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RECYCLING OF MICROSILICA OF THE FERROALLOY PRODUCTION IN THE COMPOSITE MORTAR

Mitterpach, Jozef, Duricova, Anna, HYBSKA, Helena, Samesova, Dagmar

First published: 2015-06-20https://doi.org/10.5593/sgem2015/b62/s26.035View metrics

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Title
RECYCLING OF MICROSILICA OF THE FERROALLOY PRODUCTION IN THE COMPOSITE MORTAR
Authors
Mitterpach, Jozef, Duricova, Anna, HYBSKA, Helena, Samesova, Dagmar
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, NANO, BIO AND GREEN TECHNOLOGIES FOR A SUSTAINABLE FUTURE
Publisher
Stef92 Technology
Year
2015
Pages
265-272
ISSN
1314-2704
ISBN
978-619-7105-43-8
Language
en
Publication type
Conference Paper
References30
  1. Aitcin,P., C., Vysokohodnotný beton. 1 vyd. Praha: Informační centrum ČKAIT, 2005. 320p., ISBN 80-86769-39-9

  2. EN 197-1 Cement.Part 1:Composition, specifications and conformity criteria for common cements

  3. Langan, B.,W., Wenig, K., Ward, M., A., Effect of silica fume and fly ash on heat of hydratation of Portland cement. Cement and Concrete Research, 32. - 1051.

  4. Papadakis,V.,G., Experimental investigation and theoretical modeling of silica fume activity in concrete. Cement and Concrete Research, 29. 79- 86.

  5. Mitchell,D., R., G., Hinezak,L., Day, R., A., Interaction of silica fume with calcium hydroxide solutions and hydrated cement pastes. Cement and Concrete Research, 28. 1571 – 1584.

  6. Salem, Th., M., Electrical conductivity and rheological properties of ordinary Portland cement – silica fume and calcium hydroxide – silica fume pastes. Cement and Concrete Research, 32. 1473- 1481.

  7. Shah.S.P., Ahmad S.H.: High performance concrete and applications. 1st ed . London: Edward Arnold, 1994. 415p.

  8. Almusallem, A., Effect of silica fume on the mechanical properties of low quality coarse aggregate concrete. Cement and Concrete Composites, 26, 2004, pp.891 -900.

  9. Garcia et.al. High strenght micro/nano fine cement. 12 th. Int. Congress on the Chemistry of Cement, Montreal, Canada. 2007.

  10. Gleize, P.J.P., Müller,A. & Roman,H.R. 2003. Microstructural investigation of a silica fume – cement- lime mortar. Cement and Concrete Composites,25., 2003, pp.171 – 175. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org Section Green Buildings Technologies and Materials

  11. Kato,H. Katumoto, R. & Ushijama, H. 1997. Properties of high strength concrete using belite – rich cement and silica fume. Semento Konkurito Ronbunshu, 51, 364 – 369.

  12. Kinoshita,M. 1995. Study on application of super high rangereducer for ultra high strengh silica fume concrete. Semento Konkurito Ronbunshu, 49, 192 – 197.

  13. Ajay et.al., Effect of Micro Silica on the Strenght of Concrete with Ordinary Portland Cement. Research Journal of Engineering Sciences, Vol. 1 (3), 2012.

  14. STN EN 12390-3:2009, Testing hardened concrete.Part 3:Compressive strength of test specimens

  15. STN EN 12390-5: 2009, Testing hardened concrete.Part 5:Flexural strength of test specimens. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific Conferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  16. Aitcin,P., C., Vysokohodnotný beton. 1 vyd. Praha: Informační centrum ČKAIT, 2005. 320p., ISBN 80-86769-39-9

  17. EN 197-1 Cement.Part 1:Composition, specifications and conformity criteria for common cements

  18. Langan, B.,W., Wenig, K., Ward, M., A., Effect of silica fume and fly ash on heat of hydratation of Portland cement. Cement and Concrete Research, 32. - 1051.

  19. Papadakis,V.,G., Experimental investigation and theoretical modeling of silica fume activity in concrete. Cement and Concrete Research, 29. 79- 86.

  20. Mitchell,D., R., G., Hinezak,L., Day, R., A., Interaction of silica fume with calcium hydroxide solutions and hydrated cement pastes. Cement and Concrete Research, 28. 1571 – 1584.

  21. Salem, Th., M., Electrical conductivity and rheological properties of ordinary Portland cement – silica fume and calcium hydroxide – silica fume pastes. Cement and Concrete Research, 32. 1473- 1481.

  22. Shah.S.P., Ahmad S.H.: High performance concrete and applications. 1st ed . London: Edward Arnold, 1994. 415p.

  23. Almusallem, A., Effect of silica fume on the mechanical properties of low quality coarse aggregate concrete. Cement and Concrete Composites, 26, 2004, pp.891 -900.

  24. Garcia et.al. High strenght micro/nano fine cement. 12 th. Int. Congress on the Chemistry of Cement, Montreal, Canada. 2007.

  25. Gleize, P.J.P., Müller,A. & Roman,H.R. 2003. Microstructural investigation of a silica fume – cement- lime mortar. Cement and Concrete Composites,25., 2003, pp.171 – 175. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org Section Green Buildings Technologies and Materials

  26. Kato,H. Katumoto, R. & Ushijama, H. 1997. Properties of high strength concrete using belite – rich cement and silica fume. Semento Konkurito Ronbunshu, 51, 364 – 369.

  27. Kinoshita,M. 1995. Study on application of super high rangereducer for ultra high strengh silica fume concrete. Semento Konkurito Ronbunshu, 49, 192 – 197.

  28. Ajay et.al., Effect of Micro Silica on the Strenght of Concrete with Ordinary Portland Cement. Research Journal of Engineering Sciences, Vol. 1 (3), 2012.

  29. STN EN 12390-3:2009, Testing hardened concrete.Part 3:Compressive strength of test specimens

  30. STN EN 12390-5: 2009, Testing hardened concrete.Part 5:Flexural strength of test specimens. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific Conferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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