Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1011
  • Pages: 12-21
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Heading: Raw materials

A review of studies on the nature of the most effective methods for regulating the liquefaction and fluidity of kaolin from the Zhuravliny Log deposit is presented. The data on the material, mineral and micro-aggregate compositions of different types of kaolin, as well as the features of the morphology and crystal-chemical properties of kaolinite are presented. It is shown that microaggregates of kaolin consist of a mixture of kaolinite of different sizes: from large to small with an average degree of ordering, up to superfine and X-ray amorphous.
Platova R.A., Shmarina A.A., Stafeeva Z.V. Multidimensional colorimetric gradation of kaolin // Glass and Ceramics. 2009. N 1. S. 17 - 22. Platova RA, Smarina AA, Stafeeva ZV Multidimensional colorimetric gradation of kaolin // Glass and Ceramic. 2009. V. 66. N1-2. R. 17-22. Maslennikova G. N., Kolyshkina N. V., Shamrikov A. S., Stafeeva Z. V. Enriched kaolin from the Zhuravliny Log deposit for ceramic production // Glass and ceramics. 2002. N 1. S. 15 - 19. Maslennikova GN, Kolyshkina NV, Shamrikov AS, Stafeeva ZV Concentrated kaolin from the Zhuravlinyi Log deposit for ceramic production // Glass and Ceramic. 2002. V. 59. N1-2. R. 17-21. Evtushenko E.I., Sysa O.K. Structural modification of clay raw materials in hydrothermal conditions // Izvestiya vuzov. North Caucasian region. Technical science. 2006. N 2. P. 82 - 86. Argynbaev T. M., Stafeeva Z. V., Platova R. A. Kaolin and quartz of the Zhuravliny Log deposit // Ceramics and refractories: promising solutions and nanotechnologies: collection of articles. report Int. conf. with elements of a scientific school for youth. Belgorod: BSTU Publishing House, 2010. P. 39 - 44. Gorbachev B.F., Vasyanov G.P., Kakorin V.I., Luzin V.P. and minerals. 2007. N 2. P. 187 - 200. Belogub EV Use of the complex of X-ray diffractometry and thermogravimetry in the assessment of kaolin raw materials // Minerals: structure, properties, research methods. Yekaterinburg, Miass: URO RAN, 2010. pp. 24 - 26. Giese RF Kaolin minerals; structures and stabilities // Reviews in Mineralogy and Geochemistry. 1988. V. 19. N 1. P. 29 - 66. Shamrikov A. S. Technology of enrichment and stabilization of ceramic properties of kaolins from the Zhuravliny Log deposit: dis. ..... cand. tech. sciences. Tomsk, 2002.24 p. Vodyanitskiy Yu. N. Diagnostics of waterlogged mineral soils. M .: GNU Soil Institute. V.V.Dokuchaeva, 2008.144 p. Bortnikov N.S., Mineeva R.M., Novikov V.N., Sobolev S.V. Influence of the size effect on the crystallomorphological properties of kaolinite according to electron microscopy and EPR data (Zhuravliny Log deposit, South Ural) // Doklady Akademii Nauk. 2011. T. 439. N2. S. 240-243. Sokolova T.A., Dronova T.Ya., Tolpeshta I.I. Clay minerals in soils: textbook. allowance. Tula: Grif and K, 2005.336 p. Kovalev G.I., Levin D.I. scientific. tr. L .: GIKI, 1977. Issue. 1 (54). Pp. 3 - 24. Aparicio P., Galan E. Mineralogical interference on kaolinite cristallinity index measurements // Clays and Clay Minerals. 1999. V. 47. N1. P. 12-27. Mestdagh MM, Vielvoye L., Herbillon AJ Iron in kaolinite; The relationship between kaolinite cristallinity and iron content // Clay Minerals. 1980. V. 15. N 1. P. 1-13 Balan E., Allard Th., Boizot B., Morin G., Muller J.