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1.Jeong, J.Y., Jang, S.Y., Choi, Y.C., Jung, S.H., and Kim, S.I., “Effects of Limestone Powder and Silica Fume on the Hydration and Pozzolanic Reaction of High-Strength High-Volume GGBFS Blended Cement Mortars”, Journal of the Korea Concrete Institute, Vol.27, 2015, pp.127-136.DOI
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2.Jeong, J.Y., Jang, S.Y., Choi, Y.C., Jung, S.H., and Kim, S. I., “Effects of Replacement Ratio and Fineness of GGBFS on the Hydration and Pozzolanic Reaction of High-Strength High-Volume GGBFS Blended Cement Pastes”, Journal of the Korea Concrete Institute, Vol.27, 2015, pp.115-127.DOI
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9.Bilim, C., and Atis, C.D., “Alkali activation of mortars containing different replacement levels of ground granulated blast furnace slag”, Construction and Building Materials, Vol.28, 2012, pp.708-712.DOI
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12.Escalante-Garcia, J.I., Castro-Borges, P., Gorokhovsky, A., Rodriguez-Varela, F.J., “Portland cement-blast furnace slag mortars activated using waterglass: Effect of temperature and alkali concentration”, Construction and Building Materials, Vol.66, 2014, pp.323-328.DOI
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19.Bilim, C., and Atiş, C.D., “Alkali activation of mortars containing different replacement levels of ground granulated blast furnace slag”, Construction and Building Materials, 28, 2012, pp.708-712.DOI
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20.Hadj-sadok, A., Kenai, S., Courard, L., and Darimont, A., “Microstructure and durability of mortars modified with medium active blast furnace slag”, Construction and Building Materials, Vol.25, 2011, pp.1018-1025.DOI