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IDENTIFICATION OF ALKALI-SILICA REACTIONS IN SANTA MARIA ISLAND AIRPORT

Medeiros, Sara, Fernandes, Isabel, Nunes, Joao

First published: 2014-06-20https://doi.org/10.5593/sgem2014/b12/s2.062View metrics

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Publication details

Title
IDENTIFICATION OF ALKALI-SILICA REACTIONS IN SANTA MARIA ISLAND AIRPORT
Authors
Medeiros, Sara, Fernandes, Isabel, Nunes, Joao
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 14th SGEM GeoConference on SCIENCE AND TECHNOLOGIES IN GEOLOGY, EXPLORATION AND MINING
Publisher
Stef92 Technology
Year
2014
Pages
Not available yet
ISSN
1314-2704
ISBN
978-619-7105-08-7
Language
en
Publication type
Conference Paper
Keywords
References30
  1. Marfil S.A. & Maiza P.J. Assessment of the potential alkali reactivity of rhyolitic rocks from Argentina. Proceedings of the 10 th IAEG International Congress, United Kingdom, pp 1-6, 2006.

  2. Katayama T., Helgason T.S. & Olafsson H. Petrography and alkali-reactivity of some volcanic aggregates from Iceland. Proceedings of the 10 th on Alkali-Aggregate Reaction in Concrete (A. Shayan Ed.), Australia, pp 377-384, 1996.

  3. Katayama T., John S.T. & Futawaga T. The petrographic comparison of rocks from Japan and New Zealand Potential reactivity related to interstitial glass and silica minerals. Proceedings of the 8 th International Conference on Alkali-Aggregate Reaction in Concrete (K. Okada, S. Nishibayashi and M. Kawamura (Eds)), Japan, 1989, pp. 537- 542.

  4. Korkanç M. & Tugrul A. Evaluation of Selected Basalts from the point of alkali- silica reactivity. Cement and Concrete Research, vol 35, No 3, pp. 505 -512, 2005.

  5. Braga Reis M.O., Silva H.S. & Silva A.S. Ocorrência de reacções álcalis-inerte em Portugal. Estudos de Casos. Atas do Encontro Nacional Betão Estrutural, LNEC, Portugal, 14 p, 1996. (in portuguese)

  6. Abdel-Monem A.A., Fernandez L.A. & Boone G.A. K-Ar ages from the Eastern Azores group (Santa Maria, São Miguel and Formigas islands). Lithos, vol 8, pp 247- 254, 1975.

  7. Serralheiro A. A Geologia da ilha de Santa Maria. Açoreana vol 10, no 1, pp 141- 192. (in portuguese)., 1990.

  8. Serralheiro A. & Madeira J. Stratigraphy and Geochronology of Santa Maria island (Azores). In: livro de homenagem a Carlos Romariz. Departamento de Geologia da Faculdade de Ciências da Universidade de Lisboa, pp 357-376, 1990.

  9. Medeiros S., Katayama T., Zanon V., Fernandes I., Silva A.S., Nunes J.C., Miranda V., Ramos V. & Soares D. Assessment of the potential alkali-reactivity of volcanic aggregates from Azores islands. Proceedings of the 12 th International Conference on Alkali-Aggregate Reaction in Concrete (K. Okada, S. Nishibayashi and M. Kawamura (Eds)), USA, 2012, 10p. 14th SGEM GeoConference on Science and Technologies in Geology, Exploration and Mining

  10. Thaulow N., Jakobsen U.H. & Clark B. Composition of alkali silica gel and ettringite in concrete railroad ties: SEM-EDX and X-ray diffraction analyses. Cement and Concrete Research vol 26, no 2, pp 309– 318, 1996.

  11. Diamond S. Chemistry and other characteristics of ASR gels. Proceedings of the 11th International Conference on Alkali– Aggregate Reaction, Québec, Canada (Bérubé MA, Fournier B and Durand B (eds)). CRIB, Université Laval, Québec, Canada, pp 31– 40, 2000.

  12. Wakizaka Y. Alkali-silica reactivity of Japanese rocks. Engineering Geology, vol 56, pp 211-221, 2000.

  13. RILEM AAR-1: Detection of potential alkali-reactivity of aggregates – petrographic method. Alkali-reactivity and prevention – assessment, specification and diagnosis of alkali-reactivity. In TC 191 – ARP, Materials & Structures (prepared by Sims I and Nixon P). Springer, Dordrecht, the Netherlands, vol. 36, pp. 472-479, 2003.

