Please use this identifier to cite or link to this item: https://elib.belstu.by/handle/123456789/53572
Title: Оff-balance phosphate raw materials of the zhanatas deposit: Comprehensive study of composition and structure
Authors: Shaimerdenova, G. S.
Zhantasov, K. T.
Dormeshkin, O. B.
Mussirepova, E. B.
Tastanbekova, B. O.
Keywords: phosphorite
IR spectrum
elemental analysis
mineralogy
extraction phosphoric acid
Issue Date: 2021
Citation: Shaimerdenova G.S. Оff-balance phosphate raw materials of the zhanatas deposit: Comprehensive study of composition and structure / Shaimerdenova G.S. [et al.] // News of the national academy of sciences of the Republic of Kazakhstan. Series chemistry and technology. – 2021. - № 5-6. – P. 93-98
Abstract: The article presents the results of physicochemical studies of the composition and structure of off-balance raw materials from the Zhanatas deposit, located in the phosphorite-containing depression Karatau (South Kazakhstan). For the study, modern instrumental methods of physical and chemical analysis were used. The elemental-material composition is determined by the method of chemical analysis in accordance with the rules of regulatory documents and standards. The results of these studies are of practical importance for their further processing into phosphorus-containing products. Mineral fertilizers, including diammonium phosphate and off-balance phosphate raw materials in the agroindustrial sector of the economy play a key role in increasing the yield and quality of agricultural crops. Therefore, given the export orientation of the products of the phosphorus industry, it cannot be considered outside of macroeconomics, information is provided on the mineral petrographic analysis and the chemistry of the process of obtaining DAP based on the results of X-ray phase analysis obtained by IRS and on a scanning electron microscope. Filming was carried out on a D8 Advance (Bruker) apparatus, Cu-Kа, tube voltage 40 kV, current 40 mA. The processing of the obtained data of diffraction patterns and the calculation of interplanar distances were carried out using the EVA software. Sample decoding and phase search were carried out using the Search / match program using the PDF-2 powder diffractometric data base (ICDD).
URI: https://elib.belstu.by/handle/123456789/53572
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