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82                                New Trends in Eco-efficient and Recycled Concrete


         Kalargaris, I., Tian, G., Gu, S., 2017. The utilisation of oils produced from plastic waste at
             different pyrolysis temperatures in a DI diesel engine. Energy 131, 179 185.
         Kan, A., Demirboga, R., 2009. A novel material for lightweight concrete production. Cem.
             Concr. Compos. 31, 489 495.
         Karahan, O., Atis, C.D., 2011. The durability properties of polypropylene fiber reinforced fly
             ash concrete. Mater. Des. 32, 1044 1049.
         Kayali, O., Haque, M., Zhu, B., 1999. Drying shrinkage of fibre-reinforced lightweight
             aggregate concrete containing fly ash. Cem. Concr. Res. 29, 1835 1840.
         Kayali, O., Haque, M., Zhu, B., 2003. Some characteristics of high strength fiber reinforced
             lightweight aggregate concrete. Cem. Concr. Compos. 25, 207 213.
         Khadakbhavi, B., Reddy, D.V.V., Ullagaddi, D., 2010. Effect of aspect ratios of waste HDPE
             fibres on the properties of fibres on fiber reinforced concrete. Res. J. Eng. Technol. 3,
             13 21.
         Kim, S.B., Yi, N.H., Kim, H.Y., Kim, J.H.J., Song, Y.C., 2010. Material and structural per-
             formance evaluation of recycled PET fiber reinforced concrete. Cem. Concr. Compos.
             32, 232 240.
         Kou, S., Lee, G., Poon, C., Lai, W., 2009. Properties of lightweight aggregate concrete pre-
             pared with PVC granules derived from scraped PVC pipes. Waste Manage. 29,
             621 628.
         Kumar, K., Prakash, P., 2006. Use of waste plastic in cement concrete pavement. Adv.
             Mater. Res. 15, 1 21.
         Kwon, S.H., Shah, S.P., 2008. Prediction of early-age cracking of fiber-reinforced concrete
             due to restrained shrinkage. ACI Mater. J. 105 (4), 381 389.
         Lai, K., Ravindrarajah, R.S., Pasalich, W., Hall, B., 1996. Deformation behaviour of rein-
             forced polystyrene concrete beam. In: Proceedings of the Second International
             Conference on Advances in Composites, Bangalore, India, pp. 1 10.
         Lima, P.R.L., Leite, M.B., Santiago, E.Q.R., 2010. Recycled lightweight concrete made from
             footwear industry waste and CDW. Waste Manage. 30, 1107 1113.
         Lopez-Buendia, A.M., Romero-Sa ´nchez, M.D., Climent, V., Guillem, C., 2013. Surface trea-
             ted polypropylene (PP) fibres for reinforced concrete. Cem. Concr. Res. 54, 29 35.
         Madandoust, R., Ranjbar, M.M., Mousavi, S.Y., 2011. An investigation on the fresh proper-
             ties of self-compacted lightweight concrete containing expanded polystyrene. Constr.
             Build. Mater. 25, 3721 3731.
         Martinez-Barrera, G., Vigueras-Santiago, E., Herna ´ndez-Lo ´pez, S., Brostow, W., Menchaca-
             Campos, C., 2005. Mechanical improvement of concrete by irradiated polypropylene
             fibers. Polym. Eng. Sci. 45, 1426 1431.
         Martinez-Barrera, G., Menchaca-Campos, C., Herna ´ndez-Lo ´pez, S., Vigueras-Santiago, E.,
             Brostow, W., 2006. Concrete reinforced with irradiated nylon fibers. J. Mater. Res. 21,
             484 491.
         Martinez-Barrera, G., Uren ˜a-Nun ˜ez, F., Gencel, O., Brostow, W., 2011. Mechanical proper-
             ties of polypropylene-fiber reinforced concrete after gamma irradiation. Compos., A 42,
             567 572.
         Marzouk, O.Y., Dheilly, R., Queneudec, M., 2007. Valorization of post-consumer waste plas-
             tic in cementitious concrete composites. Waste Manage. 27 (2), 310 318.
         Mazaheripour, H., Ghanbarpour, S., Mirmoradi, S., Hosseinpour, I., 2011. The effect of poly-
             propylene fibers on the properties of fresh and hardened lightweight self-compacting
             concrete. Constr. Build. Mater. 25, 351 358.
         Meddah, M.S., Bencheikh, M., 2009. Properties of concrete reinforced with different kinds of
             industrial waste fibre materials. Constr. Build. Mater. 23, 3196 3205.
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