Techniques de l’Ingénieur AF 6610.
  • BLAZY, P., JDID, E.A., 1997. Calcination of calcareous sedimentary Akashat phosphate (Irak) using a rotary kiln and a flash furnace, C. R. Acad. Sci. Paris, série IIa 325, 761-764.
  • BLAZY, P. JDID, E.A., 1997. Phénomènes de clinkérisation et de collage lors de la calcination du phosphate gangue calcaire d’Akashat (Irak), C. R. Acad. Sci., 324, série IIa, 79-86.
  • CUNEY, M., 2004. Facteurs contrôlant la nature et la concentration des impuretés dans les phosphates sédimentaires,
  • COVAPHOS I (Ed.) Proceedings of the first international conference on the valorization of phosphates and phosphorus compounds, pp. 11-14.
  • DOKHRI, H., 1987. Relation dans les minerais phosphates entre la matiere organique et certains elements mineraux et de traces, rapport cerphos 601.87
  • DURAND, 1980. Kerogen Insoluble organic matter from sedimentary rock, Editions Technip, 35-53.
  • EL-JALLAD, I. S., 1977.Investigations on the upgrading processes of the low grade phosphate, Ph. D. Thesis, Cairo University.
  • MELLAH, A., SILEM, A., BOUALIA, A., KADA, R. 1992. Adsorption of organic matter from wet phopshoric acid using activated carbon: equilibrium study, Chemical Engineering and Processing, 31, 191-194.
  • MICHAEL, S., 1997. Wet Process Phosphoric Acid Production Problems and Solutions, Industrial Minerals, 355, 61-71.
  • PARTIN, D., 2005. When Nameplate Is Not Enough—Expanding Phos Acid Capacity with Defoamers, International Conference and exhibition British sulfur, Paris, https://arrmaz.com/products/phosphoric-acidproduction/defoamers/
  • SALAGER J.-L., CHOPLIN, L., 2008. Formation, formulation et propriétés Techniques de l’Ingénieur, Vol. Génie des Procédés, J2-200, 1–14.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3cc22576-bd44-45b8-9031-f09b339bb926
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