-P. Structural Fe 3+ in natural kaolinites: new insights from electron paramagnetic resonance spectra fitting at X and Q-band frequencies // Clays and Clay Minerals. 1999. V. 47. N 5. P. 605-616. Clozel B., Allard T., Muller J.-P. Nature and stability of radiation-induced defects in natural kaolinites: new results and a reappraisal of published works // Clays and Clay Minerals. 1994. V. 42. N 6. P. 657 - 666. Hinckley DN Variability in 'crystallinity' values ??among the kaolin deposit of the coastal plain of Georgia and South Carolina // Clays and Clay Minerals. 1962. V. 11. No. 1. P. 229-235. Maslennikova G.N., Kuvshinova K.A., Platov Yu. T. Structural-phase changes of iron-containing impurities in the process of porcelain formation // Glass and Ceramics. 1997. N12. S. 11-14. Maslennikova GN, Kuvshinova KA, Platov Yu. T. Structural-phase changes in iron-bearing impurities in the process of porcelain formation // Glass and Ceramic. 1997. V. 54. N11-12. R. 390-393. Gaite J.-M., Ermakoff P., Allard Th., Muller J.-P. Paramagnetic Fe 3+ : a sensitive probe for disorder in kaolinite // Clays and Clay Minerals. 1997. V. 45. N 4. P. 496 - 505. Bortnikov NS, Mineeva RM, Soboleva SV Paramagnetic centers Fe 3+ on the surface of kaolinite particles // Reports of the Academy of Sciences. 2008. T. 422. N 1. P. 85 - 87. Platova R. A., Rassulov V. A., Shmarina A. A. Identification of mineral impurities in the composition of kaolin and porcelain based on it by the method of luminescence spectroscopy // Abstracts int. scientific. conf. `` Fedorov Readings '': Sat. M., 2008. S. 293 - 295. Delineau Th., Allard Th., Muller J.-P. et al. Ftir reflectance vs. EPR studies of structural iron in kaolinites // Clays and Clay Minerals. 1994. V. 42. N 3. P. 308 - 320. Bortnikov NS, Mineeva RM, Novikov IM et al. Iron in kaolinite kaolinic and bauxite-bearing granite weathering crust according to EPR data // Reports Academy of Sciences. 2008. T. 423. N 6. P. 1 - 4. Grevtsev VA Mineralogical and technological assessment of the quality of non-metallic minerals by radio spectroscopy methods: dis. ... Dr. Geol.-Mineral. sciences. Kazan, 2011, 46 p. Ceramic production processes / ed. W.J. Kingery. M .: Inostr. Lit., 1960, pp. 36 - 44. Ma Chi, Eggleton RA Cation exchange capacity of kaolinite // Clays and Clay Minerals. 1999. V. 47. N 2. P. 174 - 180. Platova RA, Maslennikova GN Biochemical nature of gley formation during aging of clay materials // Glass and ceramics. 2009. N 9.P. 14 - 20. Platova RA, Maslennikova GN Biochemical nature of gley formation during aging of clayey materials (review) // Glass and Ceramic. 2009. V. 66. N 9 - 10. P. 318 - 323. Shelobolina ES, Pickering SM, Lovley DR Fe-cycle bacteria from industrial clays mined in Georgia, USA // Clays and Clay Minerals. 2005. V. 53. N 6. R. 580 - 586. Turova ES Microbial transformation of kaolins and kaolin-containing raw materials: dis. ... Cand. biol. sciences. M., 1997.24 p. Vakalova T.V., Pogrebenkov V.M. Clay raw materials of the Siberian region // Glass and ceramics. 2002. N 12. S. 23 - 27. Vakalova TV, Pogrebenkov VM Argillaceous materials in the Siberian Region // Glass and Ceramic. 2002. V. 59. N11-12. R. 409-413. Uriev NB Structured dispersed systems // Soros educational journal. 1998. N 6.P. 42 - 47.

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Platova R. A. and Stafeeva Z. V. Nature of Liquescence and Fluidity of Kaolin of the Zhuravliny Log Deposit (a Review). Steklo i keramika. 2012:85(3):12-21. (in Russ). UDK 666.3