Identyfikatory
Języki publikacji
Abstrakty
Waste packaging glass with different chemical compositions were used to prepare lime-silicate products, a form of eco-friendly building materials. The percentages of glass, occurring in three colours: colourless, green and brown, were 33, 66 and 100 per cent by weight of quartz sand, which, along with lime, is the main component of silicate products. Compressive strength, bulk density and water adsorption were tested on autoclaved cylindrical specimens with a height and diameter of 25 mm. The results show that as the waste glass content of the autoclaved samples increases, the compressive strength and water adsorption increase, at the same time, the bulk density decreases. The chemical composition that determines the colour of the glass shows differences in the physical and chemical characteristics obtained.
Rocznik
Tom
Strony
89--96
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
autor
- Kielce University of Technology, Poland
Bibliografia
- 1. Al-Zubaid, A.B., Shabeeb, K.M., & Ali, A.I. (2017) Study the effect of recycled glass on the mechanical properties of green concrete. Energy Procedia, 119, 680-692.
- 2. Borek, K., & Czapik, P. (2022) Utilization of waste glass in autoclaved silica-lime materials. Materials, 15(2), 549.
- 3. Borek, K., Czapik, P., & Dachowski, R. (2022) Cement bypass dust as an ecological binder substitute in autoclaved silica-lime products. Materials, 16(1), 316.
- 4. Černý, V., Drochytka, R., Kulísek, K., & Húšt’avová, J. (2018) Influence of secondary raw materials on synthesis of tobermorite in lime-silicate composite. Ce/Papers, 2, 4, 439-444.
- 5. Chen, C.H., Huang, R., Wu, J.K., & Yang, C.C. (2006) Waste e-glass particles used in cementitious mixtures. Cement Concrete Research, 36, 3, 449-456.
- 6. Chen, C.H., Huang, R., Wu, J.K., & Yang, C.C. (2006) Waste e-glass particles used in cementitious mixtures. Cement Concrete Research, 36, 3, 449-456.
- 7. Czapik, P., Kuza, D., & Boroń, M. (2021) Influence of the waste glass uses on the cement mortar properties. Structure Environment, 13, 2, 45-51.
- 8. Guo, P., Meng, W., Nassif, H., Gou, H., & Bao, Y. (2020) New perspectives on recycling waste glass in manufacturing concrete for sustainable civil infrastructure. Construction and Building Materials,
- 257, 119579.
- 9. Idir, R., Cyr, M., & Arezki, T.H. (2011) Pozzolanic properties of fine and coarse color-mixed glass cullet. Cement and Concrete Composites, 33, 1, 19-29.
- 10. Idir, R., Cyr, M., & Tagnit-Hamou, A. (2010) Use of fine glass as ASR inhibitor in glass aggregate mortars. Construction and Building Materials, 24, 7, 1309-1312.
- 11. ISO 29581-2:2010 Cement - Test methods - Part 2: Chemical analysis by X-ray fluorescence.
- 12. Matos, A.M., & Sousa-Coutinho, J. (2012) Durability of mortar using waste glass powder as cement replacement. Construction and Building Materials, 36, 205-215.
- 13. Olofinnade, O.M., Ndambuki, J.M., Ede, A.N., & Booth, C. (2007) Application of waste glass powder as a partial cement substitute towards more sustainable concrete production. International Journal of Engineering Research in Africa, 31, 77-93.
- 14. Park, S.B., Lee, B.C., & Kim, J.H. (2004) Studies on mechanical properties of concrete containing waste glass aggregate. Cement Concrete Research, 34, 12, 2181-2189.
- 15. PN-EN 1008:2004 - Woda zarobowa do betonu - Specyfikacja pobierania próbek, badanie i ocena przydatności wody zarobowej do betonu, w tym wody odzyskanej z procesów produkcji betonu.
- 16. PN-EN 196-2:2013-11 Metody badania cementu - Część 2: Analiza chemiczna cementu.
- 17. PN-EN 772-1+A1:2015-10 Metody badań elementów murowych - Część 1: Określenie wytrzymałości na ściskanie.
- 18. PN-EN 772-21:2011 Metody badań elementów murowych - Część 21: Określanie absorpcji wody ceramicznych i silikatowych elementów murowych przez absorpcję zimnej wody.
- 19. Schmitz, A., Kamiński, J., Bianca, M.S., & Soria, A. (2011) Energy consumption and CO2 emissions of the European glass industry. Energy Policy, 39, 1, 142-155.
- 20. Shao, Y., Lefort, T., Moras, S., & Rodriguez, D. (2000) Studies on concrete containing ground waste glass. Cement Concrete Research, 30, 1, 91-100.
- 21. Shayan, A., & Xu, A. (2006) Performance of glass powder as a pozzolanic material in concrete: A field trial on concrete slabs. Cement Concrete Research, 36, 3, 457-468.
- 22. Stępień, A., Potrzeszcz-Sut, B., Prentice, D.P., Oey, T.J., & Balonis, M. (2020) The role of glass compounds in autoclaved bricks. Buildings, 10, 3, 41, 1-25.
- 23. Taha, B., & Nounu, G. (2008) Properties of concrete contains mixed colour waste recycled glass as sand and cement replacement. Construction and Building Materials 22, 5, 713-720.
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