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

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1015
  • Pages: 15-22
  • Share:

Heading: Science for ceramic production

An overview of works on biological effects on clay materials and ceramic masses is presented. The main directions and differences in the technology of biological treatment are determined depending on the type of microorganisms, the method of obtaining and the composition of the culture liquid, the conditions and method of biological treatment, the material composition and natural cenosis of clay materials. The role of individual components of the culture fluid in changing biological and biochemical processes is shown. The experience of using bioprocessing in the ceramic industry is considered.
Karavaiko, G.I., Microbial destruction of silicate minerals, Tr. Institute of Microbiology. S. N. Vinogradsky. Moscow: Nauka, 2004. Issue. XII. Pp. 172 - 196. Augustinik A.I. Ceramics. Moscow: Stroyizdat, 1975.572 p. Maslennikova GN, Platov Yu. T., Khalilullova RA et al. Influence of microorganisms on the properties of porcelain masses during aging (review) // Glass and ceramics. 1999. N 10. S. 15 - 23. Maslennikova GN, Platov Yu. T., Khalilullova RA et al. The Effect of Microorganisms on the Properties of Porcelain Mixtures in Maturing // Glass and Ceram. 1999. V. 56. N 9 - 10. R. 312 - 319. Budnikov PP Ceramic technology: raw materials of ceramic production, methods of their research and processing. Kharkov - Kiev: GNTI of Ukraine, 1937.521 p. Kind V.A., Okorokov S.D. Building materials: their production, properties and application. L.-M .: Gosstroyizdat, 1934.683 p. Bogachikhin M. M. Ceramics of China: history, legends, secrets. M .: Fast-Print, 1998.386 p. Aristovskaya T.V. Microbiology of soil formation processes. Moscow: Nauka, 1980.187 p. Zavarzin G. A., Kolotilova N. N. Introduction to natural history microbiology: textbook. allowance. Moscow: University, 2001.256 p. Hochella MF Sustaining Earth: Thoughts on the Present and Future Role of Mineralogy in Environmental Science // Miner. Mag. 2002. V. 66. P. 627 - 652. Aleksandrov VG, Zak GA Bacteria that destroy aluminosilicates // Microbiology. 1950. T. 19. N 2. P. 97. Avakyan Z. A., Pivovarova T. A., Karavaiko G. I. Characteristics of a new species Vasillus mucilaginosus // Microbiology. 1986. T. 55. 3. P. 477 - 482. Surman KI About soil bacteria close to the species B. mucilaginosus n.sp: dis. ... Cand. biol. sciences. L., 1962.20 p. Vlasov A.S. Biological methods of enrichment of mineral raw materials and technological mixtures in the production of ceramics // Chemistry and technology of silicate and refractory nonmetallic materials. L., 1989. S. 155 - 165. Baranov VV Influence of biological treatment of ceramic masses on the technology and properties of ceramic facing tiles: dis. ... Cand. tech. sciences. M., 1985.16 p. Chernyshov A. N. Influence of biological treatment of masses on the technological properties of porcelain: dis. ... Cand. tech. sciences. M., 1990.16 p. Khalilullova R. A. Increasing the whiteness of porcelain using complex processing of mineral raw materials: dis. ... Cand. tech. sciences. M., 1994.24 p. Platova R.A., Maslennikova G.N. Biochemical nature of the gley formation process 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 Ceram. 2009. V. 66. N 9 - 10. R. 318 - 323. Dyatlova E. M., Kakoshko E. S., Biryuk V. A., Markevich R. M. Improving the rheological properties of clay suspensions treated with the culture liquid Bacillus mucilaginosus // Glass and ceramics. 2010. N 3.P. 29 - 32. Dyatlova EM, Kakoshko ES, Biryuk VA, Markevich RM Improvement of the rheological properties of clayey suspensions treated with Bacillus mucilaginosus culture liquid // Glass and Ceram. 2010. V. 67. N 3 - 4. R. 89 - 92. Pat. N 2083527 from 10.07.1997, Application N 95116993. Method of bleaching clay-containing ceramic raw materials / Avakyan Z. A., Platov Yu. T., Halilullova R. A., Maslennikova G. N. et al. Turova E. S. Microbial transformation of kaolins and kaolin-containing raw materials: dis. ... Cand. biol. sciences. M., 1997.24 p. Shelobolina ES, Pickering SM, Lovley DR Fe-cycle bacteria from industrial clays mined in Georgia, USA // Clay and Clay Minerals. 2005. V. 53. N 6. P. 580 - 586. Styriakova I., Styriak I. Iron removal from kaolins by bacterial leaching // Ceramics - Silicate. 2000. V. 44. No. 4. P. 135-141 . Hailiang Dong, Deb. P. Jaisi, Kim J. Microbe-clay mineral interactions // American Mineralogist. 2009. V. 94. N 11 - 12. P. 1505 - 1519. Hosseini MR, Pazouki M., Ranjbar M. Bioleaching of iron from highly contaminated kaolin clay by Aspergillus niger // Applied Clay Science. 2007. V. 37. No. 3 - 4. P. 251 - 257. Volkan Arslan, Oktay Bayat. Removal of Fe from kaolin by chemical leaching and bioleaching // Clay and Сlay minerals. 2009. V. 57. No. 6. P. 787 - 794. Min-Rong Guo, Qiu-Xiang He, Yu-Man Li. Removal of Fe from kaolin using dissimulator Fe (III) -reducing bacteria // Clay and Clay Minerals. 2010. V. 58. N 4. P. 515 - 521. Anandita Roy, Samarendra K. Singh, Banerjee PC Bio-beneficiation of kaolin and feldspar and its effect on fired characteristics of triaxial porcelain // Bull. Mater. Sci. 2010. V. 33. N 3. P. 333 - 338. Rossi J. Biodegradation of aluminosilicates: achievements and prospects // Tr. Int. seminar "Biotechnology of metals". M., 1985. P. 412 - 424. Vodyanitskiy Yu. N. Chemistry, mineralogy and color of gleyed soils. Moscow: GNU Soil Institute, 2006.170 p. Roden EE Analysis of long-term bacterial vs. chemical Fe (III) oxide reduction kinetics // Geochimica et Cosmochimica Asta. 2004. V. 68. N 15. P. 3205 - 3216. Lovley DR Extracellular electron transfer: wires, capacitors, iron lungs, and more // Geobiology. 2008. N 6. P. 225 - 231. Emmerich K., Schuhmann R. Comprehensive material characterization of clay mineral raw material for the development of microbiological processing technologies // CFI / Ber.DKG. 2009. V. 86. N 3.R. 29 - 34.

The article can be purchased
electronic!

PDF format

700 руб

UDK 666.3
Article type: Science for ceramic production
Make a request

Keywords

Use the reference below to cite the publication

Platova R. A., Chernyshov A. N., Maslennikova G. N. Bio-processing of clay materials and ceramic masses: main trends, techniques and practical experience. Steklo i keramika. 2012:85(7):15-22. (in Russ). UDK 666.3