  14. Katayama T. Diagnosis of alkali-aggregate reaction – polarizing microscopy and SEM/EDS analysis. Proceedings of the 6 h International Conference on Concrete under Severe Conditions (CONSEC’10), Merida, Mexico. CRC Press, United Kingdom, 2010, vol. 1, pp 19-34.

  15. Batic O., Maiza P. & Sota J., 1994. Alkali-silica reactions in basaltic rocks. NBRI method, Cement and Concrete Research, vol 24/7, pp. 1317-1326, 1994.

  16. Marfil S.A. & Maiza P.J. Assessment of the potential alkali reactivity of rhyolitic rocks from Argentina. Proceedings of the 10 th IAEG International Congress, United Kingdom, pp 1-6, 2006.

  17. Katayama T., Helgason T.S. & Olafsson H. Petrography and alkali-reactivity of some volcanic aggregates from Iceland. Proceedings of the 10 th on Alkali-Aggregate Reaction in Concrete (A. Shayan Ed.), Australia, pp 377-384, 1996.

  18. Katayama T., John S.T. & Futawaga T. The petrographic comparison of rocks from Japan and New Zealand Potential reactivity related to interstitial glass and silica minerals. Proceedings of the 8 th International Conference on Alkali-Aggregate Reaction in Concrete (K. Okada, S. Nishibayashi and M. Kawamura (Eds)), Japan, 1989, pp. 537- 542.

  19. Korkanç M. & Tugrul A. Evaluation of Selected Basalts from the point of alkali- silica reactivity. Cement and Concrete Research, vol 35, No 3, pp. 505 -512, 2005.

  20. Braga Reis M.O., Silva H.S. & Silva A.S. Ocorrência de reacções álcalis-inerte em Portugal. Estudos de Casos. Atas do Encontro Nacional Betão Estrutural, LNEC, Portugal, 14 p, 1996. (in portuguese)

  21. Abdel-Monem A.A., Fernandez L.A. & Boone G.A. K-Ar ages from the Eastern Azores group (Santa Maria, São Miguel and Formigas islands). Lithos, vol 8, pp 247- 254, 1975.

  22. Serralheiro A. A Geologia da ilha de Santa Maria. Açoreana vol 10, no 1, pp 141- 192. (in portuguese)., 1990.

  23. Serralheiro A. & Madeira J. Stratigraphy and Geochronology of Santa Maria island (Azores). In: livro de homenagem a Carlos Romariz. Departamento de Geologia da Faculdade de Ciências da Universidade de Lisboa, pp 357-376, 1990.

  24. Medeiros S., Katayama T., Zanon V., Fernandes I., Silva A.S., Nunes J.C., Miranda V., Ramos V. & Soares D. Assessment of the potential alkali-reactivity of volcanic aggregates from Azores islands. Proceedings of the 12 th International Conference on Alkali-Aggregate Reaction in Concrete (K. Okada, S. Nishibayashi and M. Kawamura (Eds)), USA, 2012, 10p. 14th SGEM GeoConference on Science and Technologies in Geology, Exploration and Mining

  25. Thaulow N., Jakobsen U.H. & Clark B. Composition of alkali silica gel and ettringite in concrete railroad ties: SEM-EDX and X-ray diffraction analyses. Cement and Concrete Research vol 26, no 2, pp 309– 318, 1996.

  26. Diamond S. Chemistry and other characteristics of ASR gels. Proceedings of the 11th International Conference on Alkali– Aggregate Reaction, Québec, Canada (Bérubé MA, Fournier B and Durand B (eds)). CRIB, Université Laval, Québec, Canada, pp 31– 40, 2000.

  27. Wakizaka Y. Alkali-silica reactivity of Japanese rocks. Engineering Geology, vol 56, pp 211-221, 2000.

  28. RILEM AAR-1: Detection of potential alkali-reactivity of aggregates – petrographic method. Alkali-reactivity and prevention – assessment, specification and diagnosis of alkali-reactivity. In TC 191 – ARP, Materials & Structures (prepared by Sims I and Nixon P). Springer, Dordrecht, the Netherlands, vol. 36, pp. 472-479, 2003.

  29. Katayama T. Diagnosis of alkali-aggregate reaction – polarizing microscopy and SEM/EDS analysis. Proceedings of the 6 h International Conference on Concrete under Severe Conditions (CONSEC’10), Merida, Mexico. CRC Press, United Kingdom, 2010, vol. 1, pp 19-34.

  30. Batic O., Maiza P. & Sota J., 1994. Alkali-silica reactions in basaltic rocks. NBRI method, Cement and Concrete Research, vol 24/7, pp. 1317-1326, 1994.

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Number of times cited according to Crossref: 2

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