Calcined clay limestone cements (LC3)
Tài liệu tham khảo
WBCSD, Cement Sustainability Initiative
Scrivener, 2014, Options for the future of cement, Indian Concr. J., 88, 11
2015
IEA, WBCSD
F. Wang, K. Kovler, J.L. Provis, A. Buchwald, S. Kamali-Bernard, L. Courard, K. Sideris, Metakaolin as an effective supplementary cementitious material, Chapter in State of the Art Report From Rilem TC SCM, (to be published).
Avet, 2016, Development of a new rapid, relevant and reliable (R3) test method to evaluate the pozzolanic reactivity of calcined kaolinitic clays, Cem. Concr. Res., 85, 1, 10.1016/j.cemconres.2016.02.015
European Standard EN 196-1, Methods of testing cement - part 1: determination of strength.
Emmanuel, 2016, Second pilot production of limestone calcined clay cement in India: the experience, Indian Concr. J., 90, 57
F. Avet and K.L. Scrivener, Investigation of the calcined kaolinite content on the hydration of Limestone Calcined Clay Cement (LC3), Cem. Concr. Res. (accepted for publication).
H. Maraghechi, F. Avet, H. Wong, H. Kazemi, K. Scrivener Resistance of limestone-calcined clay binders with various kaolinite contents against chloride transportion. (in preparation).
ASTM, 2010
Antoni, 2013, 6001
Samson, 2003, Calculation of ionic diffusion coefficients on the basis of migration test results, Mater. Struct., 36, 156, 10.1007/BF02479554
Vieira, 2015, Production and use of cements with artificial pozzolan, 156
1981
Cancio Díaz, 2017, Limestone calcined clay cement as a low-carbon solution to meet expanding cement demand in emerging economies, J. Dev. Eng., 10.1016/j.deveng.2017.06.001
Delort, 2013
Joseph, 2016, An economic analysis of the production of limestone calcined clay cement in India, Indian Concr. J., 90, 22
