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Technology, 2017, Available online: , accessed on 20 June 2018. [4] ETRMA (European Tyre and Rubber Manufacturers Association, Safety of recycled rubber infill material , 2016, , accessed on 20 June 2018. [5] SJI (Shangqiu Jinpeng Industrial Co., Ltd.), Waste Tyre Pyrolysis Plant Available online: http

, B. and Damodariya, S. M. (2013). Study on Effect of Waste Plastic and Crumb Rubber on Physical Properties of Bitumen. International Journal of Scientific Research , 2(5), 163-165. doi: 10.36106/ijsr Deshmukh, N. H. and Kshirsagar, D. Y. (2017). Utilization of Rubber Waste in Construction of Flexible Pavement. International Journal of Advance Research and Development , 2(7), 70-77. Gito, S. (2017). Characterization of Asphalt Concrete Produced from Scrapped Tire Rubber. Engineering Journal, 21(4), 193-206. DOI:10.4186/ej.2017.21.4.193 Indian Roads Congress

., Fortuna, F., Mincarini, M., Berillo, M., Cornacchia, G., 2000. Disposal of waste tyres for energy recovery and safe environment . Applied Energy, 65(1-4), 381-94, Sunthonpagasit, N., Duffey, M. R., 2004. Scrap tires to crumb rubber: feasibility analysis for processing facilities . Resources, Conservation and Recycling, 40(4), 281-299, Szymański, M., Szymczak, M., Łukasiewicz, J., 2006. Zbiór zadań z termodynamiki . Wydawnictwa Uczelniane ATR, Bydgoszcz. Tomporowski, A

characteristics , Construction and Building Materials 111/2016, 611–617. [22] Katkhuda H., Shatarat N., Improving the mechanical properties of recycled concrete aggregate using chopped basalt fibers and acid treatment , Construction and Building Materials 140/2017, 328–335. [23] Hossain F. Z., Shahjalal M., Islam K., Tiznobaik M., Alam M. S., Mechanical properties of recycled aggregate concrete containing crumb rubber and polypropylene fiber , Construction and Building Materials 225/2019, 983–996. [24] Çakır Ö., Experimental analysis of properties of recycled coarse