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22                                New Trends in Eco-efficient and Recycled Concrete


         USEPA, 2016. Construction and Demolition Debris Generation in the United States, U.S.
             Environment Protection Agency, Office of Resource Conservation and Recovery, 23 p.
         Van Acker, A., 1998. Recycling of concrete at a precast concrete plant. 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.
             321 332.
         Van Der Wegen, G., Haverkort, R., 1998. Recycled construction and demolition waste as a
             fine aggregate for 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. 333 346.
         Vandamme, M., Ulm, F.-J., 2009. Nanogranular origin of concrete creep. Proc. Natl. Acad.
             Sci. 106 (26), 10552 10557.
         Vieira, J.P.B., Correia, J.R., de Brito, J., 2011. Post-fire residual mechanical properties of
             concrete made with recycled concrete coarse aggregates. Cem. Concr. Res. 41 (5),
             533 541.
         Vieira, T., Alves, A., de Brito, J., Correia, J.R., Silva, R.V., 2016. Durability-related perfor-
             mance of concrete containing fine recycled aggregates from crushed bricks and sanitary
             ware. Mater. Des. 90, 767 776.
         Wang, Z., Wang, L., Cui, Z., Zhou, M., 2011. Effect of recycled coarse aggregate on con-
             crete compressive strength. Trans. Tianjin Univ. 17 (3), 229 234.
         Wardeh, G., Ghorbel, E., Gomart, H., 2015. Mix design and properties of recycled aggregate
             concretes: applicability of Eurocode 2. Int. J. Concr. Struct. Mater. 9 (1), 1 20.
         Wesche, K., Schulz, R.R., 1982. Technology and properties of recycled concrete processed
             from concrete wastes (in German). Beton 32 (2/3), 64-68/108-112.
         Woolley, G.R., 1994. State of the art report use of waste materials in construction   techno-
             logical development. In: Goumans, J.J.J.M., van der Sloot, H.A., Aalbers, T.G. (Eds.),
             Studies in Environmental Science. Elsevier, pp. 963 977.
         Yanagibashi, K., Yonezawa, T., Arakawa, K., Yamada, M., 2002 A new concrete recycling
             technique for coarse aggregate regeneration process. In: Dhir, R.K., Dyer, T.D.,
             Halliday, J.E. (Eds.), Proceedings of the International Conference on Sustainable
             Concrete Construction, Scotland, UK, pp. 511 522.
         Yang, K., Chung, H., Ashour, A., 2008. Influence of type and replacement level of recycled
             aggregates on concrete properties. ACI Mater. J. 105 (3), 289 296.
         Zaharieva, R., Buyle-Bodin, F., Wirquin, E., 2004. Frost resistance of recycled aggregate
             concrete. Cem. Concr. Res. 34 (10), 1927 1932.
         Zhou, C.H., Chen, Z.P., 2017. Mechanical properties of recycled concrete made with differ-
             ent types of coarse aggregate. Constr. Build. Mater. 134, 497 506.
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