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18 New Trends in Eco-efficient and Recycled Concrete
Gupta, P., Khaudhair, Z., Ahuja, A., 2016. A new method for proportioning recycled con-
crete. Struct. Concr. 17 (4), 677 687.
Hansen, T.C., 1992. Recycling of Demolished Concrete and Masonry. E & FN Spon,
London, UK, p. 316.
Hiete, M., 2013. Chapter 4 Waste management plants and technology for recycling construc-
tion and demolition (C&D) waste: state-of-the-art and future challenges. In: Pacheco-
Torgal, F., Tam, V.W.Y., Labrincha, J.A., Ding, Y., Brito, Jd (Eds.), Handbook of
Recycled Concrete and Demolition Waste. Woodhead Publishing, pp. 53 75.
Ho, N.Y., Lee, Y.P.K., Lim, W.F., Zayed, T., Chew, K.C., Low, G.L., et al., 2013. Efficient
utilization of recycled concrete aggregate in structural concrete. J. Mater. Civil Eng. 25
(3), 318 327.
Hosokawa, Y., 1999 Concrete products using fine aggregate recycled from waste concrete
products. In: Lacasse, M.A., Vainer, D.J. (Eds.), Eighth International Conference on
Durability of Building Materials and Components, Ottawa, Canada, pp. 475 484.
Kenai, S., Debieb, F., Azzouz, L., 2002. Mechanical properties and durability of concrete
made with coarse and fine recycled aggregates. In: Dhir, R.K., Dyer, T.D., Halliday, J.
E. (Eds.), Proceedings of the International Symposium on Sustainable Concrete
Construction, Dundee, Scotland, UK, pp. 383 392.
Khalaf, F.M., 2006. Using crushed clay brick as coarse aggregate in concrete. J. Mater. Civil
Eng. 18 (4), 518 526.
Khalaf, F.M., DeVenny, A.S., 2004. Performance of brick aggregate concrete at high tem-
peratures. J. Mater. Civil Eng. 16 (6), 556 565.
Khalaf, F.M., DeVenny, A.S., 2005. Properties of new and recycled clay brick aggregates for
use in concrete. J. Mater. Civil Eng. 17 (4), 456 464.
Khatib, J.M., 2005. Properties of concrete incorporating fine recycled aggregate. Cem.
Concr. Res. 35 (4), 763 769.
Kikuchi, M., Dosho, Y., Miura, T., Narikawa, M., 1998. Application of recycled aggregate
concrete for structural concrete: Part 1 Experimental study on the quality of recycled
aggregate and recycled aggregate concrete. In: Dhir, R.K., Henderson, N.A.,
Limbachiya, M.C. (Eds.), Proceedings of the International Symposium on Sustainable
Construction: Use of Recycled Concrete Aggregate, London, UK, pp. 55 68.
Kimura, Y., Imamoto, K., Nagayama, M., Tamura, H., 2004 High quality recycled aggregate
concrete (HiRAC) processed by decompression and rapid release. In: Kashino, N.,
Ohama, Y. (Eds.), International RILEM Symposium on Environment-Conscious
Materials and Systems for Sustainable Development, College of Engineering, Nihon
University, Koriyama, Japan, pp. 163 170.
Koenders, E.A.B., Pepe, M., Martinelli, E., 2014. Compressive strength and hydration pro-
cesses of concrete with recycled aggregates. Cem. Concr. Res. 56, 203 212.
Kou, S.C., Poon, C.S., 2009a. Properties of concrete prepared with crushed fine stone, fur-
nace bottom ash and fine recycled aggregate as fine aggregates. Constr. Build. Mater.
23 (8), 2877 2886.
Kou, S.C., Poon, C.S., 2009b. Properties of self-compacting concrete prepared with coarse
and fine recycled concrete aggregates. Cem. Concr. Compos. 31 (9), 622 627.
Kou, S.C., Poon, C.S., 2013. Long-term mechanical and durability properties of recycled aggre-
gate concrete prepared with the incorporation of fly ash. Cem. Concr. Compos. 37, 12 19.
Kou, S.C., Poon, C.S., Chan, D., 2004. Properties of steam cured recycled aggregate fly ash
concrete. In: Va ´zquez, E., Hendriks, C., Janssen, G.M.T. (Eds.), International RILEM
Conference on the Use of Recycled Materials in Buildings and Structures, Barcelona,
Spain, pp. 590 599.